Novel drug combinations, pharmaceutical compositions and uses thereof for treating coronavirus infections
Patent Information
- Application Number
- JP2024516628
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2021-12-03
- Filing Date
- 2022-09-15
- Publication Date
- 2025-09-22
AI Technical Summary
Current treatments for coronavirus infections, particularly those caused by SARS-CoV-2 and its mutant strains, are limited by high specificity of monoclonal antibodies leading to reduced efficacy against variants, high production costs, and inconvenience of administration, while small molecule antiviral drugs face issues with safety, bioavailability, and limited applicability, and anti-cytokine storm drugs have limited therapeutic effects.
A novel combination of nitazoxanide, atovaquone, and ribavirin is administered orally to treat or prevent coronavirus infections, including mutant strains, targeting both viral replication and inflammatory responses, with the potential for simultaneous or sequential dosing to enhance efficacy.
The combination provides broad-spectrum antiviral activity unaffected by mutations, convenient oral administration, and effective anti-inflammatory effects, suitable for various stages of infection from mild to severe, reducing health care costs and risks associated with existing treatments.
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Abstract
Description
[Technical field]
[0001] FIELD OF THEINVENTION The present invention relates to novel pharmaceutical compositions, combination drug regimens and uses thereof for treating or preventing coronavirus infections, in particular SARS-CoV-2 infection and acute respiratory infectious disease or pneumonia caused by SARS-CoV-2 infection (COVID-19). [Background technology]
[0002] 2. Background of the Invention COVID-19, caused by the novel coronavirus (SARS-CoV-2) infection at the end of 2019, has been a global pandemic for more than two years, and as of September 2022, has caused more than 6.5 million deaths worldwide. The characteristics of SARS-CoV-2, such as high transmissibility, have caused great difficulties in treating infected individuals, as well as in preventing and controlling the epidemic. It has also caused great losses to the national economy, society and people's health of various countries. Vaccines and specific drugs are the key to ending the global pandemic of the new coronavirus. As the epidemic continues to spread, new mutant strains of SARS-CoV-2 that escape the mechanisms of existing preventive vaccines and therapeutic drugs are constantly evolving. Many mutant strains have emerged, including alpha, beta, gamma, delta, epsilon, zeta, eta, theta, iota, kappa, lambda and omicron strains. Among these, five mutant strains, namely, alpha, beta, gamma, delta and omicron, have been listed as "variants of concern" (VOC) by the WHO (https: / / www.who.int / en / activities / tracking-SARS-CoV-2-variants / ). Here, the omicron mutant strains, including BA.1, BA.4, BA.5 and other descendant lineages, are highly infectious and currently the most predominant infectious strain. Vaccines, as the main means of preventing and controlling epidemics at this stage, have substantially reduced protection against SARS-CoV-2 mutant strains, with reduced levels and duration of effective neutralizing antibodies produced. After the virus breaks through the vaccine-induced immune defense, patients may progress to more severe disease. Dealing with rapidly mutating novel coronaviruses is a common problem faced by the prevention and control of global epidemics. Effective and accessible means to combat the epidemic at all stages of disease progression (including treating patients with severe symptoms, preventing progression from mild to severe symptoms, preventing post-infection disease, and preventing transmission) are needed. Therefore, safe and effective broad-spectrum anti-SARS-CoV-2 specific drugs are urgently needed.
[0003] Currently, novel coronavirus treatment drugs mainly include three types: neutralizing antibodies, small molecule antiviral drugs and anti-cytokine storm.
[0004] Neutralizing antibodies: Neutralizing antibodies are the type of drug that has received the most emergency use authorizations (EUAs) by the US FDA, including GSK's sotrovimab, Eli Lilly's bamlanivimab / etesevimab combination, Regeneron's casirivimab / imdevimab combination, and other drugs under investigation, including AstraZeneca's AZD7442, Brii Bioscience's BRII-196 / BRII-198, etc. Neutralizing antibodies can inhibit viral infection of normal cells by specifically binding to the viral spike protein, thereby achieving the purpose of prevention and treatment. The advantage of this type of drug lies in its high antigen specificity, which can accurately recognize the antigen of the new coronavirus, and low off-target effects. However, it is precisely because of its high specificity that the effectiveness of neutralizing antibodies in response to mutant strains is substantially reduced. From a market perspective, monoclonal antibodies are constrained by production capacity and production costs, and therefore monoclonal antibody drugs are expensive. For example, the purchase price of Regeneron's neutralizing antibody by the US government is $2,100 for a single dose. The pressure is very high for both government procurement and personal use. In addition, monoclonal antibody drugs need to be administered by intravenous infusion or subcutaneous injection and also need to be under the supervision of specialized medical personnel, so patients are required to visit hospitals for treatment, which is inconvenient and not suitable for pandemic situations such as promotion and use in high-risk groups. All three monoclonal antibody drugs authorized by EUA are intended for patients with mild to moderate symptoms, which means that patients with mild to moderate symptoms who do not need to be hospitalized are also required to visit hospitals for drug administration. In addition, for severe symptoms and critical patients who require hospitalization, monoclonal antibody drugs are not available for severe symptoms and critical patients because clinical trials of neutralizing antibodies for severe symptoms and critical patients caused by the new coronavirus have not shown therapeutic or anti-inflammatory effects.
[0005] Small molecule antiviral drugs: mainly include nucleosides and 3CL protease inhibitors. The former mainly include Gilead's Remdesivir, Merck's Molnupiravir, Genuine Biotech's Azuvudine, Junshi Bio's VV116, etc., while the latter mainly include Pfizer's Paquilovid (composed of PF-07321332 and ritonavir), Shionogi & Co., Ltd.'s S-217622, Shanghai Institute of Material Medica Chinese Academy of Sciences' DC402234 and SIM0417. Nucleoside drugs have disadvantages such as low oral bioavailability, high toxicity, etc. For example, Remdesivir is administered by intravenous infusion because of its low bioavailability and difficulty in achieving effective concentrations. The genotoxicity and mutagenicity risks of Merck's anticoronavirus drugs are still controversial, and the long-term safety is unknown. The long-term safety data of Pfizer's oral anti-SARS-CoV-2 drug targeting 3CL protease is unclear, and safety cannot be guaranteed. Small molecule antiviral drugs only target the virus itself, do not have anti-inflammatory effects, and the applicable population is limited to patients with mild to moderate symptoms. As with neutralizing antibodies, the effect of small molecule antiviral drugs targeting SARS-CoV-2 polymerase and protease on mutant strains is unclear, and from the perspective of virology, continuously mutating strains generally escape from drugs targeting viral enzymes.
[0006] The third type of drugs, anti-cytokine storm: These drugs have received less attention compared with neutralizing antibodies and small molecule antiviral drugs, mainly because their mechanism of action targets specific inflammatory factors, does not directly inhibit the virus, and cannot target all or most of the inflammatory factors. Two drugs approved by the FDA and EUA are the JAK inhibitor baricitinib and the IL-6 inhibitor tocilizumab, which were previously approved for indications such as rheumatoid arthritis and are only suitable for severe symptoms and critically hospitalized patients with COVID-19, with very limited therapeutic effect.
[0007] Among the above drugs, the second type of drugs-small molecule antiviral drugs-have multiple advantages, but also have some problems such as safety and anti-inflammatory properties.Therefore, further investigation of such specific drug research is urgently needed to overcome the safety and anti-inflammatory problems of existing small molecule antiviral drugs.
[0008] Nitazoxanide (NTZ) is a safe, orally available thiazolide approved in the United States for the treatment of Cryptosporidium parvum and Giardia lamblia infections, and is indicated for the treatment of transmissible gastroenteritis. The drug has been used in many countries, including in Africa and South America, and has been shown to be effective against parasitic infections with good safety. Tizoxanide (TIZ) is the major active metabolite of nitazoxanide in vivo. Nitazoxanide and tizoxanide have been used as drugs to treat protozoal infections, and in subsequent studies have been found to inhibit the activity of cellular inflammation-related proteins, including COX-2 (cyclooxygenase), NF-κB, p65, IκBα, ERK1 / 2 or p38MAPK, and therefore have been used to treat inflammation-related diseases, including lipopolysaccharide (LPS) and other bacterial endotoxin-induced inflammatory diseases. Another study revealed that nitazoxanide has an inhibitory effect on the activity of acetyl-CoA carboxylase in HepG2 cells, and can have the effects of reducing obesity, lowering blood lipid levels, preventing fatty liver, and preventing atherosclerosis (China Patent Application Publication No. 110478357).In addition, it has been proven that nitazoxanide and tizoxanide can shorten the duration of symptoms associated with human respiratory syncytial virus, and other cell experimental results show that nitazoxanide or tizoxanide has antiviral activity against rotavirus, HBV, HCV, dengue virus, yellow fever virus, Japanese encephalitis virus and HIV in vitro (Jean-Francois Rossignol, Romark Laboratories, LC, 2014; China Patent Application Publication No. 108289961).However, there is no data supporting its antiviral activity in vivo. The mechanism of action of nitazoxanide against viral infections is still unclear. To date, nitazoxanide has not been approved for the treatment of any viral infections in humans.
[0009] Atovaquone (ATQ) is an orally available quinone compound approved in the United States, Europe, Japan and other countries for the treatment of parasitic pneumonia. It is active in vivo against the malaria parasites Pneumocystis carinii, Babesia and Toxoplasma gondii. To date, atovaquone has not been approved for the treatment of any viral infections in humans. Ribavirin is an antiviral nucleoside analogue drug approved by the US Food and Drug Administration (FDA) for the treatment of severe lower respiratory tract infections (aerosol inhalation only) caused by hepatitis C, viral hemorrhagic fevers, and respiratory syncytial virus (RSV). It has been shown to have inhibitory effects against various other DNA and RNA viruses (e.g., herpes simplex virus, influenza virus, etc.) in vitro, but its indications are generally limited due to the lack of conclusive clinical evidence. The FDA has specified in the approved drug label that ribavirin is not suitable for the treatment of influenza or others (COPEGUS® (ribavirin) tablets, first US approval: 2002). Ribavirin, alone or in combination with systemic glucocorticoids, has been attempted for the empirical treatment of severe acute respiratory syndrome (SARS) caused by SARS-CoV infection, but its clinical benefit has been disappointing (WHO. Management of severe acute respiratory syndrome (SARS) April 11, 2003). [Prior art documents] [Patent documents]
[0010] [Patent Document 1] China Patent Application Publication No. 110478357 [Patent Document 2] China Patent Application Publication No. 108289961 Summary of the Invention [Means for solving the problem]
[0011] The present invention provides novel pharmaceutical compositions and novel combination drug regimens for treating or preventing coronavirus infection, and relates to pharmaceutical compositions or combination drugs comprising the antiprotozoal infection drugs nitazoxanide or tizoxanide, the nucleoside analogue ribavirin and / or the antiparasitic drug atovaquone, and the use of such pharmaceutical compositions or combination drugs to inhibit coronavirus infection, alleviate or reverse pneumonia, or prevent coronavirus infection.
[0012] In a first aspect, the present invention relates to novel drug combinations and their use in the treatment or prevention of coronavirus infections or associated diseases or conditions, in particular infections with SARS-CoV-2 and its mutant strains, and the pneumonia it causes.
[0013] In one embodiment, the concomitant medications include at least one drug selected from the group consisting of nitazoxanide, tizoxanide, and pharmaceutically acceptable salts thereof; and at least one drug selected from the group consisting of ribavirin, a prodrug, metabolite, derivative, enantiomer, diastereomer, tautomer, or racemate thereof, and a pharmaceutically acceptable salt or ester of any of the foregoing, and / or atovaquone, a prodrug, metabolite, derivative, enantiomer, diastereomer, tautomer, or racemate thereof, or a pharmaceutically acceptable salt of any of the foregoing.
[0014] In one embodiment, the concomitant medications include at least one drug selected from nitazoxanide or tizoxanide or a pharma- ceutically acceptable salt thereof, at least one drug selected from atovaquone or a pharma- ceutically acceptable salt thereof, and at least one drug selected from ribavirin or a pharma- ceutically acceptable salt or ester thereof.
[0015] In one embodiment, the combination drug further comprises at least one other therapeutic agent or a combination thereof, and the other therapeutic agent or a combination thereof is other antiviral drugs, or other symptomatic treatment drugs for symptoms caused by coronavirus infection. In one embodiment, the combination drug further comprises at least one other therapeutic agent or a combination thereof, and non-limiting examples of the other therapeutic agent are selected from antiviral antibody drugs and other antiviral drugs, such as favipiravir, arbidol, darunavir, or a pharmaceutically acceptable salt or ester thereof.
[0016] In one embodiment, the combination drug disclosed in the present invention is used to prepare a pharmaceutical composition for the treatment or prevention of a coronavirus infection or its associated disease or condition, wherein the coronavirus is SARS-CoV-2 or a mutant strain thereof, SARS, MERS, 229E, NL63, OC43 and / or HKU1, in particular SARS-CoV-2 or a mutant strain thereof. In some embodiments, the coronavirus is SARS-CoV-2 or a mutant strain thereof. In some embodiments, mutant strains of SARS-CoV-2 include, but are not limited to, alpha strains (B.1.1.7), beta strains (B.1.351), gamma strains (P.1), delta strains (B.1.617.2), epsilon strains (B.1.427 / B.1.429), zeta strains (P.2), eta strains (B.1.525), theta strains (P.3), iota strains (B.1.526), kappa strains (B.1.617.1), lambda strains (C.37), mu strains (B.1.621), and omicron strains (B.1.1.529 and its descendant lineages BA.1, BA.1.1, BA.2, BA.2.12.1, BA.2.75, BA.3, BA.4, BA.4.6, BA.5, XE). In some embodiments, the associated disease or condition is pneumonia.
[0017] In one embodiment, the drug combination disclosed herein is used to treat, alleviate or relieve at least one symptom of the above-mentioned diseases or conditions related thereto (non-limiting examples of such symptoms include those selected from cough, loss of appetite, asthma, dyspnea, fever, general malaise, dizziness, nausea, reduced or lost sense of smell, and pneumonia).
[0018] In a second aspect, the present invention relates to a method for treating or preventing coronavirus (particularly SARS-CoV-2 and its mutant strains) infection or associated disease or condition, comprising administering a therapeutically effective amount of the novel combination drug of the above-mentioned first aspect to a subject in need thereof. In some embodiments, the associated disease or condition is acute respiratory infection or pneumonia. Here, each active ingredient of the combination drug may be administered simultaneously or sequentially to a subject in need thereof.
[0019] In one embodiment, the method at least comprises administering to a subject in need thereof a therapeutically effective amount of at least one drug selected from nitazoxanide or tizoxanide or a pharma- ceutically acceptable salt thereof, a therapeutically effective amount of at least one atovaquone or a pharma- ceutically acceptable salt thereof, and a therapeutically effective amount of at least one ribavirin or a pharma- ceutically acceptable salt or ester thereof. In some embodiments, nitazoxanide or tizoxanide or a pharma- ceutically acceptable salt thereof, atovaquone or a pharma- ceutically acceptable salt thereof, and ribavirin or a pharma- ceutically acceptable salt or ester thereof may be administered simultaneously or sequentially to a subject in need thereof.
[0020] In one embodiment, the subject in need is a general patient, a severe patient or a critical patient caused by coronavirus infection. In one embodiment, the subject in need is a patient with mild to moderate symptoms or a patient with severe symptoms caused by coronavirus infection.
[0021] In one embodiment, the method further comprises administering to a subject in need thereof a therapeutically effective amount of at least one other therapeutic agent, wherein the other antiviral agent is another antiviral drug or other symptomatic treatment drug for symptoms caused by a coronavirus infection.
[0022] In one embodiment, the coronavirus is SARS-CoV-2 or a variant thereof, SARS, MERS, 229E, NL63, OC43 and / or HKU1, in particular SARS-CoV-2 or a variant thereof. In some embodiments, mutant strains of SARS-CoV-2 include, but are not limited to, alpha strains (B.1.1.7), beta strains (B.1.351), gamma strains (P.1), delta strains (B.1.617.2), epsilon strains (B.1.427 / B.1.429), zeta strains (P.2), eta strains (B.1.525), theta strains (P.3), iota strains (B.1.526), kappa strains (B.1.617.1), lambda strains (C.37), mu strains (B.1.621), and omicron strains (B.1.1.529 and its descendant lineages BA.1, BA.1.1, BA.2, BA.2.12.1, BA.2.75, BA.3, BA.4, BA.4.6, BA.5, XE).
[0023] In some embodiments, the method of preventing a disease or condition caused by or associated with a coronavirus infection refers to chemoprevention / pharmacoprophylaxis.
[0024] In some embodiments, administration of the combination drug disclosed by the present invention can be used to alleviate at least one symptom of the above-mentioned disease or condition, non-limiting examples of which are selected from the group consisting of cough, loss of appetite, asthma, dyspnea, fever, general malaise, dizziness, nausea, reduced or lost sense of smell, and pneumonia.
[0025] In some embodiments, nitazoxanide is administered in an oral formulation.
[0026] In some embodiments, atovaquone is administered in an oral formulation.
[0027] In some embodiments, ribavirin can be administered in an oral formulation, an inhaled formulation, or an injectable formulation. In some embodiments, ribavirin is administered in an aerosol inhaled formulation directly via the airways. In some embodiments, ribavirin is administered in an oral formulation.
[0028] In some embodiments, the present invention provides a method for treating or preventing a coronavirus (particularly SARS-CoV-2 and its mutant strains) infection or an associated disease or condition, the method comprising administering nitazoxanide, atovaquone and ribavirin to a subject in need thereof, wherein nitazoxanide is administered to a subject in need thereof at a total daily dose of about 100 mg to about 3000 mg, atovaquone is administered to a subject in need thereof at a total daily dose of about 20 mg to about 3000 mg, and ribavirin is administered to a subject in need thereof at a total daily dose of about 20 mg to about 2500 mg, and wherein nitazoxanide, atovaquone and ribavirin may each be administered once daily (QD), twice daily (BID), three times daily (TID) or four times daily (QID).
[0029] In some embodiments, nitazoxanide is administered to a subject at a total daily dose of about 100 mg to about 2500 mg or about 300 mg to about 1800 mg. In some embodiments, nitazoxanide is administered once daily (QD), twice daily (BID), three times daily (TID), or four times daily (QID).
[0030] In some embodiments, nitazoxanide is administered to a subject in a single dose of about 100 mg to about 1000 mg. In some embodiments, nitazoxanide is administered to a subject once daily (QD), twice daily (BID), three times daily (TID), or four times daily (QID).
[0031] In some embodiments, nitazoxanide is administered to a subject in a single dose of about 100 mg to about 550 mg once daily (QD), twice daily (BID), three times daily (TID) or four times daily (QID).
[0032] In some embodiments, nitazoxanide is administered to a subject at doses of about 100 mg to about 600 mg BID, about 100 mg to about 600 mg TID, and about 100 mg to about 500 mg QID.
[0033] In some embodiments, atovaquone is administered to a subject at a total daily dose of about 20 mg to about 2500 mg, or about 300 mg to about 1800 mg. In some embodiments, atovaquone can be administered once daily (QD), twice daily (BID), three times daily (TID), or four times daily (QID).
[0034] In some embodiments, atovaquone is administered to a subject in a single dose of about 60 mg to about 1000 mg. In some embodiments, atovaquone is administered once daily (QD), twice daily (BID), three times daily (TID), or four times daily (QID).
[0035] In some embodiments, atovaquone is administered to a subject in a single dose of about 100 mg to about 540 mg twice daily (BID), three times daily (TID), or four times daily (QID).
[0036] In some embodiments, atovaquone is administered to a subject at doses of about 60 mg to about 600 mg BID, about 60 mg to about 600 mg TID, and about 100 mg to about 500 mg QID.
[0037] In some embodiments, ribavirin is administered to a subject at a total daily dose of about 20 mg to about 1500 mg. In some embodiments, ribavirin may be administered once daily (QD), twice daily (BID), three times daily (TID), or four times daily (QID).
[0038] In some embodiments, ribavirin is administered to a subject in a single dose of about 20 mg to about 500 mg. In some embodiments, ribavirin is administered once daily (QD), twice daily (BID), three times daily (TID), or four times daily (QID).
[0039] In some embodiments, ribavirin is administered to a subject in a single dose of about 20 mg to about 400 mg once daily (QD), twice daily (BID), three times daily (TID), or four times daily (QID).
[0040] In some embodiments, ribavirin is administered to a subject at a dose of about 20 mg to about 500 mg BID, about 20 mg to about 400 mg TID, and about 20 mg to about 400 mg QID.
[0041] In some embodiments, nitazoxanide, atovaquone and ribavirin may be administered simultaneously for the initial dose. In some embodiments, the interval period between the first doses of sequentially administered nitazoxanide, atovaquone and ribavirin ranges from about 0 hours to about 16 hours. In some embodiments, the interval period between the first doses of sequentially administered nitazoxanide, atovaquone and ribavirin is at least 0 hours, at least 0.1 hours, at least 0.2 hours, at least 0.3 hours, at least 0.4 hours, at least 1 hour, at least 2 hours, at least 3 hours, at least 4 hours, at least 5 hours, at least 6 hours, at least 7 hours, at least 8 hours, at least 9 hours, at least 10 hours, at least 11 hours, at least 12 hours, at least 13 hours, at least 14 hours, at least 15 hours and / or at least 16 hours.
[0042] In some embodiments, nitazoxanide, atovaquone and ribavirin are each administered to a subject twice daily (BID). The initial doses of nitazoxanide, atovaquone and ribavirin can be administered simultaneously, or the initial doses of nitazoxanide, atovaquone and ribavirin can be administered sequentially, spaced apart from one another within a range of about 0 hours to about 8 hours, with nitazoxanide administered in a single dose of about 100 mg to about 550 mg, atovaquone administered in a single dose of about 100 mg to about 550 mg, and ribavirin administered in a single dose of about 30 mg to about 400 mg.
[0043] In some embodiments, nitazoxanide, atovaquone and ribavirin are each administered to a subject three times a day (TID). The initial doses of nitazoxanide, atovaquone and ribavirin can be administered simultaneously, or the initial doses of nitazoxanide, atovaquone and ribavirin can be administered sequentially, spaced apart from one another within a range of about 0 hours to about 4 hours, with nitazoxanide administered in a single dose of about 100 mg to about 550 mg, atovaquone administered in a single dose of about 100 mg to about 550 mg, and ribavirin administered in a single dose of about 30 mg to about 200 mg.
[0044] In some embodiments, nitazoxanide, atovaquone and ribavirin are each administered to a subject four times a day (QID). The initial doses of nitazoxanide, atovaquone and ribavirin can be administered simultaneously, or the initial doses of nitazoxanide, atovaquone and ribavirin can be administered sequentially, spaced apart from one another within a range of about 0 hours to about 3 hours, with nitazoxanide administered in a single dose of about 100 mg to about 550 mg, atovaquone administered in a single dose of about 100 mg to about 550 mg, and ribavirin administered in a single dose of about 30 mg to about 200 mg.
[0045] In a third aspect, the present invention relates to a novel pharmaceutical composition and its use for treating or preventing coronavirus infections or associated diseases or conditions, in particular SARS-CoV-2 infections and its mutant strains and the pneumonia they cause. The pharmaceutical composition comprises the active pharmaceutical ingredients a) a therapeutically effective amount of nitazoxanide or tizoxanide or a pharma- ceutical acceptable salt thereof, b) a therapeutically effective amount of atovaquone or a pharma- ceutical acceptable salt thereof, and c) a therapeutically effective amount of ribavirin or a pharma- ceutical acceptable salt or ester thereof.
[0046] In some embodiments, the pharmaceutical composition comprises an active pharmaceutical ingredient and at least one pharma- ceutically acceptable excipient, carrier, or diluent. The active pharmaceutical ingredient comprises a) at least one selected from nitazoxanide or tizoxanide or a pharma- ceutically acceptable salt thereof, b) at least one atovaquone or a pharma- ceutically acceptable salt thereof, and c) at least one ribavirin or a pharma- ceutically acceptable salt or ester thereof. In some embodiments, the active pharmaceutical ingredient comprises nitazoxanide, atovaquone, and ribavirin. In some embodiments, the weight ratio of nitazoxanide:atovaquone:ribavirin is about (0.1-10):(0.1-10):1. In some embodiments, the weight ratio of nitazoxanide:atovaquone:ribavirin is about 1.5:1.5:1, about 2:2:1, about 2.5:2.5:1, about 3:3:1, about 10:10:3, about 3.5:3.5:1, about 4:4:1, about 4.5:4.5:1, or about 5:5:1, or any range value between any two of the aforementioned ratios. In some embodiments, the pharmaceutical composition contains about 50 mg to about 1200 mg of nitazoxanide per unit dosage form, about 50 mg to about 1200 mg of atovaquone per unit dosage form, and about 1 mg to about 500 mg of ribavirin per unit dosage form. In some embodiments, the unit dosage form of the pharmaceutical composition contains about 60 mg to about 600 mg of nitazoxanide, about 60 mg to about 600 mg of atovaquone, and about 10 mg to about 200 mg of ribavirin. In some embodiments, the unit dosage form of the pharmaceutical composition contains about 111 mg of nitazoxanide, about 111 mg of atovaquone, and about 33 mg of ribavirin. In some embodiments, the weight ratio of the active pharmaceutical ingredient to the pharma- ceutically acceptable excipient, carrier, or diluent is about (0.1 to 4):1. In some embodiments, the weight content of the pharma- ceutically acceptable excipient, carrier, or diluent in the pharmaceutical composition is about 0.1 to 90% (w / w).
[0047] In some embodiments, the pharmaceutical composition is a tablet, capsule or suspension.
[0048] In a fourth aspect, the present invention relates to a method for treating or preventing a coronavirus infection or a disease or condition associated therewith, comprising administering to a subject in need thereof the novel pharmaceutical composition of the third aspect described above, in some embodiments, the associated disease or condition is pneumonia.
[0049] In some embodiments, the pharmaceutical composition is administered orally.
[0050] In some embodiments, the method for treating or preventing a coronavirus infection or an associated disease or condition comprises administering the pharmaceutical composition to a subject in need thereof 1-4 times daily with 1-5 units of the formulation each time. In some embodiments, the method comprises administering the pharmaceutical composition to a subject in need thereof 2-4 times daily with 2-4 units of the formulation each time.
[0051] In one embodiment, the subject in need thereof is a general patient, a severe patient or a critical patient caused by coronavirus infection. In one embodiment, the subject in need thereof is a patient with mild to moderate symptoms or a patient with severe symptoms caused by coronavirus infection.
[0052] In one embodiment, the method further comprises administering to a subject in need thereof a therapeutically effective amount of at least one other therapeutic agent, the other therapeutic agent being another antiviral agent or other symptomatic treatment drug for symptoms caused by coronavirus infection. In one embodiment, non-limiting examples of the other therapeutic agent are selected from antiviral antibody drugs, other antiviral drugs, such as favipiravir, arbidol, darunavir, or a pharmaceutically acceptable salt or ester thereof.
[0053] In one embodiment, the coronavirus is SARS-CoV-2 or a mutant strain thereof, SARS, MERS, 229E, NL63, OC43 and / or HKU1, in particular SARS-CoV-2 or a mutant strain thereof. In some embodiments, mutant strains of SARS-CoV-2 include, but are not limited to, alpha strains (B.1.1.7), beta strains (B.1.351), gamma strains (P.1), delta strains (B.1.617.2), epsilon strains (B.1.427 / B.1.429), zeta strains (P.2), eta strains (B.1.525), theta strains (P.3), iota strains (B.1.526), kappa strains (B.1.617.1), lambda strains (C.37), and omicron strains (B.1.1.529 and its descendant lineages BA.1, BA.1.1, BA.2, BA.2.12.1, BA.2.75, BA.3, BA.4, BA.4.6, BA.5, XE).
[0054] In some embodiments, the method of preventing a disease or condition caused by or associated with a coronavirus infection refers to chemoprevention / pharmacoprophylaxis.
[0055] In some embodiments, administration of the combination drug disclosed by the present invention can be used to alleviate at least one symptom of the above-mentioned disease or condition associated therewith, non-limiting examples of the at least one symptom being selected from the group consisting of cough, loss of appetite, asthma, dyspnea, fever, general malaise, dizziness, nausea, reduced or lost sense of smell, and pneumonia.
[0056] In a fifth aspect, the present invention relates to a novel drug combination and its use in the treatment or prevention of a coronavirus infection or its associated disease or condition, in particular SARS-CoV-2 and its mutant strain infection and the pneumonia it causes, wherein the drug combination comprises at least one drug selected from nitazoxanide or tizoxanide or a pharmaceutically acceptable salt thereof, and at least one drug selected from atovaquone or a pharmaceutically acceptable salt thereof.
[0057] In one embodiment, the concomitant drug may further comprise at least one selected from a nucleoside analogue or its pharma- ceutically acceptable salt or ester. In one feature, the nucleoside analogue is a compound selected from the group consisting of sofosbuvir, ribavirin, remdesivir, or a combination thereof.
[0058] In one embodiment, the combination drug includes at least one other therapeutic agent or a combination thereof, and the other therapeutic agent or a combination thereof is another antiviral drug, or another symptomatic treatment drug for the symptoms caused by coronavirus infection. In one embodiment, the combination drug further includes at least one other therapeutic agent or a combination thereof, and non-limiting examples of the other therapeutic agent are selected from antiviral antibody drugs and other antiviral drugs, such as favipiravir, arbidol, darunavir, or a pharmaceutically acceptable salt or ester thereof.
[0059] In one embodiment, the drug combination disclosed herein is used to treat, alleviate or relieve at least one symptom of the associated disease or condition (non-limiting examples of such symptoms include those selected from cough, loss of appetite, asthma, difficulty breathing, fever, general malaise, dizziness, nausea, reduced or lost sense of smell, and pneumonia).
[0060] In one embodiment, the combination drug disclosed in the present invention is used to prepare a pharmaceutical composition for treating or preventing a coronavirus infection or an associated disease or condition, wherein the coronavirus is SARS-CoV-2 or a mutant strain thereof, SARS, MERS, 229E, NL63, OC43 and / or HKU1, in particular SARS-CoV-2 or a mutant strain thereof. In some embodiments, the associated disease or condition is pneumonia.
[0061] In a sixth aspect, the present invention relates to a method for treating or preventing coronavirus (especially SARS-CoV-2 and its mutant strains) infection or related disease or condition, comprising administering a therapeutically effective amount of the novel combination drug of the above fifth aspect to a subject in need thereof. The related disease or condition is acute respiratory infection or pneumonia. Wherein each active ingredient of the combination drug can be administered simultaneously or sequentially to a subject in need thereof.
[0062] In one embodiment, the method at least comprises administering to a subject in need thereof a therapeutically effective amount of at least one drug selected from nitazoxanide or tizoxanide or a pharma- ceutically acceptable salt thereof, and a therapeutically effective amount of at least one atovaquone or a pharma- ceutically acceptable salt thereof. In some embodiments, nitazoxanide or tizoxanide or a pharma- ceutically acceptable salt thereof, and atovaquone or a pharma- ceutically acceptable salt thereof may be administered simultaneously or sequentially to a subject in need thereof.
[0063] In one embodiment, the subject in need thereof is a general, severe or critical patient caused by a coronavirus infection.
[0064] In some embodiments, the invention provides a method for the treatment or prevention of a coronavirus (particularly SARS-CoV-2) infection or an associated disease or condition, the method comprising administering nitazoxanide and atovaquone to a subject in need thereof, wherein nitazoxanide is administered to a subject in need thereof in a total daily dose range of about 100 mg to about 3000 mg, and atovaquone is administered to a subject in need thereof in a total daily dose range of about 20 mg to about 3000 mg, and wherein nitazoxanide and atovaquone may be administered once daily (QD), twice daily (BID), three times daily (TID), or four times daily (QID), respectively.
[0065] In some embodiments, nitazoxanide is administered to a subject at a total daily dose of about 100 mg to about 2500 mg or about 300 mg to about 1800 mg. In some embodiments, nitazoxanide may be administered once daily (QD), twice daily (BID), three times daily (TID), or four times daily (QID).
[0066] In some embodiments, nitazoxanide is administered to a subject in a single dose of about 100 mg to about 1000 mg. In some embodiments, nitazoxanide is administered once daily (QD), twice daily (BID), three times daily (TID), or four times daily (QID).
[0067] In some embodiments, nitazoxanide is administered to a subject in a single dose of about 100 mg to about 550 mg twice daily (BID), three times daily (TID), or four times daily (QID).
[0068] In some embodiments, nitazoxanide is administered to a subject at doses of about 100 mg to about 600 mg BID, about 100 mg to about 600 mg TID, and about 100 mg to about 500 mg QID.
[0069] In some embodiments, nitazoxanide is administered to a subject at a dose of about 100 mg to about 500 mg TID or about 100 mg to about 500 mg QID.
[0070] In some embodiments, atovaquone is administered to a subject at a total daily dose of about 20 mg to about 2500 mg, or about 300 mg to about 1800 mg. In some embodiments, atovaquone can be administered to a subject once daily (QD), twice daily (BID), three times daily (TID), or four times daily (QID).
[0071] In some embodiments, atovaquone is administered to a subject in a single dose of about 60 mg to about 1000 mg. In some embodiments, atovaquone is administered once daily (QD), twice daily (BID), three times daily (TID), or four times daily (QID).
[0072] In some embodiments, atovaquone is administered to a subject in a single dose of about 100 mg to about 540 mg twice daily (BID), three times daily (TID), or four times daily (QID).
[0073] In some embodiments, atovaquone is administered to a subject at a dose of about 60 mg to about 600 mg BID, about 60 mg to about 600 mg TID, or 100 mg to about 500 mg QID.
[0074] In some embodiments, atovaquone is administered to a subject at a dose of about 100 mg to about 540 mg TID or 100 mg to about 540 mg QID.
[0075] In some embodiments, nitazoxanide and atovaquone may be administered simultaneously for the initial dose. In some embodiments, the interval period between the first doses of nitazoxanide and atovaquone administered sequentially ranges from about 0 hours to about 16 hours. In some embodiments, the interval period between the first doses of nitazoxanide and atovaquone administered sequentially is at least 0 hours, at least 0.1 hours, at least 0.2 hours, at least 0.3 hours, at least 0.4 hours, at least 1 hour, at least 2 hours, at least 3 hours, at least 4 hours, at least 5 hours, at least 6 hours, at least 7 hours, at least 8 hours, at least 9 hours, at least 10 hours, at least 11 hours, at least 12 hours, at least 13 hours, at least 14 hours, at least 15 hours, and / or at least 16 hours.
[0076] In one embodiment, the method further comprises administering to a subject in need thereof a therapeutically effective amount of at least one other therapeutic agent, wherein the other therapeutic agent is another antiviral agent or other symptomatic treatment drug for a symptom caused by a coronavirus infection.
[0077] In one embodiment, the coronavirus is SARS-CoV-2 or a mutant strain thereof, SARS, MERS, 229E, NL63, OC43 and / or HKU1, in particular SARS-CoV-2 or a mutant strain thereof, and the associated disease or condition is pneumonia. In some embodiments, mutant strains of SARS-CoV-2 include, but are not limited to, alpha strains (B.1.1.7), beta strains (B.1.351), gamma strains (P.1), delta strains (B.1.617.2), epsilon strains (B.1.427 / B.1.429), zeta strains (P.2), eta strains (B.1.525), theta strains (P.3), iota strains (B.1.526), kappa strains (B.1.617.1), lambda strains (C.37), mu strains (B.1.621), and omicron strains (B.1.1.529 and its descendant lineages BA.1, BA.1.1, BA.2, BA.2.12.1, BA.2.75, BA.3, BA.4, BA.4.6, BA.5, XE).
[0078] In some embodiments, the method of preventing a disease or condition caused by or associated with a coronavirus infection refers to chemoprevention / pharmacoprophylaxis.
[0079] In some embodiments, administration of the combination drug disclosed by the present invention can be used to alleviate at least one symptom of the above-mentioned disease or a condition related thereto, non-limiting examples of the at least one symptom being selected from the group consisting of cough, loss of appetite, asthma, dyspnea, fever, fatigue, dizziness, nausea, reduced or lost sense of smell, and pneumonia.
[0080] In a seventh aspect, the present invention relates to a novel pharmaceutical composition and its use for the treatment or prevention of coronavirus infections or associated diseases or conditions, in particular SARS-CoV-2 infections and its mutant strains and the pneumonia it causes, the pharmaceutical composition comprising an active pharmaceutical ingredient and at least one pharma- ceutical acceptable excipient, carrier or diluent, the active pharmaceutical ingredient comprising a) a therapeutically effective amount of nitazoxanide or tizoxanide or a pharma- ceutical acceptable salt thereof, and b) a therapeutically effective amount of atovaquone or a pharma- ceutical acceptable salt thereof. In some embodiments, mutant strains of SARS-CoV-2 include, but are not limited to, alpha strains (B.1.1.7), beta strains (B.1.351), gamma strains (P.1), delta strains (B.1.617.2), epsilon strains (B.1.427 / B.1.429), zeta strains (P.2), eta strains (B.1.525), theta strains (P.3), iota strains (B.1.526), kappa strains (B.1.617.1), lambda strains (C.37), mu strains (B.1.621), and omicron strains (B.1.1.529 and its descendant lineages BA.1, BA.1.1, BA.2, BA.2.12.1, BA.2.75, BA.3, BA.4, BA.4.6, BA.5, XE).
[0081] In one embodiment, the active pharmaceutical ingredient is comprised of nitazoxanide and atovaquone in a fixed ratio. In one embodiment, the fixed ratio refers to a weight ratio of nitazoxanide to atovaquone that is about 1:0.1 to about 1:10. In one embodiment, the fixed ratio refers to a weight ratio of nitazoxanide to atovaquone that is about 1:0.1, about 1:0.2, about 1:0.5, about 1:0.8, about 1:1, about 1:1.2, about 1:1.5, about 1:2, about 1:5, about 1:10, or any range value between any two of the aforementioned ratios. In a preferred embodiment, the fixed ratio refers to a weight ratio of nitazoxanide to atovaquone that is about 1:1.
[0082] In one embodiment, the pharmaceutical composition is formulated as a tablet.
[0083] In one embodiment, the pharmaceutical composition is formulated as a capsule.
[0084] In one embodiment, the pharmaceutical composition is formulated as a suspension.
[0085] In one embodiment, the unit dosage form of the pharmaceutical composition contains about 50 mg to about 1200 mg of nitazoxanide per unit dosage form and about 50 mg to about 1200 mg of atovaquone per unit dosage form. In one embodiment, the unit dosage form of the pharmaceutical composition contains about 60 mg to about 500 mg of nitazoxanide per unit dosage form and about 100 mg to about 500 mg of atovaquone per unit dosage form. In a preferred embodiment, the unit dosage form of the pharmaceutical composition contains 165 mg of nitazoxanide per unit dosage form and 165 mg of atovaquone per unit dosage form.
[0086] In one embodiment, the pharmaceutical composition is administered to a subject in need thereof 1-4 times per day with 1-5 units of the formulation each time. In a specific embodiment, the pharmaceutical composition is administered to a subject in need thereof 2-4 times per day with 2-4 units of the formulation each time.
[0087] In an eighth aspect, the present invention relates to a method for the treatment or prevention of coronavirus (in particular SARS-CoV-2 and its mutant strains) infections or associated diseases or conditions, comprising administering to a subject in need thereof the novel pharmaceutical composition of the seventh aspect described above. The associated diseases or conditions are acute respiratory infections or pneumonia.
[0088] In one embodiment, the method comprises administering the pharmaceutical composition to a subject in need thereof 1 to 4 times per day in 1 to 5 units of the formulation each time, wherein the unit formulation of the pharmaceutical composition has a fixed weight ratio of nitazoxanide:atovaquone of about 1:0.1 to about 1:10, preferably about 1:1.
[0089] In one embodiment, the method comprises administering the pharmaceutical composition to a subject in need thereof 1 to 4 times per day in 1 to 5 unit dosage forms each time, each unit dosage form of the pharmaceutical composition containing from about 50 mg to about 1200 mg of nitazoxanide and from about 50 mg to about 1200 mg of atovaquone.
[0090] In a preferred embodiment, the method comprises administering the pharmaceutical combination to a subject in need thereof three times daily in two unit dosage forms each time, wherein the unit dosage form of the pharmaceutical composition contains about 165 mg of nitazoxanide and about 165 mg of atovaquone.
[0091] In one embodiment, the subject in need thereof is a general, severe or critical patient caused by a coronavirus infection.
[0092] In one embodiment, the method further comprises simultaneously or sequentially administering to a subject in need thereof another antiviral drug, such as a nucleoside analog or a pharma- ceutically acceptable salt or ester thereof. In one embodiment, the nucleoside analog is a compound selected from the group consisting of sofosbuvir, ribavirin, remdesivir, or a combination thereof.
[0093] In one embodiment, the method further comprises administering to a subject in need thereof a therapeutically effective amount of at least one other therapeutic agent, the other therapeutic agent being another antiviral drug for symptoms caused by coronavirus infection, or other symptomatic treatment drug. In one embodiment, non-limiting examples of the other therapeutic agent are selected from antiviral antibody drugs, and other antiviral drugs, such as favipiravir, arbidol, darunavir, or a pharmaceutically acceptable salt or ester thereof.
[0094] In one embodiment, the coronavirus is SARS-CoV-2 or a mutant strain thereof, SARS, MERS, 229E, NL63, OC43 and / or HKU1, in particular SARS-CoV-2 or a mutant strain thereof, and the associated disease or condition is pneumonia.
[0095] In some embodiments, the method of preventing a disease or condition caused by or associated with a coronavirus infection refers to chemoprevention / pharmacoprophylaxis.
[0096] In some embodiments, administration of the pharmaceutical composition disclosed by the present invention can be used to alleviate at least one symptom of the above-mentioned disease or a condition related thereto, non-limiting examples of the at least one symptom being selected from the group consisting of cough, loss of appetite, asthma, dyspnea, fever, and pneumonia.
[0097] The above and other objects, aspects, features and advantages of the present invention will become more apparent from the following description and claims. [Brief description of the drawings]
[0098] [Figure 1] FIG. 1 shows the inhibitory activity of the pharmaceutical composition of the present invention (Anticov-1) against the new coronavirus.
[0099] [Diagram 2] Figure 2 shows the inhibition rates of six experimental drugs against SARS-CoV-2 in Vero E6 cells at different concentrations.
[0100] [Diagram 3] Figure 3 shows the cytotoxic effect of Anticov-1 on Vero E6 cells at different concentrations. The observation results of Anticov-1 incubated with Vero E6 cells for 24 hours are shown in Figure 3(a). The observation results of Anticov-1 incubated with cells for 48 hours are shown in Figure 3(b).
[0101] [Figure 4] Figure 4 shows the plasma concentration of nitazoxanide in different test groups over time after a single dose. 1-NTZ, 4-NTZ and 5-NTZ represent the plasma concentration of NTZ in groups 1, 4 and 5, respectively.
[0102] [Diagram 5]Figure 5 shows the plasma concentrations of atovaquone in different study groups over time after a single dose. 2-ATQ, 4-ATQ and 5-ATQ represent the plasma concentrations of ATQ in groups 2, 4 and 5, respectively.
[0103] [Figure 6] Figure 6 shows the plasma concentration of ribavirin in different test groups over time after a single dose. 3-RBV, 4-RBV and 5-RBV indicate the plasma concentration of RBV in groups 3, 4 and 5, respectively.
[0104] [Figure 7] Figure 7 is a schematic diagram of the role of the pharmaceutical composition of the present invention in inhibiting the activation of STAT3, a master switch of inflammatory storm, in the pathological mechanism of the new coronavirus (one of the mechanisms of action of the pharmaceutical composition of the present invention for treating the new coronavirus).
[0105] [Figure 8] FIG. 8 shows the results of a study of Anticov-1 to block IL-6-mediated activation of STAT3 in human blood cells.
[0106] [Figure 9] FIG. 9 shows the results of a study of Anticov-1 to block IL-6-mediated activation of TNF-α in human blood cells.
[0107] [Figure 10] FIG. 10 shows the inhibition rates of SARS-CoV-2 Anticov-1 to 4 strains (WIV04, Omicron, Delta, and Beta strains) and the EC50 of each strain in Vero E6 cells under different concentrations. DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0108] Detailed Description of the Invention II definition As used in the specification and claims, the singular forms "a," "an," or "the" include plural referents unless the context clearly dictates otherwise. For example, the term "a cell" includes a plurality of cells, including mixtures thereof.
[0109] As used herein, "about" is used herein to modify numerical values above and below the stated value by a variance of 10%. For example, "about 1" means "0.9-1.1", "about 30" means "27-33", "about 2%" means "1.8%-2.2%, "about 2%-3%" means "1.8%-3.3%, "about 3%-about 4%" means "2.7%-4.4%, and "about 1:1" means "1.1:1-1:1.1".
[0110] As used herein, "range value between two ratios" means that the same value part is used as the base and different value parts are used as the upper and lower limits of the optional value range, respectively, in the two ratios. For example, the range value between two ratios of about 1.5:1.5:1 and about 2:2:1 means that the same value "1" is used as the base, and the components with different values have different value parts as the upper and lower limits of the optional value range, i.e., any specific ratio included in the range of about (1.5-2):(1.5-2):1. In another example, the range value of about 1:0.8 to about 1:1.2 refers to any specific ratio included in the range of about 1:(0.8-1.2).
[0111] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention belongs.
[0112] As described herein, "mild symptom patients" or "mild patients", "moderate symptom patients" or "general patients", "severe moderate symptom patients" or "severe patient" respectively correspond to the criteria adopted in clinical diagnosis and treatment implementation, and the two terms before and after connected with "or" have the same meaning and can be used interchangeably. As used herein, "mild to moderate symptom patients" refers to patients with mild to moderate symptoms. In some embodiments, the patient diagnosis criteria are as follows: (1) Mild: Mild clinical symptoms and no imaging findings of pneumonia. (2) General: Those with fever, respiratory tract symptoms, etc., and imaging findings of pneumonia. (3) Severe: Adults who meet any of the following criteria: 1. Shortness of breath, RR ≥ 30 breaths / min; 2. Inspiratory oxygen saturation ≤ 93% at rest; 3. Arterial oxygen pressure (PaO2) / inhaled oxygen fraction (FiO2) ≦ 300mmHg (1mmHg = 0.133kPa); In areas of high altitude (more than 1000 meters above sea level), PaO2 / FiO2 should be corrected according to the following formula: PaO2 / FiO2 × [760 / atmospheric pressure (mmHg)]; 4. Progressive worsening of clinical symptoms and pulmonary imaging shows that lesions have progressed significantly by more than 50% within 24-48 hours.
[0113] The term "effective amount" of an active agent refers to an amount sufficient to induce a desired biological response.As will be understood by those skilled in the art, the effective amount of the compound of the present invention varies depending on factors such as the desired biological endpoint, the pharmacokinetics of the compound, the disease to be treated, the mode of administration, and the patient.
[0114] The term "carrier" with which a compound is administered refers to a non-limiting diluent, solubilizer, binder, disintegrant, lubricant, adjuvant, excipient, or vehicle and the like.
[0115] As used herein, the term "solubilizer" refers to any pharma- ceutically acceptable surfactant.Non-limiting examples of solubilizers include, but are not limited to, sodium lauryl sulfate (SLS) or sodium dodecyl sulfate (SDS), polyoxyethylene polyoxypropylene copolymers (e.g., poloxamer 188, Pluronic F68), polyoxyethylene sorbitan fatty acid esters (polysorbates, preferably polyoxyethylene sorbitan monooleate (Tween 80)) or polyoxyethylene sorbitan monolaurate (Tween 20, certain lipids, such as lecithin (e.g., dimyristoyl phosphatidylcholine (DMPC)).
[0116] The term "diluent" refers to a compound that is used to dilute the compound of interest before delivery. Diluents can also be used to stabilize the compound. Non-limiting examples of diluents include, but are not limited to, starch, carbohydrates, disaccharides, sucrose, lactose, lactose monohydrate, polysaccharides, compressible sugars, cellulose, cellulose ethers, hydroxypropyl cellulose, sugar alcohols, xylitol, sorbitol, mannitol, maltitol, microcrystalline cellulose, calcium carbonate or sodium carbonate, calcium hydrogen phosphate, anhydrous calcium hydrogen phosphate and tricalcium phosphate.
[0117] The term "binder" as used herein refers to any pharma- ceutically acceptable film that can be used to bind the active and inactive components of the carrier together to maintain cohesive and discontinuous portions. Non-limiting examples of binders include, but are not limited to, hydroxypropyl cellulose, hydroxypropyl methylcellulose, povidone, copovidone, and ethyl cellulose.
[0118] The term "disintegrant" refers to a substance that, when added to a solid formulation, promotes its disintegration or breakup after administration, allowing the active ingredient to be released as effectively as possible and dissolve rapidly. Non-limiting examples of disintegrants include, but are not limited to, cornstarch, sodium carboxymethyl starch, croscarmellose sodium, crospovidone, microcrystalline cellulose, modified cornstarch, povidone, pregelatinized starch and alginic acid.
[0119] The term "lubricant" refers to an excipient added to a powder mixture to prevent the compressed powder material from sticking to the device during the tableting or packaging process. It facilitates the ejection of the tablet from the die and improves the flowability of the powder. Non-limiting examples of lubricants include, but are not limited to, magnesium stearate, stearic acid, silicon dioxide, fats, calcium stearate, polyethylene glycol, sodium stearyl fumarate or talc, and "solubilizers" include, but are not limited to, fatty acids, lauric acid, oleic acid and C8 / C10 fatty acids.
[0120] The term "glidant" refers to a substance used in tablet or capsule formulations to improve flowability and provide an anti-caking effect. Non-limiting examples of glidants include, but are not limited to, colloidal silicon dioxide, talc, fumed silica, starch, starch derivatives, and expansive soils.
[0121] The term "film coating" refers to a thin, uniform film on the surface of a substrate (e.g., tablet). Film coating is particularly useful for protecting active ingredients from photodegradation. Non-limiting examples of film coating include, but are not limited to, polyvinyl alcohol-based, hydroxyethyl cellulose, hydroxypropyl methylcellulose, sodium carboxymethylcellulose, polyethylene glycol 4000, and cellulose phthalate film coating.
[0122] The term "treatment" of a disease or disorder or "treating" a disease or disorder refers to a method of alleviating, delaying or ameliorating such a condition before or after its onset. Treatment can be directed to one or more effects or symptoms of a disease and / or underlying pathology. Treatment can be any reduction, including but not limited to, complete elimination of symptoms of a disease or condition. The degree of reduction or prevention, as measured by any standard technique, is at least 5%, 10%, 20%, 30%, 40%, 50%, 60%, 70%, 80%, 90%, 95%, or 100%, as compared to an equivalent untreated control.
[0123] The term "therapeutically effective amount" means what is generally accepted in the art. This term generally refers to the amount of a compound or composition that induces the required biological or medical response in cells, tissues, systems, animal or human body. For example, if a given clinical treatment is considered effective when the measurable parameter associated with disease or disorder is reduced by at least about 25%, the effective amount of the drug treatment used to treat disease or disorder is the amount required to reduce the parameter by at least about 25%.
[0124] As used herein, the term "subject" refers to any animal (e.g., mammal), including but not limited to humans, non-human primates, rodents, etc., that will be the recipient of a particular treatment or prophylactic scheme. Typically, the terms "subject," "patient," and "individual or high-risk population in need of prophylactic protection from infection" are used interchangeably herein and refer to a human subject.
[0125] As used herein, a "combined" or "combined" therapy or treatment refers to the administration of at least two different drugs for the treatment of a disorder, condition or symptom, such as viral pneumonia, viral infection, coronavirus pneumonia, and the like. Such combination therapy includes administration of one drug before, during, and / or after administration of the other drug. The interval period between administration of the different drugs can be up to several weeks, but is more commonly within 48 hours, and most commonly within 24 hours.
[0126] The compounds of the present invention may form salts, which are also within the scope of the present invention. Reference to the compounds of the present invention herein is understood to include reference to their salts, unless otherwise indicated. The term "salts" as used herein refers to acid salts and / or base salts formed with inorganic and / or organic acids and bases. Furthermore, when the compounds of the present invention contain both a basic moiety (e.g., but not limited to, pyridine or imidazole) and an acidic moiety (e.g., but not limited to, carboxylic acid), zwitterions ("internal salts") may be formed and are included in the term "salts" as used herein. Although pharmaceutically acceptable (i.e., non-toxic, physiologically acceptable) salts are preferred, other salts are also useful, for example, in isolation or purification steps that may be employed during preparation.
[0127] As used herein, "chemoprophylaxis" refers to the administration of a combination drug regimen provided herein as a prophylactic measure to prevent or ameliorate the pathogenesis of a viral infection to an asymptomatic individual with a viral infection, or to an individual who has a negative test for a viral infection but is believed to have a possible viral infection by epidemiological medical history analysis, or to an individual who has a negative test for a viral infection but is believed to have a viral infection such as pneumonia by other medical diagnoses (e.g., medical imaging analysis, etc.). 50 The term "CC" refers to the concentration at 50% of the maximum effect, which refers to the concentration that can cause 50% of the maximum effect. 50 " refers to the drug concentration at which 50% of the cells are affected.
[0128] II. Concomitant medications The present invention provides novel drug combinations and their use in treating or preventing coronavirus (e.g., SARS-CoV-2) infection or its associated diseases or conditions (e.g., pneumonia, COVID-19). The present invention also provides a method for treating or preventing a coronavirus infection (e.g., SARS-CoV-2 and its variants), or its associated diseases or conditions (e.g., pneumonia, COVID-19), comprising administering to a subject in need thereof a therapeutically effective amount of a drug combination described herein.
[0129] The novel combination drug provided by the present invention comprises at least one thiazolide compound selected from the group consisting of nitazoxanide (NTZ), tizoxanide or a derivative thereof, and any pharma- ceutically acceptable salt or ester thereof, or any solvate thereof; at least one quinone compound selected from atovaquone (ATQ) or a derivative thereof, any pharma- ceutically acceptable salt or ester thereof, or any solvate thereof; and / or at least one nucleoside analog selected from ribavirin (RBV) or a derivative thereof, any pharma- ceutically acceptable salt or ester thereof, or any solvate thereof.
[0130] In one embodiment, the novel combination drugs include at least one thiazolide compound selected from the group consisting of nitazoxanide (NTZ), tizoxanide or a derivative thereof, and any pharma- ceutically acceptable salt or ester thereof, or any solvate thereof; at least one quinone compound selected from atovaquone (ATQ) or a derivative thereof, any pharma- ceutically acceptable salt or ester thereof, or any solvate thereof; and at least one nucleoside analog selected from ribavirin (RBV) or a prodrug, metabolite, derivative, enantiomer, diastereomer, tautomer, racemate, or any pharma- ceutically acceptable salt or ester thereof.
[0131] In one embodiment, the novel drug combination provided by the present invention comprises at least one thiazolide compound selected from the group consisting of nitazoxanide (NTZ), tizoxanide or a derivative thereof, and any pharma- ceutically acceptable salt or ester thereof, or any solvate thereof, and at least one quinone compound selected from atovaquone (ATQ) or a derivative thereof, any pharma- ceutically acceptable salt or ester thereof, or any solvate thereof.
[0132] In one embodiment, the combination drug further comprises at least one other therapeutic agent or combination thereof, and the other therapeutic agent or combination thereof is other antiviral drugs or other symptomatic treatments for symptoms caused by coronavirus infection. In one embodiment, non-limiting examples of the other therapeutic agent are selected from antiviral antibody drugs and other antiviral drugs such as favipiravir, arbidol, darunavir or its pharmaceutically acceptable salts or esters.
[0133] In one embodiment, the present invention provides the use of a combination drug in the preparation of a pharmaceutical composition for treating or preventing a coronavirus infection or an associated disease or condition, wherein the coronavirus includes, but is not limited to, SARS-CoV-2 or a mutant strain thereof, SARS, MERS, 229E, NL63, OC43 and HKU1, in particular SARS-CoV-2 or a mutant strain thereof. In some embodiments, the strains include alpha (B.1.1.7), beta (B.1.351), gamma (P.1), delta (B.1.617.2), epsilon (B.1.427 / B.1.429), zeta (P.2), eta (B.1.525), theta (P.3), iota (B.1.526), kappa (B.1.617.1), lambda (C.37), mu (B.1.621), and omicron (B.1.1.529 and its descendant lineages BA.1, BA.1.1, BA.2, BA.2.12.1, BA.2.75, BA.3, BA.4, BA.4.6, BA.5, XE). In some embodiments, the associated disease or condition is pneumonia. III. Pharmaceutical Compositions
[0134] The present invention provides novel pharmaceutical compositions and their use in the treatment or prevention of coronavirus (e.g., SARS-CoV-2) infection or its associated diseases or conditions (e.g., pneumonia, COVID-19). The present invention also provides a method for treating or preventing a coronavirus infection (e.g., SARS-CoV-2 and its variants), or its associated diseases or conditions (e.g., pneumonia, COVID-19), comprising administering to a subject in need thereof a therapeutically effective amount of a pharmaceutical composition described herein.
[0135] In one aspect, the novel pharmaceutical composition of the present invention comprises an active pharmaceutical ingredient and at least one pharma- ceutically acceptable excipient, carrier, or diluent, the active pharmaceutical ingredient comprising: a) at least one selected from nitazoxanide or a pharma- ceutically acceptable salt thereof, b) at least one atovaquone or a pharma- ceutically acceptable salt thereof, and c) at least one ribavirin or a pharma- ceutically acceptable salt or ester thereof.
[0136] In some embodiments, the active pharmaceutical ingredients include nitazoxanide, atovaquone, and ribavirin. In some embodiments, the weight ratio of nitazoxanide:atovaquone:ribavirin is about (0.1-10):(0.1-10):1. Optionally, the weight ratio of nitazoxanide:atovaquone:ribavirin is about 1.5:1.5:1, about 2:2:1, about 2.5:2.5:1, about 3:3:1, about 10:10:3, about 3.5:3.5:1, about 4:4:1, about 4.5:4.5:1, about 5:5:1, or any range value between any two of the aforementioned ratios.
[0137] In one embodiment, the weight ratio of the active pharmaceutical ingredient to the pharma- ceutically acceptable excipient, carrier or diluent is about (0.1-4:1).
[0138] In one embodiment, the weight content of the pharma- ceutically acceptable excipient, carrier or diluent in the pharmaceutical composition is about 0.1 to 90% (w / w).
[0139] In some embodiments, the pharmaceutical composition is formulated as a tablet, capsule or suspension, hi some embodiments, the pharmaceutical composition is formulated as a tablet.
[0140] In some embodiments, the unit formulation of the pharmaceutical composition contains about 50 mg to about 1200 mg of nitazoxanide per unit formulation, about 50 mg to about 1200 mg of atovaquone per unit formulation, and about 1 mg to about 500 mg of ribavirin per unit formulation. Optionally, the unit formulation of the pharmaceutical composition contains about 60 mg to about 600 mg of nitazoxanide per unit formulation, about 60 mg to about 600 mg of atovaquone per unit formulation, and about 10 mg to about 200 mg of ribavirin per unit formulation. Optionally, the unit formulation of the pharmaceutical composition contains about 111 mg of nitazoxanide per unit formulation, about 111 mg of atovaquone per unit formulation, and about 33 mg of ribavirin per unit formulation.
[0141] In one embodiment, the pharmaceutical composition may be administered to a subject in need thereof once daily (QD), twice daily (BID), three times daily (TID) or four times daily (QID), at 1, 2, 3, 4 or 5 units each time.
[0142] In another aspect, the novel pharmaceutical compositions of the present invention comprise the active pharmaceutical ingredients a) a therapeutically effective amount of nitazoxanide or a pharma- ceutically acceptable salt thereof, b) a therapeutically effective amount of atovaquone or a pharma- ceutically acceptable salt thereof, and at least one pharma- ceutically acceptable excipient, carrier, or diluent.
[0143] In one embodiment, the active pharmaceutical ingredient is comprised of nitazoxanide and atovaquone in a fixed ratio. Fixed ratio refers to a weight ratio of nitazoxanide:atovaquone of about 1:0.1 to about 1:10. Preferably, the fixed ratio refers to a weight ratio of nitazoxanide:atovaquone of about 1:0.1, about 1:0.2, about 1:0.5, about 1:0.8, about 1:1, about 1:1.2, about 1:1.5, about 1:2, about 1:5, about 1:10, or any range value between any of the aforementioned two ratios. A particularly preferred fixed ratio refers to a weight ratio of nitazoxanide:atovaquone of about 1:1.
[0144] The pharmaceutical compositions are formulated as tablets, capsules or suspensions.
[0145] In one embodiment, the unit formulation of the pharmaceutical composition contains about 50 mg to about 1200 mg of nitazoxanide per unit formulation and about 50 mg to about 1200 mg of atovaquone per unit formulation. Preferably, the unit formulation of the pharmaceutical composition contains about 60 mg to about 500 mg of nitazoxanide per unit formulation and about 60 mg to about 500 mg of atovaquone per unit formulation. Preferably, the unit formulation of the pharmaceutical composition contains about 80 mg to about 250 mg of nitazoxanide per unit formulation and about 80 mg to about 250 mg of atovaquone per unit formulation. Preferably, the unit formulation of the pharmaceutical composition contains about 100 mg to about 200 mg of nitazoxanide per unit formulation and about 100 mg to about 200 mg of atovaquone per unit formulation. Preferably, the unit dosage form of the pharmaceutical composition contains about 111 mg of nitazoxanide per unit dosage form and about 111 mg of atovaquone per unit dosage form. It is particularly preferred that the unit dosage form of the pharmaceutical composition contains about 165 mg of nitazoxanide per unit dosage form and about 165 mg of atovaquone per unit dosage form.
[0146] In one embodiment, the pharmaceutical composition may be administered to a subject in need thereof once daily (QD), twice daily (BID), three times daily (TID) or four times daily (QID), at 1, 2, 3, 4 or 5 units each time.
[0147] Excipients
[0148] The pharmaceutical composition provided by the present invention is administered orally.The present invention provides a pharmaceutical composition comprising a solid dispersion, the solid dispersion comprising nitazoxanide, atovaquone, ribavirin as described herein and one or more pharma- ceutically acceptable excipients or carriers.In some embodiments, the pharma-ceutically acceptable excipients or carriers include, but are not limited to, diluents, solubilizers, disintegrants, lubricants, binders, glidants, and combinations thereof.The composition can be prepared by methods well known in the pharmaceutical arts.
[0149] The pharmaceutical composition may be administered orally in a single or multiple doses. Administration may be by tablet, capsule, suspension, etc. In one embodiment, the pharmaceutical composition of the present invention is a compound formulation, and the compound formulation is in the form of a tablet. In another embodiment, the tablet is a compressed tablet. When preparing a pharmaceutical composition containing a solid as described herein, the active ingredient is usually diluted with an excipient and / or encapsulated in a carrier, and the carrier may be in the form of a capsule, tablet, sachet, paper or other container. When the excipient acts as a diluent, the excipient may be a solid, semi-solid or liquid material (as described above) that acts as a vehicle, carrier or medium for the active ingredient.
[0150] In one embodiment, the pharmaceutical composition comprises a solubilizer selected from the group consisting of sodium lauryl sulfate (SLS, sodium dodecyl sulfate (SDS)), poloxamer 188 (Pluronic® F68), polyoxyethylene sorbitan monooleate (Tween® 80) or polyoxyethylene sorbitan monolaurate (Tween® 20), 1,2-dimyristoyl-sn-glycero-3-phosphocholine (DMPC), and combinations thereof. In some embodiments, the weight content of the solubilizer in the pharmaceutical composition is about 0.1-3% w / w.
[0151] In one embodiment, the pharmaceutical composition contains SLS in an amount of about 0.1% to about 3% w / w, or about 0.1% to about 2.5% w / w, or about 0.5% to about 3% w / w, or about 0.5% to about 2.5% w / w, or about 0.5% to about 2% w / w, or about 1% to about 3% w / w, or about 1% to about 2% w / w. In certain embodiments, the amount of SLS is about 0.1%, or about 0.5%, or about 1%, or about 2%, or about 2.5%, or about 3% w / w.
[0152] In another embodiment, the pharmaceutical composition contains poloxamer 188 in an amount of about 0.1% to about 3% w / w, or about 0.1% to about 2.5% w / w, or about 0.5% to about 3% w / w, or about 0.5% to about 2.5% w / w, or about 0.5% to about 2% w / w, or about 1% to about 3% w / w, or about 1% to about 2% w / w. In certain embodiments, the amount of poloxamer 188 is about 0.1%, or about 0.43%, or about 0.5%, or about 1%, or about 2%, or about 2.5%, or about 3% w / w.
[0153] In one embodiment, the pharmaceutical composition further comprises a diluent selected from the group consisting of microcrystalline cellulose, calcium hydrogen phosphate, cellulose, compressible sugar, calcium hydrogen phosphate anhydrous, lactose, lactose monohydrate, mannitol, starch, tricalcium phosphate, and combinations thereof. In some embodiments, the weight content of the diluent in the pharmaceutical composition is about 1-40% w / w.
[0154] In another embodiment, the pharmaceutical composition contains microcrystalline cellulose, and the amount of microcrystalline cellulose is about 1% to about 40% w / w, or about 1% to about 35% w / w, or about 1% to about 25% w / w, or about 5% to about 25% w / w, or about 10% to about 25% w / w, or about 15% to about 25% w / w. In certain embodiments, the amount of microcrystalline cellulose is about 5% w / w, or about 10% w / w, or about 15% w / w, or about 19.46% w / w, or about 20% w / w, or about 21% w / w, or about 22% w / w, or about 23% w / w, or about 24% w / w, or about 24.04% w / w, or about 25% w / w, or about 30% w / w, or about 35% w / w, or about 40% w / w.
[0155] In one embodiment, the pharmaceutical composition comprises a disintegrant selected from the group consisting of sodium carboxymethyl starch, low-substituted hydroxypropyl cellulose, croscarmellose sodium, crospovidone, microcrystalline cellulose, modified corn starch, povidone, pregelatinized starch, and combinations thereof. In some embodiments, the weight content of the disintegrant in the pharmaceutical composition is about 1-20% w / w.
[0156] In another embodiment, the pharmaceutical composition contains low-substituted hydroxypropyl cellulose, and the amount of low-substituted hydroxypropyl cellulose is about 0.1% to about 3% w / w, or about 0.1% to about 2.5% w / w, or about 0.5% to about 3% w / w, or about 0.5% to about 2.5% w / w, or about 0.5% to about 2% w / w, or about 1% to about 3% w / w, or about 1% to about 2% w / w. In certain embodiments, the amount of low-substituted hydroxypropyl is about 0.1%, or about 0.43%, or about 0.5%, or about 1%, or about 2%, or about 2.29%, or about 2.5%, or about 3% w / w, or about 3.5%, or about 4% w / w.
[0157] In one embodiment, the pharmaceutical composition contains sodium carboxymethyl starch, and the amount of sodium carboxymethyl starch is about 1% to about 20% w / w, or about 1% to about 15% w / w, or about 1% to about 10% w / w, or about 1% to about 8% w / w, or about 2% to about 8% w / w. In certain embodiments, the amount of sodium carboxymethyl starch is about 1%, or about 2%, or about 3%, or about 4%, or about 4.86%, or about 5%, or about 6%, or about 7% w / w, or about 8%, or about 9%, or about 10%, or about 13%, or about 15% w / w.
[0158] In one embodiment, the pharmaceutical composition contains pregelatinized starch, and the amount of pregelatinized starch is about 1% to about 20% w / w, or about 1% to about 15% w / w, or about 1% to about 10% w / w, or about 5% to about 9% w / w. In certain embodiments, the amount of pregelatinized starch is about 1%, or about 2%, or about 3%, or about 4%, or about 5%, or about 6%, or about 7% w / w, or about 8%, or about 8.27%, or about 9%, or about 10%, or about 13%, or about 15% w / w.
[0159] In one embodiment, the pharmaceutical composition further comprises a binder selected from the group consisting of povidone, copovidone, hydroxypropyl cellulose, low-substituted hydroxypropyl cellulose, hydroxypropyl methylcellulose, ethyl cellulose, and pregelatinized starch, and combinations thereof. In some embodiments, the weight content of the binder in the pharmaceutical composition is about 1-20% w / w.
[0160] In one embodiment, the pharmaceutical composition further comprises copovidone, the amount of copovidone being about 1% to about 20% w / w, or about 1% to about 15% w / w, or about 1% to about 10% w / w, or about 1% to about 8% w / w, or about 2% to about 5% w / w. In certain embodiments, the amount of copovidone is about 1%, or about 2%, or about 3%, or about 3.80%, or about 4%, or about 5%, or about 10%, or about 15% w / w.
[0161] In one embodiment, the pharmaceutical composition further comprises a lubricant selected from the group consisting of magnesium stearate, calcium stearate, polyvinyl alcohol, sodium stearyl fumarate, stearic acid, talc, and combinations thereof. In some embodiments, the weight content of the lubricant in the pharmaceutical composition is about 0.1-5% w / w.
[0162] In one embodiment, the pharmaceutical composition contains magnesium stearate, and the amount of magnesium stearate is about 0.1% to about 5% w / w, or about 0.1% to about 4% w / w, or about 0.1% to about 3% w / w, or about 0.1% to about 2.5% w / w, or about 0.5% to about 3% w / w, or about 0.5% to about 2.5% w / w, or about 0.5% to about 2% w / w, or about 1% to about 3% w / w, or about 1% to about 2% w / w. In certain embodiments, the amount of magnesium stearate is about 0.1%, or about 0.42%, or about 0.5%, or about 1%, or about 2%, or about 2.5%, or about 3%, or about 3.5%, or about 4%, or about 4.5%, or about 5% w / w.
[0163] In other embodiments, the pharmaceutical composition further comprises a glidant selected from the group consisting of colloidal silicon dioxide, talc, starch, starch derivatives, and combinations thereof. In some embodiments, the weight content of the glidant in the pharmaceutical composition is about 0.1-5% w / w.
[0164] In other embodiments, the pharmaceutical composition contains colloidal silicon dioxide, and the amount of colloidal silicon dioxide is about 0.1% to about 5% w / w, or about 0.1% to about 4.5% w / w, or about 0.1% to about 4% w / w, or about 0.5% to about 5.0% w / w, or about 0.5% to about 3% w / w, or about 0.5% to about 2% w / w, or about 0.5% to about 1.5% w / w. In certain embodiments, the amount of colloidal silicon dioxide is about 0.1% w / w, or about 0.5% w / w, or about 0.75% w / w, or about 1.25% w / w, or about 1.5% w / w, or about 2% w / w.
[0165] In one embodiment, the pharmaceutical composition comprises a) about 30% to about 50% w / w nitazoxanide and b) about 30% to about 50% w / w atovaquone. In a related embodiment, the composition comprises a) about 33% w / w nitazoxanide and b) about 33% w / w atovaquone. In another related embodiment, the composition further comprises a) about 0.5% to about 2% w / w SLS, b) about 15% to about 25% w / w microcrystalline cellulose, c) about 1% to about 10% w / w sodium carboxymethyl starch, d) about 3% to about 4% w / w povidone, and e) about 0.1% to about 3% w / w magnesium stearate. In another embodiment, the pharmaceutical composition comprises a) about 33% w / w nitazoxanide, b) about 33% w / w atovaquone, c) about 1% w / w SLS, d) about 23% w / w microcrystalline cellulose, e) about 5% w / w sodium carboxymethyl starch, f) about 4% w / w povidone, and g) about 1% w / w magnesium stearate.
[0166] In another embodiment, the pharmaceutical composition comprises a) about 30% to about 50% w / w nitazoxanide and b) about 30% to about 50% w / w atovaquone. In a related embodiment, the composition comprises a) about 35% w / w nitazoxanide and b) about 35% w / w atovaquone. In another related embodiment, the composition further comprises a) about 0.5% to about 2% w / w poloxamer 188, b) about 15% to about 25% w / w microcrystalline cellulose, c) about 1% to about 10% w / w sodium carboxymethyl starch, d) about 3% to about 4% w / w povidone, and e) about 0.1% to about 3% w / w magnesium stearate. In another embodiment, the pharmaceutical composition comprises a) about 35.11% w / w nitazoxanide, b) about 35.11% w / w atovaquone, c) about 0.5% w / w poloxamer 188, d) about 20% w / w microcrystalline cellulose, e) about 5.18% w / w sodium carboxymethyl starch, f) about 3.6% w / w povidone, and g) about 0.5% w / w magnesium stearate.
[0167] In one embodiment, the pharmaceutical composition comprises a) about 15.86% w / w of nitazoxanide, b) about 15.86% w / w of atovaquone, c) about 4.71% w / w of ribavirin, d) about 19.46% w / w of microcrystalline cellulose PH101, e) about 0.43% w / w of poloxamer 188, f) about 24.04% w / w of microcrystalline cellulose PH102, g) about 4.86% w / w of sodium carboxymethyl starch, h) about 3.80% w / w of copovidone, i) about 0.42% w / w of magnesium stearate, j) about 8.27% w / w of pregelatinized starch, and k) about 2.29% w / w of low-substituted hydroxypropyl cellulose.
[0168] The chemical name of nitazoxanide (NTZ) is o-[N-(5-nitro-1,3-thiazol-2-yl)carbamoyl]phenol acetate), CAS: 55981-09-4, molecular formula: C 12 H9N3O5S, molecular weight: 307.28, its chemical formula is: [ka]
[0169] The chemical name of tizoxanide (TIZ) is 2-hydroxy-N-(5-nitro-2-thiazolyl)benzamide, CAS: 1246817-56-0, molecular formula: C 10 H7N3O4S, molecular weight: 265.24528, its chemical formula is: [ka]
[0170] The chemical name of atovaquone (ATQ) is 2-(trans-4-(4-chlorophenyl)cyclohexyl)-3-hydroxy-1,4-naphthalenedione, CAS: 95233-18-4, molecular formula: C 22 H 19 ClO3, molecular weight: 366.84, its chemical formula is: [ka]
[0171] The chemical name of ribavirin is 1-[(2R,3R,4S,5R)-3,4-dihydroxy-5-(hydroxymethyl)oxolan-2-yl]-1H-1,2,4-triazole-3-carboxamide, also known as 1-(β-D-ribofuranosyl)-1H-1,2,4-triazole-3-carboxamide, CAS number: 36791-04-5, molecular formula: C8H 12 N4O5, molecular weight: 244.21, its chemical formula is: [ka]
[0172] The present invention provides novel pharmaceutical compositions of nitazoxanide, atovaquone and / or ribavirin for inhibiting coronavirus infection.
[0173] The present invention also provides a combination of nitazoxanide, atovaquone and / or ribavirin for the synergistic inhibition of coronavirus infections, such as SARS-CoV-2 infections and mutant strains thereof.
[0174] The above studies provide at least one novel pharmaceutical composition or at least one novel available therapeutic regimen for the treatment of SARS-CoV-2 or other coronavirus infections and their associated diseases or conditions, such as pneumonia, which can achieve effective treatment of the viral infection, or rapid alleviation of conditions associated therewith, or shortening the duration of clinical symptoms, as well as reducing the likelihood of viral infection and retransmission.
[0175] In one embodiment, the pharmaceutical composition or drug combination disclosed by the present invention exhibits no new adverse events, has a similar safety profile compared to each drug in the drug combination when used alone, and is free of negative drug-drug interactions.
[0176] In one embodiment, the pharmaceutical composition or combination drug disclosed herein is used to relieve at least one symptom of the associated disease or condition (non-limiting examples of such symptoms include those selected from cough, loss of appetite, asthma, dyspnea, fever, general malaise, dizziness, nausea, and pneumonia).
[0177] In a further embodiment, the pharmaceutical composition or drug combination disclosed in the present invention is also expected to have the potential to reduce the occurrence of cytokine storm, antagonize the cytokine storm in patients, reduce the inflammatory response, and reduce the damage of the inflammatory response to the lung tissue and multiple organs in patients.
[0178] The pharmaceutical composition or combination drug regimen provided by the present invention refers to the treatment or prevention of coronavirus infection containing nitazoxanide or tizoxanide, and ribavirin and / or atovaquone, particularly the pharmaceutical composition containing tizoxanide, ribavirin and atovaquone (hereinafter referred to as the pharmaceutical composition of the present invention, or the pharmaceutical composition Anticov-1), which, compared with existing novel coronavirus treatment drugs, has the following four important features: convenient oral administration, guaranteed safety, strong antiviral effect and antiviral mechanism is not affected by viral mutation, and is the only specific treatment drug for novel coronavirus that has highly effective anti-inflammatory storm at the same time. These features of the pharmaceutical composition provided by the present invention have great potential for controlling the epidemic situation of novel coronavirus, and other novel coronavirus treatment drugs, including Merck's Molnupiravir and Pfizer's Paquilovid (composed of PF-07321332 and ritonavir) anti-coronavirus drugs, only have some of the above features. Therefore, the pharmaceutical composition provided by the present invention is expected to cover the entire process and the entire population, from prevention of high-risk groups after close contact, to progression of mild and moderate to severe disease, and treatment of severe and critical patients, and is expected to contribute to controlling the global novel coronavirus pandemic.
[0179] First, easy oral administration. People infected with the new coronavirus or high-risk close contacts, such as family members of confirmed cases, neighbors in the community, and colleagues in the department, only need to take the medicine themselves, and do not need to go to the hospital for injection drugs, reducing the risk of infection and fear, reducing medical costs, and allowing people to maintain normal social activities with simple protection. The pharmaceutical composition of the present invention is a tablet that is easy to transport and take and can be used for both symptomatic and asymptomatic infected patients. New coronavirus cases and high-risk close contacts can take the drug in home isolation or designated isolation places to achieve the effect of infection prevention and control. In addition, there are also advantages in the production capacity and cost of oral medicine, which is very important for epidemic control.
[0180] Second, guaranteed safety. From the perspective of mechanism of action, most oral drugs for novel coronavirus target the viral RNA replication process or cause mutations in viral genes. The long-term safety data of this class of drugs, especially the risk of genotoxicity and promotion of new viral variants, require attention. Studies have reported that Merck's anti-coronavirus drugs can be incorporated into the genetic material of mammalian cells, causing mutations during cell replication and theoretically posing the risk of further inducing cancer and neonatal malformations (J.Biol.Chem.(2021)297 100867). 3CL protease inhibitors have not been approved for any indications so far, and long-term safety data is unknown. The three-component drugs contained in the novel specific anti-coronavirus pharmaceutical composition provided by the present invention have been approved by regulatory authorities such as the FDA, have been used clinically around the world for decades, and have been used safely in hundreds of thousands or even more patients around the world, so clinical safety is guaranteed. Based on preclinically significant anti-coronavirus activity data, the dose of the pharmaceutical composition of the present invention for the treatment of novel coronavirus is much lower than the drug dose approved by the FDA. For example, the usual clinical dose of the pharmaceutical composition (Anticov-1) provided by the present invention for the treatment or prevention of infections caused by the new coronavirus and its mutant strains is about 999 mg / day of the active ingredient NTZ, which is only 1 / 4 of the maximum dose (MAD) of NTZ used safely in clinical practice, which is below the usual clinical dose. The active ingredient RBV is about 297 mg / day, which is 1 / 8 of the maximum dose (MAD) of RBV that is clinically safe, which is only 1 / 4 of the dose commonly used clinically. The active ingredient ATQ is about 999 mg / day, which is 1 / 3 of the maximum dose (MAD) of ATQ that is safely used in clinical practice, which is only 2 / 3 of the dose commonly used clinically. The pharmaceutical composition provided by the present invention can effectively combat the new coronavirus while minimizing safety risks. In the face of the treatment needs of tens of millions, even hundreds of millions of people, it is a very important advantage to completely guarantee the safety of a therapeutic or prophylactic drug.Drugs whose safety has been proven over time make it easier to treat patients and more confident in beating the epidemic.
[0181] Additionally, atovaquone and nitazoxanide have high plasma protein binding rates, both approximately 99% (see Beerahee M. Clinical pharmacology of atovaquone and proguanil hydrochloride. [J]. Journal of Travel Medicine, 1999, 6 suppl 1: S13-7.; Alinia™ PRESCRIBING INFORMATION - FDA). The present application also studied and compared the in vivo plasma protein binding rates of atovaquone and nitazoxanide administered in combination and separately. The results demonstrate that administration of atovaquone in combination with nitazoxanide has no significant difference in plasma protein binding compared to separate administration (the mean plasma protein binding rates of atovaquone and nitazoxanide in the combined administration group are 99.86% and 99.84%, respectively, and the mean plasma protein binding rates of atovaquone and nitazoxanide in the separate administration group are 99.84% and 98.95%), i.e., there is no competition between atovaquone and nitazoxanide for binding to plasma proteins. Compared to single administration, combined administration does not affect the distribution and elimination of the two drugs in vivo, and competition for plasma protein binding sites by one drug does not result in an increase in the free form of another drug. The safety of the pharmaceutical composition or combined drug regimen involved in this application is further demonstrated.
[0182] Third, it has a strong antiviral effect, and the antiviral mechanism is not affected by viral mutations. The WHO has named the alpha, beta, gamma, delta and omicron variants of the novel coronavirus as "variants of concern". The new mutant strains have mutations in several key sites of the spike protein used to recognize cell receptors and enter cells, increasing the viral load, viral transmission ability and the risk of reinfection, which has become an important reason for the recurrence of global epidemics. At the same time, the new mutant strains may also result in a decrease in vaccine efficacy and a decrease in the efficacy of neutralizing antibodies. For example, due to the insufficient efficacy of treating the novel coronavirus mutant strain, the FDA urgently suspended the use of Lilly's neutralizing antibody drug in June 2021, and after resumption, it is only permitted to be used in areas where the prevalence of drug-resistant strains is less than 5%. The pharmaceutical composition of the present invention has a broad-spectrum antiviral activity mechanism, and its antiviral mechanism of action is not affected by viral mutations, since the antiviral purpose is mainly achieved by activating the natural antiviral genes and natural antiviral immune barriers of the body's cells.
[0183] Fourth, high anti-inflammatory storm effect. Inflammatory storm, also known as cytokine storm, is an overreaction of the body's immune system to the novel coronavirus. Massive release of cytokines in the body leads to acute inflammatory responses and organ damage, which is a key factor in the conversion of novel coronavirus pneumonia from mild / moderate to severe, critical, and even death. In the body's cells, the "master switch" that controls inflammatory factors is STAT3, and since the novel coronavirus pandemic, many scientific papers have reported that STAT3 acts as a master switch to control the inflammatory storm in the pathological mechanism of the novel coronavirus (Microbial Pathogenesis 154 (2021) 104836, Cell Death & Differentiation (2020) 27: 3209-3225). STAT3 is involved in the induction of inflammatory responses during novel coronavirus infection, inhibiting antiviral interferon responses and resulting in an imbalance of antiviral adaptive immune responses (Figure 7). Therefore, inhibiting the activation of the STAT3 pathway is a powerful strategy to treat COVID-19 infection from the source switch of inflammatory storm. The pharmaceutical composition of the present invention can inhibit the activation of STAT3, which is the "master switch" of inflammatory factors, and inhibit the release of inflammatory factors (e.g., TNF-α), thereby reducing the inflammatory response (Figures 8 and 9) and preventing the occurrence of inflammatory storm. Its anti-inflammatory storm effect is a powerful weapon for the treatment of novel coronavirus pneumonia and the prevention of novel coronavirus infection causing disease in the body. It is expected to inhibit inflammatory cytokines and reduce inflammatory damage in the lungs and other organs in patients with novel coronavirus pneumonia, which is also the only drug under development on the market that not only inhibits the novel coronavirus itself, but also acts on the effect of inflammatory storm on the course of the disease. The pharmaceutical composition of the present invention can be used simultaneously to prevent the conversion of mild and moderate to severe diseases, as well as to treat severe and critical patients.
[0184] In summary, the pharmaceutical composition of the present invention is the only innovative new specific anti-coronavirus drug under development worldwide, which has four advantages at the same time (convenient oral administration, guaranteed safety, strong antiviral effect and antiviral mechanism is not affected by viral mutation, and highly effective anti-inflammatory storm). The pharmaceutical composition of the present invention covers the whole process and the whole population, from prevention of high-risk groups after close contact, to the progression of mild and moderate to severe disease, and the treatment of severe and critical patients, and is expected to avoid the implementation constraints that other drugs such as nucleoside and protease inhibitors may face, which is expected to encourage global promotion and use and contribute to the control of the global pandemic of the new coronavirus.
[0185] Meanwhile, the present invention also provides a method for treating or preventing a coronavirus infection or a disease or condition associated therewith in a patient by administering the novel pharmaceutical composition of the co-formulation or combination drug of the present invention. In an embodiment, the prevention of a disease or condition caused by or associated with a coronavirus infection includes chemoprevention or pharmacoprophylaxis. The coronavirus is SARS-CoV-2 or a mutant strain thereof, SARS, MERS, 229E, NL63, OC43 or HKU1. In one embodiment, the associated disease or condition is pneumonia. The method reduces at least one symptom of the disease or condition, non-limiting examples of the at least one symptom being selected from the group consisting of cough, loss of appetite, asthma, dyspnea, fever, general malaise, dizziness, nausea, reduced or lost sense of smell, and pneumonia.
[0186] In some embodiments, a pharmaceutical composition for use in a method for treating or preventing a disease or condition caused by or associated with a coronavirus infection, comprising administering the pharmaceutical composition to a subject in need thereof 1-4 times per day with 1-5 units of the formulation each time. In some embodiments, the method comprises administering the pharmaceutical combination to a subject in need thereof 2-4 times per day with 2-4 units of each formulation. In some embodiments, the subject in need thereof is a mild patient, a general patient, a severe patient, or a critical patient caused by a coronavirus infection. In some embodiments, the method further comprises simultaneously or sequentially administering to a subject in need thereof a therapeutically effective amount of at least one other therapeutic agent, the other therapeutic agent being an antiviral antibody drug, or other antiviral drug, or other symptomatic treatment drug for a symptom caused by a coronavirus infection. In some embodiments, the coronavirus is SARS-CoV-2 or a mutant strain thereof, SARS, MERS, 229E, NL63, OC43 and / or HKU1, in particular SARS-CoV-2 or a mutant strain thereof. In some embodiments, mutant strains of SARS-CoV-2 include, but are not limited to, alpha strains (B.1.1.7), beta strains (B.1.351), gamma strains (P.1), delta strains (B.1.617.2), epsilon strains (B.1.427 / B.1.429), zeta strains (P.2), eta strains (B.1.525), theta strains (P.3), iota strains (B.1.526), kappa strains (B.1.617.1), lambda strains (C.37), mu strains (B.1.621), and omicron strains (B.1.1.529 and its descendant lineages BA.1, BA.1.1, BA.2, BA.2.12.1, BA.2.75, BA.3, BA.4, BA.4.6, BA.5, XE). In some embodiments, the disease or condition caused by or associated with a coronavirus infection is pneumonia caused by SARS-CoV-2 infection and infection with mutant strains thereof (COVID-19). EXAMPLES
[0187] IV. Working Examples
[0188] Example 1: Cell Culture Vero E6 African green monkey kidney cell line (ATCC, No. 1586) was obtained from the American Type Culture Collection and subcultured in DMEM medium (Gibco Invitrogen) supplemented with 1% (v / v) penicillin + streptomycin at 37°C in a 5% CO2 atmosphere.
[0189] Example 2: Isolation of viral strains
[0190] The original strain of SARS-CoV-2 (hCoV-19 / China / CAS-B001 / 2020) is from the Institute of Microbiology, Chinese Academy of Sciences. Another original strain of SARS-CoV-2, WIV04 (nCoV-2019 BetaCoV / Wuhan / WIV04 / 2019), is from the Wuhan Institute of Virology, Chinese Academy of Sciences. The SARS-CoV-2 beta mutant strain was obtained from the National Pathogen Resource Center (NPRC) (2.062100001). The SARS-CoV-2 delta mutant strain was obtained from the NPRC (China Science and Technology Resource.16698.06.NPRC 6.CCPM-BV-049-2105-8). The SARS-CoV-2 omicron mutant strain was obtained from the Wuhan Institute of Virology, Chinese Academy of Sciences. The different mutant strains were cultured in Vero E6 cells and assayed for 50% tissue culture infectious dose (TCID 50 The virus titer was determined by measuring the TCID 50」 Its official name is median tissue culture infectious dose, tissue median infectious dose, or 50% tissue cell infectious dose, which refers to the amount of virus required to cause half the cytopathic effect (CPE) or half the cell death in a culture plate well or test tube and is used to characterize the titer of the virus. All infection experiments were performed in a biosafety level 3 (BLS-3) laboratory.
[0191] Experimental drugs: Nitazoxanide (NTZ) API was purchased from Zhejiang Cheng Yi Pharmaceutical Co., Ltd. (Lot No. 0501-2020-03901), Ribavirin (RBV) API was purchased from AZICO Biophore India Pvt. Ltd. (Lot No. 4038 / 3 / 006 / 21), and Atovaquone (ATQ) API was purchased from NURAY Chemicals Pvt. Ltd. (Lot No. ATORD210001). "Anticov-1" is a pharmaceutical composition containing the active ingredients NTZ, ATQ and RBV.
[0192] Example 3: Antiviral activity test of drugs
[0193] To evaluate the antiviral effect of the pharmaceutical composition of the present invention, cells were pretreated with different concentrations of the anti-coronavirus drug of the present invention for 8 hours or overnight, and DMSO was set as a negative control at the same time. Then, the virus was added and a total of 100 TCID 50 (TCID 50 =10 7.0 Vero E6 cells were infected with SARS-CoV-2 at 1000 μg / mL. After 72 h of infection, cytopathic effect (CPE) was observed. The virus-drug mixture was then removed and the cells were further cultured in fresh medium containing the drug. Cell supernatants were collected after 48 h of incubation and lysed in lysis buffer (Takara Bio Inc., Cat. No. 9766) for quantitative analysis.
[0194] Following the kit instructions, 100 μL of cell culture supernatant was collected and viral RNA was extracted using the MiniBEST Viral RNA / DNA Extraction Kit (Takara Bio Inc., Cat. No. 9766). RNA was eluted in 30 μL of RNase-free water. Reverse transcription was performed using a Reverse Transcription Kit with gDNA Eraser (Takara Corp., Cat. No. RR047A) and qRT-PCR was performed on a StepOne Plus Real-time PCR System (Applied Biosystem) using TB Green Premix Ex Taq II (Takara Bio Inc., Cat. No. RR820A). Dose-response curves of viral RNA copies versus drug concentrations were plotted using GraphPad Prism 6 software.
[0195] The dose-response curve results of SARS-CoV-2 virus inhibition rate against drug concentration are shown in Figure 1. The anti-coronavirus inhibitory activity EC 50 is 0.47 μM.
[0196] Example 4: Synergistic effect of Anticov-1 on anti-SARS-CoV-2 viral activity
[0197] A wild-type strain of SARS-CoV-2 (hCoV-19 / China / CAS-B001 / 2020 strain, TCID50=107.0 / mL) was used to infect Vero-E6 cells. Six different experimental drug combinations (Anticov-1, NTZ+RBV, NTZ+ATQ, ATQ+RBV, NTZ, ATQ) were added to a 96-well plate at concentrations of 20 μM, 10 μM, 5 μM, 2.5 μM, 1.25 μM, 0.625 μM, 0.31 μM, and 0.16 μM, respectively (solvent DMSO), and DMSO solvent without drug was used as a blank control. The cells were incubated for 2 hours in an incubator. After incubation, the drugs were aspirated and 100 μL of wild-type strain of SARS-CoV-2 (hCoV-19 / China / CAS-B001 / 2020) dilutions (total of 100 TCID 50) was added to wells other than the negative control, to which virus-free DMEM medium was added, and the negative control was cultured in an incubator for 2 hours. The virus solution was aspirated and removed, and new drug dilutions were added again. The cell plates were placed in an incubator and cultured for 72 hours to observe cytopathic effect (CPE), and EC was determined according to the observed results of CPE (results are shown in Table 1). 50 The values were calculated, and the inhibition rates at the dilution concentration points were fitted with a curve as shown in FIG. [Table 1]
[0198] The results in Figure 2 and Table 1 show that the combination of NTZ+ATQ exhibits a significant synergistic anti-SARS-CoV-2 viral effect. Even more surprising is that Anticov-1, a triple combination of NTZ, ATQ and RBV, exhibited a highly surprising and significant synergistic antiviral effect against SARS-CoV-2 compared to any doublet or monotherapy regimen, with superior EC 50 levels were achieved and antiviral synergy was significantly superior to other combination drug regimens.
[0199] Example 5: Cytotoxicity studies of Anticov-1
[0200] Vero E6 cells were seeded in 96-well plates and cultured in a 5% CO2 / 37°C incubator for 24 hours. Anticov-1 was added to the 96-well plates at concentrations of 20 μM, 10 μM, 5 μM, 2.5 μM, 1.25 μM, 0.63 μM, 0.31 μM and 0.16 μM, respectively, and DMEM medium was added as control wells. At the same time, wells that were added with DMEM medium but not seeded with cells were used as blank wells. After 24 and 48 hours, the cytotoxic effect on Vero E6 cells at each concentration was observed, respectively (the results are shown in Figure 3(a) and Figure 3(b) respectively). The results showed that after 24 or 48 hours of incubation, no obvious cytotoxicity was observed for Anticov-1 test products at concentrations of at least 5 μM and less, indicating the CC of Anticov-1 in Vero E6 cells. 50 indicates that the concentration is ≧5 μM.
[0201] After 72 hours of incubation, the cell proliferation inhibitory effect of Anticov-1 on Vero E6 cells was tested. 10 μL of CCK-8 solution was added to a 96-well plate, and OD values were measured at a dominant wavelength of 450 nm using a microplate reader after 1 hour. The cell inhibition rate of Anticov-1 at each concentration was calculated, and the AP of Anticov-1 on Vero E6 cells was 50 (concentration for 50% antiproliferative effect) was 1.988 μM.
[0202] Example 6: PK of Anticov-1 tablets in rats
[0203] Experimental drug Anticov-1 tablets specifications: NTZ 111mg / ATQ 111mg / RBV 33mg per tablet.
[0204] The equivalent dose in rats was converted according to the clinical dose in humans, and five experimental dose groups were designed (see Table 2 for details). Of these, the fourth group was converted according to the clinical dose of 3 tablets, and the remaining experimental groups were converted according to the clinical dose of 4 tablets. [Table 2]
[0205] A single dose was administered to healthy SD rats, and blood was collected according to the blood collection schedule. After sample processing, analysis and data processing, the plasma concentration-time curves of each group were drawn respectively. The pharmacokinetic parameters of each group of drugs in rats were calculated by WinNonlin 6.1 software.
[0206] The changes in NTZ plasma concentrations after a single dose in groups 1, 4 and 5 are shown in Figure 4. There is no obvious difference between the NTZ plasma concentrations of NTZ administered alone at a dose of 46.6 mg / kg (group 1) and those of NTZ administered in combination at the same dose (group 5). There is no significant difference in the overall change trend of plasma concentrations over time.
[0207] The changes in ATQ plasma concentrations after a single dose in groups 2, 4 and 5 are shown in Figure 5. There were no significant differences in the overall change trends of plasma concentrations over time, among which ATQ plasma concentrations showed a decreasing trend 16-24 hours after ATQ alone administration, and ATQ plasma concentrations showed a plateau or increasing trend 16-24 hours after combination administration. In all experimental groups, the exposure levels (AUC 0~24h ) are similar to the exposure levels when administered in combination at the same dose, and the exposure levels decrease as the combined administered dose decreases.
[0208] The changes in RBV plasma concentrations after a single dose in groups 3, 4, and 5 are shown in Figure 6. Compared with the results for nitazoxanide and atovaquone, within 0.5 to 4 hours after administration, the RBV plasma concentrations administered alone at 13.9 mg / kg (group 3) were higher than those administered in combination at the same dose (group 5), and higher than those administered in combination at 10.4 mg / kg (group 4). In all experimental groups, the exposure levels (AUC 0~24h) was slightly higher than the exposure levels of the combination at the same dose, and the exposure levels further decreased as the combination dose was decreased.
[0209] Overall, the results of the in vivo PK experiments in rats indicate that the triple combination regimen has little effect on the PK of each active ingredient administered alone, the plasma concentration levels of each drug are similar at least 4 hours after single dose administration, and combination administration even has an advantage in maintaining plasma concentrations of certain drugs (e.g., ATQ) after 16 hours compared to monotherapy.
[0210] To evaluate the efficacy of antiviral drugs, we mainly measure the viral inhibitory activity (EC 50 ) and plasma concentration is EC 50 It is also measured by comparing whether the plasma concentration can reach the EC 50 If the plasma concentration of the drug is much higher than the EC 50 If this cannot be achieved, EC 50 No matter how low the value is, it has no clinical significance. Compared with the currently under development or approved anti-new coronavirus drugs (Pfizer's Paquilovid and Merck's Molnupiravir), Anticov-1 has many advantages. The obvious advantages in the effect of anti-new coronavirus are shown in Table 3 below. The active ingredient of the anti-coronavirus drug of the present invention has good pharmacokinetic properties, and after taking the drug, the plasma concentration can continue to exceed the effective amount of novel coronavirus inhibition by several tens of times, which is much higher than Paquilovid or Molnupiravir. [Table 3] a.Owen et al.,Science,2021;*EC of the protease inhibitor PF-07321332 in combination with the p-glycoprotein inhibitor CP-100356 50 The EC value of PF-07321332 administered alone was 0.074 μM. 50 is 4.48 μM b. Summary of La Ghebrio's product characteristics
[0211] Example 7: Anti-inflammatory test: Blockade of IL-6-mediated activation of STAT3 in human blood cells
[0212] Anticov-1 was co-incubated with human myeloma cells U266, excessive inflammation was induced using IL-6, and the expression of pSTAT3 and STAT3 was measured.
[0213] The test results are shown in Figure 8, and the phosphorylated STAT3 (pSTAT3) level of U266 cells treated with Anticov-1 is similar to or lower than that of the control group not induced by IL-6; compared with the expression level of pSTAT3 in U266 cells directly induced by IL-6 without Anticov-1 treatment, the expression level of pSTAT3 in the former is only about one-quarter of that in the latter after 3 hours and 6 hours. The results suggest that Anticov-1 can significantly inhibit the activation of STAT3, thereby inhibiting inflammatory storm.
[0214] Example 8: Anti-inflammatory test: Blocking IL-6-mediated release of TNF-α in human blood cells
[0215] After co-incubating Anticov-1 with human myeloma cells U266, we induced excessive inflammation using IL-6 and determined the expression of TNF-α.
[0216] The test results are shown in Figure 9. The expression of TNF-α in cells treated with Anticov-1 for 2 hours is not significantly different from or even lower than that of the control group without IL-6 induction. However, the expression levels of TNF-α at 3 and 6 hours in cells not treated with Anticov-1 are about 3 and 4 times higher than the expression levels of TNF-α after Anticov-1 treatment, respectively. The results demonstrate that Anticov-1 can significantly inhibit the release of inflammatory factors and effectively inhibit inflammatory storm.
[0217] Example 9: Inhibitory activity of Anticov-1 against broad-spectrum novel coronavirus strains
[0218] To evaluate the inhibitory activity of Anticov-1 against the main pandemic novel coronavirus strains, Vero E6 cells were seeded in 96-well plates at a density of 5000 cells / well and cultured overnight. Anticov-1 was added to the 96-well plates at concentrations of 20 μM, 10 μM, 5 μM, 2.5 μM, 1.25 μM, 0.63 μM, 0.31 μM and 0.16 μM and incubated for 2 h, respectively. Then, 100 μL of wild-type strain WIV04, beta mutant, delta mutant or omicron mutant toxin (a total of 100 TCID 50 ) was added to each well and allowed to infect for 2 hours (DMEM medium was added to blank control wells without virus). After 2 hours, the virus-drug mixture was removed and drug-containing medium was added again for incubation. After 72 hours, the cell supernatant was collected. The cell plate was washed twice with PBS, immersed in 4% paraformaldehyde, and fixed. The cell supernatant was collected and viral RNA was extracted for reverse transcription real-time quantitative PCR (RT-qPCR). The inhibition rate of Anticov-1 against each SARS-CoV-2 strain at different concentrations was calculated, and the dose-response curves of inhibition rate and drug concentration were processed and drawn by GraphPad Prism 6 software, and the results are shown in Figure 10.
[0219] The results showed that at a concentration of 0.63 μM, Anticov-1 has an inhibition rate of >95% against Omicron and Delta strains, and the inhibition rates against Beta and WIV04 strains are 78.57% and 87.97%, respectively. At a concentration of 1.25 μM, Anticov-1 achieves an inhibition rate of >99% against all four strains. Anticov-1 has a strong inhibitory effect against all major epidemic virus strains, especially the current major epidemic Omicron strain, and even has a higher inhibitory activity than the Delta strain and wild type. It is once again proven that the pharmaceutical composition or combined drug regimen of the present invention has a broad-spectrum anti-SARS-CoV-2 specific therapeutic effect.
[0220] Selectivity Index
[0221] Antikov-1 test sample CC in Vero E6 cells 50 and EC of four antiviral strains 50 According to the above, the selectivity index (SI) of each of the four virus strains against Anticov-1 could be calculated, and the results are shown in Table 4.
[0222] [Table 4]
[0223] The results show that Anticov-1 has a wide safety therapeutic index against different novel coronavirus mutant strains, suggesting that its clinical use has a broader safety window.
Claims
1. (i) at least one drug selected from nitazoxanide or tizoxanide or a pharmaceutically acceptable salt thereof, at least one atovaquone or a pharmaceutically acceptable salt thereof, and at least one ribavirin or a pharmaceutically acceptable salt or ester thereof; or (ii) A combination drug comprising at least one drug selected from nitazoxanide or tizoxanide or a pharmaceutically acceptable salt thereof, and at least one atovaquone or a pharmaceutically acceptable salt thereof.
2. 10. The pharmaceutical combination of claim 1, further comprising at least one antiviral antibody drug or combination of antiviral antibody drugs, or other antiviral therapeutic agent.
3. The combination drug of claim 1 for treating or preventing a coronavirus infection or a disease or condition associated therewith.
4. 4. The drug combination of claim 3, wherein the coronavirus is selected from the group consisting of SARS-CoV-2 or a mutant strain thereof, SARS, MERS, 229E, NL63, OC43, and HKU1, and the coronavirus infection or its associated disease or condition comprises at least one of the following symptoms: cough, loss of appetite, asthma, difficulty breathing, fever, general malaise, dizziness, nausea, decreased or lost sense of smell, and pneumonia.
5. 5. The drug combination of claim 4, wherein the coronavirus is SARS-CoV-2 or a mutant strain thereof, and the associated disease or condition is pneumonia caused by infection with SARS-CoV-2 or a mutant strain thereof (COVID-19).
6. The combination drug of claim 3, wherein nitazoxanide is administered in an oral formulation, atovaquone is administered in an oral formulation, and ribavirin is administered in an oral, inhaled, or injectable formulation.
7. 7. The combination of claim 6, comprising nitazoxanide, atovaquone, and ribavirin, wherein nitazoxanide is administered to a subject in need thereof at a total daily dose ranging from about 100 mg to about 3000 mg, atovaquone is administered to a subject in need thereof at a total daily dose ranging from about 20 mg to about 3000 mg, and ribavirin is administered to a subject in need thereof at a total daily dose ranging from about 20 mg to about 2500 mg; and wherein nitazoxanide, atovaquone, and ribavirin can each be administered once daily (QD), twice daily (BID), three times daily (TID), or four times daily (QID).
8. A pharmaceutical composition comprising an active pharmaceutical ingredient and at least one pharmaceutically acceptable excipient, carrier, or diluent, wherein the active pharmaceutical ingredient is (i): a) at least one drug selected from nitazoxanide or tizoxanide or a pharmaceutically acceptable salt thereof, b) at least one atovaquone or a pharmaceutically acceptable salt thereof, and c) at least one ribavirin or a pharmaceutically acceptable salt or ester thereof, or (ii): a) at least one drug selected from nitazoxanide or tizoxanide or a pharmaceutically acceptable salt thereof, and b) at least one atovaquone or a pharmaceutically acceptable salt thereof. A pharmaceutical composition comprising:
9. The pharmaceutical composition of claim 8 (i), wherein the active pharmaceutical ingredients comprise nitazoxanide, atovaquone, and ribavirin, and the weight ratio of nitazoxanide:atovaquone:ribavirin is (0.1-10):(0.1-10):1 or selected from the group consisting of about 1.5:1.5:1, about 2:2:1, about 2.5:2.5:1, about 3:3:1, about 10:10:3, about 3.5:3.5:1, about 4:4:1, about 4.5:4.5:1, about 5:5:1, and any range value between any two ratios.
10. 9. The pharmaceutical composition of claim 8, wherein the active pharmaceutical ingredient and the pharmaceutically acceptable excipient, carrier, or diluent are in a weight ratio of about (0.1-4):
1.
11. The pharmaceutical composition comprises: (i) about 50 mg to about 1200 mg of nitazoxanide per unit dosage form, about 50 mg to about 1200 mg of atovaquone per unit dosage form, and about 1 mg to about 500 mg of ribavirin per unit dosage form; (ii) about 60 mg to about 600 mg of nitazoxanide per unit dosage form, about 60 mg to about 600 mg of atovaquone per unit dosage form, and about 10 mg to about 200 mg of ribavirin per unit dosage form; or (iii) about 111 mg of nitazoxanide per unit dosage form, about 111 mg of atovaquone per unit dosage form, and about 33 mg of ribavirin per unit dosage form 10. The pharmaceutical composition of claim 9, comprising:
12. 10. The pharmaceutical composition of claim 8(ii), wherein the active pharmaceutical ingredients consist of nitazoxanide and atovaquone in a fixed ratio.
13. 13. The pharmaceutical composition of claim 12, wherein the fixed ratio of nitazoxanide and atovaquone is a weight ratio of nitazoxanide:atovaquone, wherein the weight ratio of nitazoxanide:atovaquone is from 1:0.1 to about 1:10, or is selected from the group consisting of about 1:0.1, about 1:0.2, about 1:0.5, about 1:0.8, about 1:1, about 1:1.2, about 1:1.5, about 1:2, about 1:5, about 1:10, and any range value between any two ratios.
14. 9. The pharmaceutical composition of claim 8, wherein the pharmaceutical composition is formulated as a tablet, capsule, or suspension.
15. The pharmaceutical composition comprises: (i) about 50 mg to 1200 mg of nitazoxanide per unit dosage form, and about 50 mg to 1200 mg of atovaquone per unit dosage form; (ii) about 60 mg to 500 mg of nitazoxanide per unit dosage form and about 100 mg to 500 mg of atovaquone per unit dosage form; or (iii) about 165 mg of nitazoxanide per unit dosage form, and about 165 mg of atovaquone per unit dosage form.
13. The pharmaceutical composition of claim 12, comprising:
16. 9. The pharmaceutical composition according to claim 8, wherein the pharmaceutical composition is administered to a subject in need thereof 1 to 4 times per day with 1 to 5 units of the formulation each time, or 2 to 4 times per day with 2 to 4 units of the formulation each time.
17. 9. The pharmaceutical composition according to claim 8, wherein the weight content of the pharmaceutically acceptable excipient, carrier or diluent in the pharmaceutical composition is about 0.1 to 90% w / w.
18. 18. The pharmaceutical composition of claim 17, wherein the pharmaceutically acceptable excipient, carrier, or diluent comprises at least one of a diluent, solubilizer, disintegrant, lubricant, binder, glidant.
19. 19. The pharmaceutical composition according to claim 18, wherein the weight content of the solubilizer in the pharmaceutical composition is about 0.1-3% w / w, the weight content of the diluent in the pharmaceutical composition is about 1-40% w / w, the weight content of the disintegrant in the pharmaceutical composition is about 1-20% w / w, the weight content of the binder in the pharmaceutical composition is about 1-20% w / w, the weight content of the lubricant in the pharmaceutical composition is about 0.1-3% w / w, and the weight content of the glidant in the pharmaceutical composition is about 0.1-5% w / w.
20. the solubilizing agent comprises at least one of sodium lauryl sulfate (SLS), sodium dodecyl sulfate (SDS), poloxamer 188 (poloxamer 188, Pluronic® F68), polyoxyethylene sorbitan monooleate (Tween® 80), polyoxyethylene sorbitan monolaurate (Tween® 20), and dimyristoyl phosphatidylcholine (DMPC); the diluent comprises at least one of microcrystalline cellulose, calcium hydrogen phosphate, cellulose, compressible sugar, calcium hydrogen phosphate anhydrous, lactose, lactose monohydrate, mannitol, starch, and tricalcium phosphate; the disintegrant comprises at least one of sodium carboxymethyl starch, croscarmellose sodium, crospovidone, microcrystalline cellulose, modified cornstarch, povidone, and pregelatinized starch; and the binder comprises at least one of:
19. The pharmaceutical composition of claim 18, wherein the agent comprises at least one of povidone, copovidone, hydroxypropyl cellulose, low-substituted hydroxypropyl cellulose, hydroxypropyl methylcellulose, ethyl cellulose, and pregelatinized starch; the lubricant comprises at least one of magnesium stearate, calcium stearate, polyvinyl alcohol, sodium stearyl fumarate, stearic acid, and talc; and the glidant comprises at least one of colloidal silicon dioxide, talc, starch, and starch derivatives.