Active ingredient composition with abiraterone acetate and method for its manufacture and use

DE602020067672T2Active Publication Date: 2026-02-25HUNAN HUIZE BIO PHARMA CO LTD
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Patent Information

Application Number
DE602020067672
Authority / Receiving Office
DE · DE
Patent Type
Patents
Current Assignee / Owner
Priority Date
2019-09-26
Filing Date
2020-05-18
Publication Date
2026-02-25
Estimated Expiration
2040-05-18

AI Technical Summary

Technical Problem

Abiraterone acetate has low solubility and poor permeability, leading to low oral bioavailability and significant variability in absorption due to food intake, necessitating specific administration times and complicating formulation design.

Method used

A pharmaceutical composition comprising abiraterone acetate with specific excipients, including an oil phase, emulsifier, and co-emulsifier, forms a nanoemulsion upon gastrointestinal peristalsis, enhancing absorption and stability, allowing administration under varying dietary conditions.

Benefits of technology

The composition significantly increases oral bioavailability by several to ten times, reduces meal-related variability, and maintains stability at room temperature, facilitating capsule formulation.

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Description

[0001] The present application claims the priority benefit of Chinese patent application under the title of "DRUG COMPOSITION CONTAINING ABIRATERONE ACETATE, AND PREPARATION METHOD THEREFOR AND APPLICATION THEREOF" with the application number of 201910916636.3 filed with CNIPA on September 26, 2019.FIELD OF THE INVENTION

[0002] The present invention relates to the technical field of pharmaceutical preparation, in particular to a pharmaceutical composition containing abiraterone acetate, and an application thereof.BACKGROUND OF THE INVENTION

[0003] Abiraterone acetate is a white to gray white crystalline powder without hygroscopicity, chemically named (3β)-17-(3-pyridinyl)androsta-5, 16-dien-3-ol acetate, and its molecular formula is C 26 H 33 NO 2 . Abiraterone acetate is transformed into an androgen biosynthesis inhibitor abiraterone in vivo, which inhibits 17α-hydroxylase / C17,20-lyase (CYP17). It can be used in combination with prednisone for the treatment of patients with metastatic castration-resistant prostate cancer (CRPC) who ever received with polyene paclitaxel chemotherapy. However, abiraterone acetate is a lipophilic compound, and its octanol-water partition coefficient is 5.12 (LogP) and the pKa of nitrogen in aromatic group is 5.19. It is almost insoluble in water (less than 0.01 mg / ml) and has poor permeability. It is a BCS Class IV drug, and its bioavailability is extremely low when orally administrated.

[0004] The original drug of Abiraterone acetate, Zytiga, is in a tablet form. Each tablet of Zytiga contains 250 mg of abiraterone acetate, and its inactive ingredient comprises: colloidal silica, croscarmellose sodium, lactose monohydrate, magnesium stearate, microcrystalline cellulose, polyvidone and sodium dodecyl sulfate. The oral bioavailability of Zytiga is very low (less than 10%); a single dose can be up to 1000 mg, but only less than 10% of the drug can exert its efficacy.

[0005] In addition, food has a great influence on the absorption of abiraterone acetate. A commercially available formulation requires that it can only be taken at a specific time period before meals. The instruction of Zytiga emphasizes that an amount of systemic exposure of abiraterone increases when abiraterone acetate is given with food. The C max and AUC 0-∞ for abiraterone increase by about 7 times and 5 times respectively when abiraterone acetate is given with a low-fat diet (7% fat, 300 calories), while the C max and AUC 0-∞ is increased by about 17 times and 10 times respectively when abiraterone acetate is given with a high-fat diet (57% fat, 825 calories). Taking into account the normal changes in the content and composition of the diet, it may result in an increased and highly variable exposure amount when abiraterone acetate is taken with the diet. Abiraterone acetate needs to be taken on an empty stomach, and one should not have meal within at least two hours before taking the dose and at least one hour after taking the dose in order to control the plasma concentration of abiraterone. Although abiraterone acetate has a good efficacy in the treatment of advanced prostate cancer through oral administration, its characteristics of low solubility and poor permeability bring some obstacles to the formulation design.

[0006] Yonsa, manufactured by Sun Pharmaceutical Industries Ltd. from India using SoluMatrix particulate technology, is a modified abiraterone acetate tablet, which can promote the dissolution of abiraterone acetate and double the oral bioavailability of the original drug Zytiga. Although the dose of Yonsa is reduced to 500 mg, it only changes the crystal form and the size of the drug and improves the drug dissolution rate, but fails to increase the permeability of abiraterone acetate on the gastrointestinal epithelial cells. Therefore, the oral bioavailability of Yonsa is still very low.

[0007] Patent document CN107278152A relates to a complex of abiraterone acetate, a preparation method thereof and a pharmaceutical composition comprising them. The complex comprises 5 to 40% by weight of abiraterone acetate, 5 to 80% by weight of polyvinyl caprolactam-polyvinyl acetate-polyethylene glycol graft copolymer, 0.1 to 50% by weight of sodium deoxycholate. The complex can reduce the influence of food and cancel the requirement of taking on an empty stomach, and increase the oral bioavailability up to 5 times. However, the preparation process for the complex formulation is complicated.

[0008] Document WO2014 / 009434A1 relates to a self-microemulsifying drug delivery system comprising abiraterone or abiraterone acetate or a pharmaceutically acceptable salt, hydrate or solvate thereof, at least one fatty acid ester and at least one surfactant. However, the said self-microemulsifying drug delivery system does not comprise a co-emulsifier as an essential component.

[0009] Document CN105535979A discloses a self-emulsifying drug delivery system (SEDDS), wherein the carrier material of SEDDS comprise an oil phase comprising Capmul MCMs and medium-chain fatty acids, and surfactants.SUMMARY OF THE INVENTION

[0010] The objective of the present invention is to provide a pharmaceutical composition that can significantly improve the oral absorption of abiraterone acetate.

[0011] It is known to those skilled in the art that, due to the low solubility and the poor permeability of abiraterone acetate, formulating it into a self-emulsifying solution is expected to eliminate the difference between pre-meal and post-meal administration of abiraterone acetate and improve an oral bioavailability of the drug. However, abiraterone acetate has a low solubility in various solvents and emulsifiers. Although the drug may be quickly dissolved at high temperatures, it is easy to precipitate crystals and lose self-emulsifying properties when stored at room temperature. Moreover, the dosage of abiraterone acetate is large, and the self-emulsifying solution that needs to be designed must have a high drug content and be able to be stable at normal temperature. The above-mentioned technical difficulties have become a major bottleneck in the design of the formulation. In addition, whether the self-emulsifying solution can spontaneously form a uniform and stable nanoemulsion with water is another difficulty in the design of the formulation.

[0012] After in-depth research, the inventor found that by preparing a composition of abiraterone acetate and specific excipients allows its oral bioavailability to be increased to ten times compared to the original drug Zytiga.

[0013] The present invention adopts the following technical solutions: a pharmaceutical composition containing abiraterone acetate, comprising (consisting of the following components): an active ingredient: abiraterone acetate; and excipients: at least one oil phase, wherein the oil phase is one or at least two selected from the group consisting of glyceryl monolinoleate, hydrogenated castor oil, glyceryl monooleate, propylene glycol monocaprylate, soybean oil, medium chain triglycerides and ethyl oleate; at least one emulsifier, wherein the emulsifier is one or at least two selected from the group consisting of polyoxyethylene castor oil EL35, sorbitan monooleate, polyethylene glycol-15 hydroxystearate, polyethylene caprolactam-polyvinyl acetate-polyethylene glycol graft copolymer and polyoxyethylene 40 hydrogenated castor oil; and at least one co-emulsifier, wherein the co-emulsifier is a combination of ethanol and propylene glycol, or is diethylene glycol monoethyl ether; and wherein the co-emulsifier has a weight ranging from 20% to 80% of the total mass of the pharmaceutical composition.

[0014] In the pharmaceutical composition containing abiraterone acetate of the present application, the concentration of abiraterone acetate ranges from 20 to 100 mg / mL based on the total volume of the excipients.

[0015] The pharmaceutical composition of the invention is a solution and is easy to form a nanoemulsion with water, and can increase dissolution of the medicament, promote the absorption and improve the bioavailability.

[0016] The excipient (homogeneous transparent solution consists of oil phase, emulsifier and co-emulsifier) of the pharmaceutical composition of the invention serves as a carrier for medicaments that are hydrophobic, difficult to absorb or easy to hydrolyze. Upon oral administration, the excipient spontaneously disperses into the gastrointestinal fluid under gastrointestinal peristalsis to form an O / W nanoemulsion (oil-in-water nanoemulsion). The formed nanoemulsion has a small particle size and an increased penetration for intestinal epithelial cells, and provides a significantly improved bioavailability of the medicament. Compared with microemulsions, the self-emulsifying solution has a higher stability, and can meet the requirements of long-term storage. Besides, it can also be directly packed into soft capsules or hard capsules.

[0017] Abiraterone acetate accounts for 2 to 20%, preferably 5 to 15%, more preferably 5 to 10% of the total mass of the pharmaceutical composition.

[0018] The pharmaceutical composition containing abiraterone acetate according to the present invention has at least one of the following properties. a) After mixing with water, it can spontaneously form a nanoemulsion with a particle size of less than 250 nm having high clarity, uniform particle size and stable properties. b) The contents can exist in the form of a stable solution when stored at room temperature. c) The difference between pre-meal and post-meal administration is significantly reduced compared to the original drug Zytiga. d) The oral bioavailability is increased by several times to ten times compared to the original drug Zytiga.

[0019] The oil phase accounts for 20 to 50%, preferably 20 to 45%, and more preferably 25 to 45% of the total mass of the pharmaceutical composition containing abiraterone acetate.

[0020] The oil phase is one or at least two selected from the group consisting of hydrogenated castor oil, glyceryl monooleate, propylene glycol monocaprylate, soybean oil, medium chain triglycerides, ethyl oleate, and glyceryl monolinoleate. Preferably, the oil phase is one or at least two selected from the group consisting of glyceryl monolinoleate, medium chain triglycerides, hydrogenated castor oil, and glyceryl monooleate.

[0021] The pharmaceutical composition containing abiraterone acetate according to the present invention comprises an emulsifier which is one or at least two selected from the group consisting of polyoxyethylene castor oil EL35, polyoxyethylene 40 hydrogenated castor oil, sorbitan monooleate (Span 80), polyethylene glycol-15 hydroxystearate (Solutol), and polyethylene caprolactam-polyvinyl acetate-polyethylene glycol graft copolymer (Soluplus).

[0022] The emulsifier accounts for 20 to 70%, preferably 20 to 50%, and more preferably 20 to 35% of the total mass of the pharmaceutical composition.

[0023] Preferably, the emulsifier is one or at least two selected from the group consisting of polyoxyethylene castor oil EL35, polyoxyethylene 40 hydrogenated castor oil, sorbitan monooleate (Span 80), and polyethylene caprolactam-polyvinyl acetate-polyethylene glycol graft copolymer (Soluplus). More preferably, the emulsifier is polyoxyethylene castor oil EL35 or polyoxyethylene 40 hydrogenated castor oil.

[0024] The pharmaceutical composition containing abiraterone acetate according to the present invention comprises a co-emulsifier which is a combination of ethanol and propylene glycol, or is diethylene glycol monoethyl ether.

[0025] The co-emulsifier accounts for 20 to 80%, preferably 20 to 60%, more preferably 20 to 50%, and still more preferably 20 to 45% of the total mass of the pharmaceutical composition containing abiraterone acetate.

[0026] More preferably, the co-emulsifier is a combination of propylene glycol and ethanol, the content of which is more preferably 20 to 30%; or diethylene glycol monoethyl ether, the content of which is more preferably 25 to 45%.

[0027] In the composition of the present invention, the total content of all clearly listed components is less than or equal to 100 wt. %.

[0028] Without being limited to any theory, the inventor of the present invention unexpectedly discovered that the specific co-emulsifier of the invention, together with the oil phase and the emulsifier, forms a uniform and transparent solution, which serves as a carrier for medicaments that are hydrophobic, difficult to absorb or easy to hydrolyze. Upon oral administration, the pharmaceutical composition containing the co-emulsifier of the invention disperses into gastrointestinal fluid under gastrointestinal peristalsis to spontaneously form an O / W nanoemulsion (oil-in-water nanoemulsion). The formed nanoemulsion has a small particle size and an increased penetration for intestinal epithelial cells, and provides a significantly promoted absorption and improved bioavailability. The pharmaceutical composition of the present invention can also significantly reduce the influence of food on the absorption of abiraterone acetate, reduce the difference between pre-meal and post-meal administration, so that the drug can be taken both under empty-stomach and full-stomach conditions, and the restriction for the time of taking medicament is reduced.

[0029] In a preferred embodiment of the present invention, the pharmaceutical composition containing abiraterone acetate preferably comprises the following components (consisting of the following components) with the following mass percent by weight: 2 to 20% of abiraterone acetate; 20 to 50% of an oil phase, wherein the oil phase is one or two of hydrogenated castor oil and glyceryl monooleate; 20 to 60% of an emulsifier, wherein the emulsifier is polyoxyethylene castor oil EL35 or polyoxyethylene 40 hydrogenated castor oil; and 20 to 30% of a co-emulsifier, wherein the co-emulsifier is a mixture of ethanol and propylene glycol; or, 2 to 20% of abiraterone acetate; 20 to 50% of an oil phase, wherein the oil phase is one or two of hydrogenated castor oil and glyceryl monooleate; 20 to 60% of an emulsifier, wherein the emulsifier is one or two of polyoxyethylene castor oil EL35 and Span 80; and 20 to 30% of a co-emulsifier, wherein the co-emulsifier is a mixture of ethanol and propylene glycol; or, 2 to 20% of abiraterone acetate; 20 to 50% of an oil phase, wherein the oil phase is one or two of glyceryl monolinoleate and medium chain triglyceride; 20 to 70% of an emulsifier, wherein the emulsifier is polyoxyethylene castor oil EL35 or polyoxyethylene 40 hydrogenated castor oil; and 20 to 80% of a co-emulsifier, wherein the co-emulsifier is diethylene glycol monoethyl ether.

[0030] In the pharmaceutical composition containing abiraterone acetate according to the present invention, preferably, the excipient can further comprise one or two of an antioxidant and a preservative, wherein the amount of antioxidant or preservative is ranging from 0.005% to 0.3% (preferably 0.005% to 0.1%) of the total mass of the pharmaceutical composition; preferably, the antioxidant is selected from one or two of tert-butyl p-hydroxyanisole (BHA) and butylated hydroxytoluene (BHT).

[0031] In a preferred embodiment of the present invention, the pharmaceutical composition containing abiraterone acetate preferably comprises the following components (consisting of the following components) with the following mass percent by weight: 5 to 20% of abiraterone acetate; 20 to 50% of an oil phase, wherein the oil phase is one or two of hydrogenated castor oil and glyceryl monooleate; 20 to 60% of an emulsifier, wherein the emulsifier is one or two of polyoxyethylene castor oil EL35 or polyoxyethylene 40 hydrogenated castor oil; 20 to 30% of a co-emulsifier, wherein the co-emulsifier is ethanol and propylene glycol; and 0.005 to 0.1% of BHA and / or BHT; or, 5 to 20% of abiraterone acetate; 25 to 40% of an oil phase, wherein the oil phase is one or two of glyceryl monolinoleate and medium chain triglyceride; 25 to 70% of an emulsifier, wherein the emulsifier is polyoxyethylene castor oil EL35 or polyoxyethylene 40 hydrogenated castor oil; 20 to 80% of a co-emulsifier, wherein the co-emulsifier is diethylene glycol monoethyl ether; and 0.005 to 0.1% of BHA and / or BHT; or, 2 to 20% of abiraterone acetate; 20 to 50% of an oil phase, wherein the oil phase is one or two of hydrogenated castor oil and glyceryl monooleate; 20 to 60% of an emulsifier, wherein the emulsifier is one or two of polyoxyethylene castor oil EL35 and Span 80; 20 to 30% of a co-emulsifier, wherein the co-emulsifier is a mixture of ethanol and propylene glycol; and 0.005-0.1 % of BHA and / or BHT.

[0032] In a preferred embodiment of the present invention, the pharmaceutical composition containing abiraterone acetate preferably comprises the following components (consisting of the following components) by mass or by volume: abiraterone acetate1 to 2 parts by masshydrogenated castor oil3 to 5 parts by volumeglyceryl monooleate3 to 5 parts by volumepolyoxyethylene castor oil EL356 to 10 parts by volumepropylene glycol1 to 3 parts by volumeethanol2 to 5 parts by volumeor,abiraterone acetate3 to 5 parts by massSpan 805 to 10 parts by volumepolyoxyethylene castor oil EL355 to 10 parts by volumeglyceryl monooleate5 to 8 parts by volumehydrogenated castor oil8 to 12 parts by volumepropylene glycol3 to 5 parts by volumeethanol5 to 10 parts by volumeBHA0.005 to 0.01 parts by massBHT0.01 to 0.02 parts by mass or, abiraterone acetate1 to 2 parts by massglyceryl monolinoleate3.5 to 5 parts by volumemedium chain triglyceride2 to 3.5 parts by volumepolyoxyethylene 40 hydrogenated castor oil2 to 5 parts by volumediethylene glycol monoethyl ether3 to 5.5 parts by volumeBHA0.002 to 0.005 parts by massBHT0.01 to 0.018 parts by mass or, abiraterone acetate1.1 to 1.8 parts by massglyceryl monolinoleate3 to 5 parts by volumepolyoxyethylene 40 hydrogenated castor oil3 to 8 parts by volumediethylene glycol monoethyl ether6 to 12 parts by volumeBHA0.002 to 0.0045 parts by massBHT0.01 to 0.015 parts by mass.

[0033] As an explanation and description, in the above-mentioned embodiments, 1 part by weight: 1 part by volume = 1 g : 1 mL.

[0034] In the pharmaceutical composition containing abiraterone acetate according to the present invention, preferably, the active ingredients also comprise prednisone.

[0035] The pharmaceutical composition of the invention has an excellent efficacy as a medicament, especially an excellent inhibitory activity on 17α-hydroxylase / C17,20-lyase (CYP17). Since the pharmaceutical composition of the invention can significantly reduce the difference between pre-meal and post-meal administration and improve the oral bioavailability, it can be used in conjunction with prednisone in the treatment of patients with metastatic castration-resistant prostate cancer (CRPC) who ever received with polyene paclitaxel chemotherapy, and can achieve an outstanding efficacy.

[0036] The pharmaceutical composition containing abiraterone acetate provided by the present invention can be used alone for treating diseases, for example, diseases including but not limited to prostate cancer. In a specific administrating process, the pharmaceutical composition provided by the present invention can be administered in, for example but not limited to, the following manners.

[0037] An adult is administrated at intervals of one day, for example, once a day. Preferably, the effective dose of abiraterone acetate per administration is 25 mg to 200 mg, more preferably 50 mg to 150 mg, and further more preferably 75 mg to 100 mg.

[0038] Also disclosed herein is the use of the pharmaceutical composition in the manufacture of a pharmaceutical preparation, preferably in the manufacture of a pharmaceutical preparation for the treatment of prostate cancer. More preferably, the prostate cancer is selected from one or two of metastatic castration-resistant prostate cancer and high-risk metastatic castration-sensitive prostate cancer.

[0039] The present invention further provides a pharmaceutical preparation containing the pharmaceutical composition described in any one of the above. Preferably, the pharmaceutical preparation is a capsule.

[0040] The capsule of the invention comprises any one of the above-mentioned pharmaceutical composition containing abiraterone acetate and a capsule shell. The capsule shells are well-known hard capsule and / or soft capsule materials, such as that used in hard gelatin capsules or soft gelatin capsules, which is commercially available or produced and is not specially defined herein.

[0041] Each capsule of the capsule of the present invention preferably comprises no more than 100 mg of abiraterone acetate.

[0042] The present invention defines that the abiraterone acetate capsules have a single oral dose of 50 to 200 mg of abiraterone acetate.

[0043] The present invention further provides a pharmaceutical combination (manner), comprising: one of the pharmaceutical compositions according to any one of the embodiments described above and the abiraterone acetate capsules according to any one of the embodiments described above, and prednisone.

[0044] The said pharmaceutical combination (manner) of the invention described herein have an administration manner of, including but are not being limited to, using prednisone as one of the active ingredients, sequentially administrating the pharmaceutical compositions or capsules and prednisone, and the like. It can be administrated through common operations in the art.

[0045] Also disclosed herein is the use of the abiraterone acetate capsule according to any one of the embodiments described above, and / or the pharmaceutical combination according to any one of the embodiments in the manufacture of a medicament for the treatment of prostate cancer.

[0046] Preferably, the prostate cancer is selected from one or two of metastatic castration-resistant prostate cancer and high-risk metastatic castration-sensitive prostate cancer.

[0047] The present disclosure also provides a method of preparing the pharmaceutical composition containing abiraterone acetate according to any one of the embodiments described above, comprising mixing the oil phase, the emulsifier and the active ingredient, and adding the co-emulsifier (and may further adding antioxidants and / or preservatives).

[0048] It will be understood by one skilled in the art that the preparation method can include the steps of mechanical stirring, emulsificating, and sonicating. A preferred method is provided as follows: stirring the oil phase and the emulsifier at room temperature or under heating condition to form a homogeneous mixture, then adding abiraterone acetate to the mixture and stirring the mixture in dark conditions, and finally adding co-emulsifier and optionally antioxidants and / or preservatives and mixing the mixture well to obtain the pharmaceutical composition.

[0049] More specifically, the method comprises the following steps: stirring the oil phase and the emulsifier at room temperature or under heating condition to form a homogeneous mixture, then adding abiraterone acetate to the mixture, sonicating the mixture for 10 to 20 minutes under dark conditions, mechanically stirring the mixture for 10 to 30 minutes at a speed of 100 to 400 rpm, and finally adding the co-emulsifier and mixing the mixture well to obtain the pharmaceutical composition.

[0050] The method for manufacting the pharmaceutical preparations of the invention may also be operated by one skilled in the art according to conventional methods in the art. A preferred embodiment for preparing capsules is given herein as follows: preparing the pharmaceutical composition containing abiraterone acetate according to the aforementioned method; sealing the pharmaceutical composition in a soft capsule or a hard capsule. Preferably, each capsule contains 0.5 to 1 ml of the pharmaceutical composition.

[0051] In the pharmaceutical composition containing abiraterone acetate provided by the present invention, the concentration of abiraterone acetate can be controlled in the range of 50 to 100 mg / mL and a single oral dose is 75 to 100 mg. The pharmaceutical composition of the invention can spontaneously form an O / W nanoemulsion having a particle size of less than 250 nm with high clarity, uniform particle size and stable properties when mixed with water, biologically related media such as SGF, SGF, FessiF and FassiF media, or gastrointestinal fluid; can exist in the form of a stable solution when stored at room temperature; can possess a stable content even under the conditions of influencing factors (40° C±2° C, or a relative humidity of 90%).

[0052] The difference between pre-meal and post-meal administration of the pharmaceutical composition of the invention is significantly reduced and the oral bioavailability is increased by several to ten times compared to the original drug Zytiga. The pharmaceutical composition can be further manufactured into a capsule, which is stable and the content has a uniform texture.

[0053] The present invention further relates to the pharmaceutical composition for use in a method of treatment of prostate cancer, comprising administering the aforementioned pharmaceutical composition containing abiraterone acetate or abiraterone acetate capsules. Preferably, a single dose is 25 mg to 200 mg of abiraterone acetate, more preferably 50 mg to 200 mg, still more preferably 50 mg to 150 mg, further preferably 75 mg to 100 mg. Preferably, the pharmaceutical composition or capsule can be administered before or after meal. Preferably, the prostate cancer is selected from one or two of metastatic castration-resistant prostate cancer and high-risk metastatic castration-sensitive prostate cancer.

[0054] It should be noted that the scope of the invention is defined by the claims. Any references in the description to methods of treatment refer to the compounds, pharmaceutical compositions and medicaments of the present invention for use in a method for treatment of the human (or animal) body by therapy (or for diagnosis).BRIEF DESCRIPTION OF THE DRAWINGS

[0055] In order to explain the embodiments of the present invention or the prior art more clearly, the drawings that need to be used in the description of the embodiments or the prior art will be introduced briefly in the following. It is obvious that the drawings in the following description are merely part of the embodiments of the present invention. FIG 1 is a particle size distribution diagram after the content of the abiraterone acetate capsule in Example 1 forming microemulsions in water. FIG 2 is a particle size distribution diagram after the content of the abiraterone acetate capsule in Example 2 forming microemulsions in water. FIG 3 is a particle size distribution diagram after the content of the abiraterone acetate capsule in Example 8 forming microemulsions in water. FIG 4 is a drug-time curve chart of the fasting test for tablet and capsule in Test Example 4. FIG 5 is a drug-time curve chart of the fasting and postprandial test for capsule in Test Example 4. DETAILED DESCRIPTION OF THE INVENTION

[0056] The technical solutions in the examples of the present invention will be clearly and completely described below in conjunction with the accompanied drawings of the examples of the present invention. Obviously, the described examples are merely a part of the examples rather than all the examples of the present invention.Example 1

[0057] This example provided a pharmaceutical composition containing abiraterone acetate comprising the following components: abiraterone acetate1.65 ghydrogenated castor oil4.0 mLglyceryl monooleate4.0 mLpolyoxyethylene castor oil EL358.0 mLpropylene glycol2.0 mLethanol4.0 mL

[0058] This example further provided an abiraterone acetate capsule, which used the above-mentioned pharmaceutical composition as the content, and the content was filled in a capsule shell.

[0059] The preparation method was provided as follows.

[0060] Hydrogenated castor oil, glyceryl monooleate, and polyoxyethylene castor oil EL35 were measured out, and then abiraterone acetate was added to form a mixture. The mixture was sonicated for 10 minutes under dark conditions and was stirred mechanically at 300 rpm for 20 minutes to allow it completely dissolved. Thereafter, propylene glycol and ethanol were added until it became a transparent and homogeneous self-emulsifying solution, which was filled in soft capsules or sealed in hard capsules under nitrogen atmosphere and stored.Example 2

[0061] This example provided a pharmaceutical composition containing abiraterone acetate comprising the following components: abiraterone acetate4.00 gSpan 809.0 mLpolyoxyethylene castor oil EL357.0 mLglyceryl monooleate7.0 mLhydrogenated castor oil9.0 mLpropylene glycol4.0 mLethanol8.0 mLBHA0.009 gBHT0.014 g

[0062] This example further provided an abiraterone acetate capsule, which used the above-mentioned pharmaceutical composition as the content, and the content was filled in a capsule shell.

[0063] The preparation method was provided as follows.

[0064] Span 80, hydrogenated castor oil, glyceryl monooleate, and polyoxyethylene castor oil EL35 were measured out, and then abiraterone acetate was added to form a mixture. The mixture was stirred mechanically at 300 rpm for 25 minutes to allow it completely dissolved. Thereafter, BHA, BHT, propylene glycol and ethanol were added until it became a transparent and homogeneous self-emulsifying solution, which was filled in soft capsules or sealed in hard capsules under nitrogen atmosphere and stored.Example 3

[0065] This example provided a pharmaceutical composition containing abiraterone acetate comprising the following components: abiraterone acetate1.17 gglyceryl monolinoleate4.4 mLmedium chain triglyceride2.8 mLpolyoxyethylene 40 hydrogenated castor oil3.6 mLdiethylene glycol monoethyl ether4.8 mLBHA0.004 gBHT0.012 g

[0066] This example further provided an abiraterone acetate capsule, which used the above-mentioned pharmaceutical composition as the content, and the content was filled in a capsule shell.

[0067] The preparation method was provided as follows.

[0068] Medium chain triglyceride, glyceryl monolinoleate, and polyoxyethylene 40 hydrogenated castor oil were measured out, and then abiraterone acetate was added to form a mixture. The mixture was stirred mechanically at 300 rpm for 30 minutes to allow it completely dissolved. Thereafter, diethylene glycol monoethyl ether, BHT, and BHA were added until it became a transparent and homogeneous self-emulsifying solution, which was filled in soft capsules or sealed in hard capsules under nitrogen atmosphere and stored.Example 4

[0069] This example provided a pharmaceutical composition containing abiraterone acetate comprising the following components: abiraterone acetate1.47 gglyceryl monolinoleate4.4 mLpolyoxyethylene 40 hydrogenated castor oil3.6 mLdiethylene glycol monoethyl ether7.6 mLBHA0.004 gBHT0.012 g

[0070] This example further provided an abiraterone acetate capsule, which used the above-mentioned pharmaceutical composition as the content, and the content was filled in a capsule shell.

[0071] The preparation method was provided as follows.

[0072] Glyceryl monolinoleate, and polyoxyethylene 40 hydrogenated castor oil were measured out, and then abiraterone acetate was added to form a mixture. The mixture was stirred mechanically at 300 rpm for 30 minutes to allow it completely dissolved. Thereafter, diethylene glycol monoethyl ether, BHT, and BHA were added until it became a transparent and homogeneous self-emulsifying solution, which was filled in soft capsules or sealed in hard capsules under nitrogen atmosphere and stored.Example 5

[0073] This example provided a pharmaceutical composition containing abiraterone acetate comprising the following components: abiraterone acetate1.32 gglyceryl monolinoleate5.6 mLmedium chain triglyceride2.8 mLpolyoxyethylene 40 hydrogenated castor oil4.8 mLpropylene glycol2.8 mLethanol1.6 mLBHA0.004 gBHT0.009 g

[0074] This example further provided an abiraterone acetate capsule, which used the above-mentioned pharmaceutical composition as the content, and the content was filled in a capsule shell.

[0075] The preparation method was provided as follows.

[0076] Medium chain triglyceride, glyceryl monolinoleate, and polyoxyethylene 40 hydrogenated castor oil were measured out, and then abiraterone acetate was added to form a mixture. The mixture was stirred mechanically at 300 rpm for 30 minutes to allow it completely dissolved. Thereafter, ethanol, propylene glycol, BHT, and BHA were added until it became a transparent and homogeneous self-emulsifying solution, which was filled in soft capsules or sealed in hard capsules under nitrogen atmosphere and stored.Example 6 (not according to the invention)

[0077] This example provided a pharmaceutical composition containing abiraterone acetate comprising the following components: abiraterone acetate2.2 gTween 805.0 mLpolyoxyethylene 40 hydrogenated castor oil8.0 mLglyceryl monooleate9.0 mLcorn oil10.0 mLpropylene glycol4.0 mLethanol8.0 mL

[0078] This example further provided an abiraterone acetate capsule, which used the above-mentioned pharmaceutical composition as the content, and the content was filled in a capsule shell.

[0079] The preparation method was also provided as follows. Tween 80, corn oil, glyceryl monooleate, and polyoxyethylene 40 hydrogenated castor oil were measured out, and then abiraterone acetate was weighed and added to allow it fully mixed. Thereafter, propylene glycol and ethanol were added, and a transparent and homogeneous solution was obtained under heating under water bath. After the solution was cooled down to room temperature, the homogeneous phase was destroyed and the drug was crystallized out.Example 7 (not according to the invention)

[0080] This example provided a pharmaceutical composition containing abiraterone acetate comprising the following components: abiraterone acetate4.40 gTween 803.0 mLpolyoxyethylene castor oil EL355.0 mLpolyoxyethylene 40 hydrogenated castor oil8.0 mLglyceryl monooleate8.0 mLhydrogenated castor oil8.0 mLpropylene glycol2.0 mLethanol10.0 mL

[0081] This example further provided an abiraterone acetate capsule, which used the above-mentioned pharmaceutical composition as the content, and the content was filled in a capsule shell.

[0082] The preparation method was also provided as follows. Tween 80, polyoxyethylene 40 hydrogenated castor oil, hydrogenated castor oil, glyceryl monooleate, and polyoxyethylene castor oil EL35 were measured out, and then abiraterone acetate was added to allow it completely dissolved. Thereafter, propylene glycol and ethanol were added until it became a transparent and homogeneous self-emulsifying solution, which was filled in soft capsules or sealed in hard capsules under nitrogen atmosphere and stored.Example 8

[0083] This example provided a pharmaceutical composition containing abiraterone acetate comprising the following components: abiraterone acetate4.40 gSpan 808.4 mLSolutol2.6 mLpolyoxyethylene castor oil EL355.0 mLglyceryl monooleate8.0 mLhydrogenated castor oil8.0 mLpropylene glycol2.0 mLethanol10.0 mL

[0084] This example further provided an abiraterone acetate capsule, which used the above-mentioned pharmaceutical composition as the content, and the content was filled in a capsule shell.

[0085] The preparation method was also provided. Span 80, Solutol, hydrogenated castor oil, glyceryl monooleate, and polyoxyethylene castor oil EL35 were measured out, and then abiraterone acetate was added to allow it completely dissolved. Thereafter, propylene glycol and ethanol were added until it became a transparent and homogeneous self-emulsifying solution, which was filled in soft capsules or sealed in hard capsules under nitrogen atmosphere and stored.Example 9

[0086] This example provided a pharmaceutical composition containing abiraterone acetate comprising the following components: abiraterone acetate4.40 gSpan 808.8 mLpolyoxyethylene castor oil EL354.4 mLglyceryl monooleate8.0 mLhydrogenated castor oil9.6 mLpropylene glycol4.4 mLethanol8.8 mL

[0087] This example further provided an abiraterone acetate capsule, which used the above-mentioned pharmaceutical composition as the content, and the content was filled in a capsule shell.

[0088] The preparation method was also provided. Span 80, hydrogenated castor oil, glyceryl monooleate, and polyoxyethylene castor oil EL35 were measured out, and then abiraterone acetate was added to allow it completely dissolved. Thereafter, propylene glycol and ethanol were added until it became a transparent and homogeneous self-emulsifying solution, which was filled in soft capsules or sealed in hard capsules under nitrogen atmosphere and stored.Example 10 (not according to the invention)

[0089] Same with Example 1, with the exceptions that 2.0 mL propylene glycol and 4.0 mL ethanol were replaced with 1.0 mL propylene glycol and 2.0 mL ethanol, respectively.Example 11 (not according to the invention)

[0090] Same with Example 3, with the exceptions that 4.8 mL diethylene glycol monoethyl ether was replaced with 1.6 mL diethylene glycol monoethyl ether.Example 12

[0091] Same with Example 3, with the exceptions that 4.8 mL diethylene glycol monoethyl ether was replaced with 17.6 mL diethylene glycol monoethyl ether.Example 13

[0092] Same with Example 3, with the exceptions that 4.8 mL diethylene glycol monoethyl ether was replaced with 36.8 mL diethylene glycol monoethyl ether.Test example 1

[0093] This Test example provided the dissolution test of abiraterone acetate capsules provided in Example 1-4 and original drug Zytiga tablet.

[0094] Test method: in accordance with the dissolution test method for abiraterone acetate from the "United States Pharmacopoeia (USP)", the dissolution tests of abiraterone acetate capsules (prepared in Examples 1, 2, 3) and the original drug Zytiga tablet were carried out in 900 mL release medium 1 under 50 rpm at 37°C, respectively.

[0095] Among them, a phosphate buffer solution with a pH of 4.5 was prepared by the following method: adding 56.5 mM sodium dihydrogen phosphate to water, and adjusting the pH was to 4.5 with sodium hydroxide or phosphoric acid.

[0096] The specific method was as follows: Dissolution conditionsMedium 1: 900ml phosphate buffer solution containing 0.25% sodium lauryl sulfate with pH 4.5 (USP condition)Medium 2: 900 ml waterRotation speed: 50 r / minTime: 45 minTest methodsUV-visible spectrophotometerTest preparationsCommercial preparation: Trade name (Zytiga) Specification: 250 mg tabletPreparation of the present invention: abiraterone acetate capsules of Examples 1, 2, 3 and 4Test resultsDissolution test results: see Tables 1 and Table 2 Table 1. Dissolution of abiraterone acetate capsule and Zytiga tablet in medium 1 (%) Sampling point / minZytigaExample 1Example 2Example 3Example 452273807475104293979190156496999796207198999997308999979999459198999999 Table 2. Dissolution of abiraterone acetate capsule and Zytiga tablet in medium 2 (%) Sampling point / minZytigaExample 1Example 2Example 3Example 450867270751009584848215199929097201989694963029997999745297999999

[0097] The comparison results of Tables 1 and 2 showed that the abiraterone acetate capsules of the present invention (Examples 1, 2, 3, and 4) were substantially dissolved completely in medium 1 within 15 minutes, but the commercial abiraterone acetate tablet Zytiga was unable to be completely dissolved until 45 minute. The abiraterone acetate capsules of the present invention (Examples 1, 2, 3, and 4) were substantially dissolved completely in medium 2, but the commercial abiraterone acetate tablet Zytiga had an extremely low dissolution.

[0098] It can be seen from the experimental results described above that the abiraterone acetate capsule of the present invention is capable of effectively improving the dissolution of abiraterone acetate under both USP and non-UPS conditions, which facilitates to increase the oral bioavailability of abiraterone acetate and reduce individual differences.Test example 2

[0099] This Test example provided the stability test of the abiraterone acetate capsule provided by Examples 1-9. (1) Long-term test: the abiraterone acetate capsule was charged into a polyethylene plastic bottle, and the sample was placed under a relative humidity of 60% ± 10% at a temperature of 25°C±2°C to observe the physical stability of the pharmaceutical composition inside the capsule. The test results were shown in Table 3. Table 3. Physical stability of the pharmaceutical compositionStability test1 month2 months3 months6 monthsExample 1----Example 2----Example 3----Example 4----Example 5----Example 6+++++++Example 7-++++++Example 8----Example 9----Example 10+++++++++Example 11+++++++++Example 12----Example 13-----: Clear solution, no drug precipitation +: Clear solution, trace amount of drug precipitation ++: Clear solution, small amount of drug precipitation +++: Clear solution, substantial amount of drug precipitation It can be seen from Table 3 that the pharmaceutical composition formed by the specific emulsifier, oil phase, co-emulsifier and abiraterone acetate of the present invention has good physical stability. Particularly, the combination of 20% to 80% (percent by mass relative to the total mass of the composition) of specific co-emulsifiers and specific emulsifiers (polyoxyethylene castor oil EL35, polyoxyethylene 40 hydrogenated castor oil, Span 80, polyethylene glycol-15 hydroxystearate) achieves a significantly better physical stability. In addition, taking the factors such as drug safety, chemical stability, preparation production and so on into consideration, the percent of the co-emulsifier is preferably 60% or less by mass, particularly 20% to 60%. (2) Accelerated test: the abiraterone acetate capsule was charged into a polyethylene plastic bottle, and then the sample was placed under a relative humidity of 60% ± 10% at a temperature of 40°C±2°C to test the content and related substances of the pharmaceutical composition. The results were shown in Table 4. The abiraterone acetate capsules prepared in Examples 1, 2, 3, and 4 possess stable content. Table 4. Accelerated stability of the pharmaceutical composition 0 month1 month3 monthsExample 1TraitsLight yellow transparent liquidLight yellow transparent liquidLight yellow transparent liquidContent99.9%99.8%99.2%Total impurities0.05%0.21%0.78%DissolutionpassedpassedpassedExample 2TraitsLight yellow transparent liquidLight yellow transparent liquidLight yellow transparent liquidContent99.9%99.8%99.7%Related substances0.05%0.15%0.26% DissolutionpassedpassedpassedExample 3TraitsLight yellow transparent liquidLight yellow transparent liquidLight yellow transparent liquidContent99.9%99.9%99.3%Related substances0.05%0.11%0.69%DissolutionpassedpassedpassedExample 4TraitsLight yellow transparent liquidLight yellow transparent liquidLight yellow transparent liquidContent99.9%99.9%99.4%Related substances0.05%0.11%0.57%Dissolutionpassedpassedpassed Test example 3

[0100] This Test example provided the self-emulsification ability and particle size test of the pharmaceutical compositions provided by Examples 1 to 9.

[0101] The pharmaceutical compositions prepared in Examples 1-9 were added to purified water, and the appearance and traits were observed after slight shaking. The particle size of the formed emulsion was measured with a nanoparticle size meter. Results is shown in Tables 5-1. Table 5-1. Traits and particle size after emulsification of the pharmaceutical compositionTraitsNanoemulsion particle sizeExample 1Clear and transparent nanoemulsionabout 100 nmExample 2Clear and transparent slightly blue opalescent nanoemulsionabout 110 nmExample 3Clear and transparent slightly blue opalescent nanoemulsionabout 70 nmExample 4Clear and transparent slightly blue opalescent nanoemulsionabout 90 nmExample 5Clear and transparent slightly blue opalescent nanoemulsionabout 90 nmExample 6Unable to form a homogeneous system, oil droplets always existNot testedExample 7Opalescent nanoemulsionNot testedExample 8Clear and transparent light blue opalescent nanoemulsionabout 270 nmExample 9Clear and transparent light blue opalescent nanoemulsionabout 140 nm

[0102] This Test example also provided the stability test of the obtained nanoemulsion after emulsifying the pharmaceutical compositions of Examples 1 to 9. The test method was as follows.

[0103] Long-term test: the samples were placed under a relative humidity of 60%±10% at a temperature of 25°C±2°C and the stability of the nanoemulsion after emulsification of the pharmaceutical composition was observed. The results were shown in Table 5-2. Table 5-2. Nanoemulsion traits after emulsification of the pharmaceutical composition0 h2 weeks4 weeksExample 1Clear and transparent nanoemulsion--Example 2Clear and transparent slightly blue opalescent nanoemulsion--Example 3Clear and transparent slightly blue opalescent nanoemulsion--Example 4Clear and transparent slightly blue opalescent nanoemulsion--Example 8Clear and transparent light blue opalescent nanoemulsion--Example 9Clear and transparent light blue opalescent nanoemulsion---: Represents no difference

[0104] See the attached drawings. FIG 1 is the particle size distribution diagram of the microemulsion formed by the content of abiraterone acetate capsule in Example 1 in water, FIG 2 is the particle size distribution diagram of the microemulsion formed by the content of abiraterone acetate capsule in Example 2 in water, and FIG 3 is the particle size distribution diagram of the microemulsion formed by the content of abiraterone acetate capsule in Example 8 in water.Test example 4

[0105] This Test example provided the pharmacokinetic test of Example 1 and the original drug Zytiga of abiraterone acetate.

[0106] Test method and subject: 6 healthy beagle dogs were randomly divided into 3 groups, 2 in each group, and undergone 3 cycles of tests with a washout period of 3 days between the cycles.

[0107] The tests were divided into fasting test and postprandial test.

[0108] Fasting test: fasting the subject for 10 h before the test, administrating the drug on an empty stomach, and feeding 4 hours after the administration.

[0109] Postprandial test: fasting the subject for 10 h before the test, and administering after feeding a high-fat meal (feeding and administration were completed within 30 minutes).

[0110] The tested tablet was the original drug Zytiga of abiraterone acetate, and a single tablet contained 250 mg of abiraterone acetate.

[0111] The tested capsule was the abiraterone acetate capsule provided by Example 1, and a single capsule contained 50 mg of abiraterone acetate.

[0112] Sampling design: collecting 2 mL blood sample at 15 minutes, 30 minutes, 1 h, 1.5 h, 2.0 h, 2.5 h, 3 h, 4 h, 6 h, 8 h, 10 h, 12 h, and 24 h after administration, and centrifuging the sample to separate plasma. Table 6. Test groupingTest groupFirst cycleSecond cycleThird cycle1fasting, 2 tablets (T1)postprandial, 1 capsule (T3)fasting, 1 capsule (T2)2fasting, 1 capsule (T2)fasting, 2 tablets (T1)postprandial, 1 capsule (T3)3postprandial, 1 capsule (T3)fasting, 1 capsule (T2)fasting, 2 tablets (T1)

[0113] In the table, T1 represents a group with fasting test-the original drug Zytiga (labeled as fasting tablet group in FIG 4), T2 represents a group with fasting test-abiraterone acetate capsule (labeled as fasting capsule group in FIG 4 and FIG 5), and T3 represents a group with postprandial test-abiraterone acetate capsule (labeled as a postprandial capsule group in FIG 5). Table 7. Fasting test: pharmacokinetic parameters for 500 mg of the original drug Zytiga vs. 50 mg of the abiraterone acetate capsuleItemsTablet (T1)Capsule (T2)T 1 / 2 T max C max AUC last T 1 / 2 T max C max AUC last (h)(h)(ng / mL)(h*ng / mL)(h)(h)(ng / mL)(h*ng / mL)Average value2.110.96316.65563.098.340.83275.94553.29Standard deviation0.480.51316.04666.002.800.26107.63244.76Variable coefficient %22.8853.2599.81118.2733.5730.9839.0044.24

[0114] In the table, T 1 / 2 represents the drug half-life, T max represents the peak time, C max represents the maximum plasma concentration (peak concentration), and AUC last represents the AUC (area under the drug-time curve) during the duration from the start of administration to the last point.

[0115] The results were shown in FIG 4, which was the drug-time curve on 50 mg of abiraterone acetate capsule (T2) of Example 1 and 500 mg of original drug Zytiga (T1) for beagle dogs on an empty stomach in the fasting test.

[0116] It can be seen from Table 7 that the oral bioavailability of one abiraterone acetate capsule of Example 1 (containing 50 mg of abiraterone acetate) for beagle dogs on an empty stomach reached 98% compared to two tablets of the original drug Zytiga (250 mg / tablet). It demonstrated that the oral bioavailability of the abiraterone acetate pharmaceutical composition of the present invention was 10 times of the original drug Zytiga (250 mg / tablet), and the variable coefficient of peak time, peak concentration and absorption level among individuals were significantly lower than that of the original drug Zytiga. Table 8. Postprandial test: Pharmacokinetic parameters of 50 mg of the abiraterone acetate capsule pre-meal and post-mealItemsCapsule (T2)Capsule (T3)T 1 / 2 T max C max AUC last T 1 / 2 T max C max AUC last (h)(h)(ng / mL)(h*ng / mL)(h)(h)(ng / mL)(h*ng / mL)Average value8.340.83275.94553.296.670.83376.78669.20Standard deviation2.800.26107.63244.762.870.41184.98259.75Variable coefficient %33.5730.9839.0044.2443.1148.9949.1038.81

[0117] In the table, T 1 / 2 represents the drug half-life, T max represents the peak time, C max represents the maximum plasma concentration (peak concentration), and AUC last represents the AUC (area under the drug-time curve) during the duration from the start of administration to the last point.

[0118] The results were shown in FIG 5, which was the drug-time curve on 50 mg of abiraterone acetate capsule of Example 1 taken by beagle dogs pre-meal (T2) and post-meal (T3) in the postprandial test.

[0119] It can be seen from Table 8 that after beagle dogs taking abiraterone acetate capsules (containing 50 mg of abiraterone acetate) on an empty stomach and after a high-fat meal, there was no significant difference in the peak time, and the post-meal oral bioavailability was only 1.2 times of that of pre-meal.

[0120] The abiraterone acetate capsule provided by the present invention is capable of reducing the difference between pre-meal and post-meal administration, as compared to the high-fat postprandial peak concentration and absorption value of Zytiga being 17 times and 10 times of those under the fasting state as recited in the specification of the original drug Zytiga.

Claims

1. A pharmaceutical composition containing abiraterone acetate, wherein the pharmaceutical composition comprises: an active ingredient: abiraterone acetate; and excipients: at least one oil phase, wherein the oil phase is one or at least two selected from the group consisting of glyceryl monolinoleate, hydrogenated castor oil, glyceryl monooleate, propylene glycol monocaprylate, soybean oil, medium chain triglycerides and ethyl oleate; at least one emulsifier, wherein the emulsifier is one or at least two selected from the group consisting of polyoxyethylene castor oil EL35, sorbitan monooleate, polyethylene glycol-15 hydroxystearate, polyethylene caprolactam-polyvinyl acetate-polyethylene glycol graft copolymer and polyoxyethylene 40 hydrogenated castor oil; and at least one co-emulsifier, wherein the co-emulsifier is a combination of ethanol and propylene glycol, or is diethylene glycol monoethyl ether; and wherein the co-emulsifier has a weight ranging from 20% to 80% of the total mass of the pharmaceutical composition.

2. The pharmaceutical composition according to claim 1, wherein the concentration of abiraterone acetate ranges from 20 to 100 mg / mL based on the total volume of the excipients; and / or the weight of abiraterone acetate ranges from 2 to 20% of the total mass of the pharmaceutical composition.

3. The pharmaceutical composition according to claim 1 or 2, wherein the oil phase has an amount ranging from 20 to 50% of the total mass of the pharmaceutical composition containing abiraterone acetate; and / or the emulsifier has a weight ranging from 20 to 70% of the total mass of the pharmaceutical composition.

4. The pharmaceutical composition according to any one of claims 1 to 3, wherein, based on the total mass of the pharmaceutical composition, the pharmaceutical composition comprises the following components by weight: 2 to 20% of abiraterone acetate; 20 to 50% of the oil phase, wherein the oil phase is one or two of hydrogenated castor oil and glyceryl monooleate; 20 to 60% of the emulsifier, wherein the emulsifier is one or two of polyoxyethylene castor oil EL35 or polyoxyethylene 40 hydrogenated castor oil; and 20 to 30% of the co-emulsifier, wherein the co-emulsifier is a mixture of ethanol and propylene glycol; or 2 to 20% of abiraterone acetate; 20 to 50% of the oil phase, wherein the oil phase is one or two of hydrogenated castor oil and glyceryl monooleate; 20 to 60% of the emulsifier wherein the emulsifier is one or two of polyoxyethylene castor oil EL35 and sorbitan monooleate; and 20 to 30% of the co-emulsifier, wherein the co-emulsifier is a mixture of ethanol and propylene glycol; or 2 to 20% of abiraterone acetate; 20 to 50% of the oil phase, wherein the oil phase is one or two of glyceryl monolinoleate and medium chain triglyceride; 20 to 70% of the emulsifier wherein the emulsifier is polyoxyethylene castor oil EL35 or polyoxyethylene 40 hydrogenated castor oil; and 20 to 80% of the co-emulsifier, wherein the co-emulsifier is diethylene glycol monoethyl ether.

5. The pharmaceutical composition according to any one of claims 1 to 4, wherein the excipients further comprise: one or two of an antioxidant and a preservative; wherein the antioxidant or preservative account for 0.005% to 0.1% by weight of the total mass of the pharmaceutical composition respectively; preferably, the antioxidant is one or two of tert-butyl p-hydroxyanisole BHA and butylated hydroxytoluene BHT.

6. The pharmaceutical composition according to any one of claims 1 to 5, wherein, the oil phase has an amount ranging from 25 to 45% of the total mass of the pharmaceutical composition; and / or the emulsifier has a weight ranging from 20 to 50% of the total mass of the pharmaceutical composition; and / or the co-emulsifier has a weight ranging from 20 to 60% of the total mass of the pharmaceutical composition.

7. The pharmaceutical composition according to any one of claims 1 to 6 for use as a medicament.

8. The pharmaceutical composition according to any one of claims 1 to 6 for use in treating prostate cancer, wherein preferably the prostate cancer is one or two of metastatic castration-resistant prostate cancer and high-risk metastatic castration-sensitive prostate cancer.

9. An abiraterone acetate capsule comprising a content and a capsule shell, wherein the content is the pharmaceutical composition according to any one of claims 1 to 6; preferably, the capsule shell is made of a hard capsule or soft capsule material; more preferably, a single oral dose is 25 to 200 mg of abiraterone acetate.

10. A pharmaceutical combination, wherein the pharmaceutical combination comprises: (a) prednisone, and (b) either (i) the pharmaceutical composition according to any one of claims 1 to 6, or (ii) the abiraterone acetate capsule according to claim 9.

11. The abiraterone acetate capsule according to claim 9 and / or the pharmaceutical combination according to claim 10 for use in treating prostate cancer; preferably, the prostate cancer is one or two of metastatic castration-resistant prostate cancer and high-risk metastatic castration-sensitive prostate cancer.