Herbal compositions for breast cancer prevention
A synergistic herbal composition targeting multiple pathways effectively inhibits breast cancer cell proliferation and suppresses tumor growth, offering a safe and sustainable prevention method.
Patent Information
- Application Number
- JP2024538689
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2021-12-22
- Filing Date
- 2022-12-16
- Publication Date
- 2026-01-13
- Estimated Expiration
- 2042-12-16
AI Technical Summary
Current breast cancer prevention methods, such as estrogen-blocking drugs, cause life-threatening side effects and are ineffective due to rapid cancer cell adaptation, while single molecular approaches fail to address the complex pathways of breast cancer development.
A composition comprising medicinal mushrooms, quercetin, Indian gooseberry, indole-3-carbinol, tea plant, garlic, iodine, and selenium, acting synergistically to inhibit breast cancer through multiple pathways, including antioxidant, anti-inflammatory, and immune-boosting activities.
The composition effectively reduces breast cancer risk by inhibiting breast cancer cell proliferation and suppressing tumor growth, providing a safe and sustainable chemopreventive effect without significant side effects.
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Abstract
Description
[Technical Field]
[0001] This application claims priority to U.S. Provisional Application No. 63 / 292,451, filed December 22, 2021, the contents and elements of which are incorporated by reference for all purposes.
[0002] The present invention relates to a composition that can be used to protect breast tissue from malignant changes, inhibiting the development of breast cancer cells and significantly reducing the risk of developing breast cancer. The composition is composed of multiple herbal and mineral ingredients. [Background technology]
[0003] Breast cancer is the leading cause of death for women aged 25 to 59 in the United States and worldwide.
[0004] In 1971, President Richard Nixon declared a "war on cancer" and signed it into law in the hopes of finding a cure. But 51 years later, with vast amounts of money and research invested in finding a cure, and despite widespread nationwide screening, cancer remains a life-altering disease, affecting one in seven women and their families.
[0005] Women still lose their breasts in traumatic, life-altering, debilitating chemotherapy and radiation treatments are still the norm, and the incidence of recurrent, secondary, and metastatic breast cancer is affecting women at a younger age than ever before.
[0006] Breast cancer is the second leading cause of cancer-related death in women and represents a significant burden on healthcare systems worldwide.
[0007] A study by the largest cancer charity, Cancer Research UK, concluded that one in two people born after 1960 will develop cancer in their lifetime. https: / / www.qmul.ac.uk / media / news / 2015 / smd / new-research-reveals-one-in-two-people-in-the-uk-will-get-cancer.html
[0008] There is an urgent need to prevent malignant development of the breast in women with a family history of breast cancer, carriers of the inherited defective BRAC1 and BRAC2 genes, and women with dense breast tissue. According to the NIH-National Cancer Institute, nearly half of women over 40 who undergo mammograms are found to have dense breasts. https: / / www.cancer.gov / types / breast / breast-changes / dense-breasts
[0009] High breast density has been shown to be a strong, independent risk factor for breast cancer. Women with high breast density have been reported to have a four to six times increased risk of developing the disease compared to women with low breast density (Stephen W Duffy et al., 2018).
[0010] Furthermore, modern lifestyles expose the population to a variety of carcinogenic factors: smoking, indoor and outdoor pollution, mutation- and hormone-disrupting molecules present in cosmetics and personal care products, ionizing radiation, and toxin-causing chemicals that generate tiny particles called free radicals.
[0011] Free radicals generated by multiple lifestyle factors have been shown to damage all major components of the cell, including DNA, cellular proteins, mitochondria, and cell membranes, leading to oxidative stress, chronic inflammation, and extracellular damage, which in turn contribute to the carcinogenic process.
[0012] The stimulatory effect of estrogen on breast cells is well recognized, resulting in rapid cell growth and proliferation. This is another established risk factor for women taking long-term hormone therapy in various forms: contraception during menopause (HRT), fertility, and hormone replacement therapy.
[0013] Additionally, chemicals in everyday products, such as bisphenol A (BPA), dioxins, phthalates, perfluoroalkyl and polyfluoroalkyl substances (PFAS), and polychlorinated biphenyls (PCBs), have the effect of mimicking the effects of estrogen. These chemicals alter breast cell metabolism, another well-recognized breast cancer risk factor.
[0014] Cancer is Multiple It is a complex disease driven by chronic inflammation via metabolic pathways that have been shown to actively contribute to the initiation, promotion, and progression of cancer. Targeting only one or two processes results in rapid additional mutations that evade targeted therapy.
[0015] Cancer prevention is a highly underappreciated approach in healthcare. Nearly all cancer funding and research, 98.5%, has been directed toward finding new cures. Only 1.5% of all bioresearch funding has been used to implement effective preventative health policies and translate scientific discoveries. https: / / www.ncbi.nlm.nih.gov / pmc / articles / pmc3343638 / #R31 Summary of the Invention [Problem to be solved by the invention]
[0016] Data from autopsies following unrelated cases of death in women aged 20–50 years ( M. Nielsen et al., 1987 ) found that 20% of women had undetectable microscopic breast tumors.
[0017] A consistent approach to significantly reducing breast cancer risk for all women is urgently needed. Preventing and inhibiting breast tumorigenesis and ultimately avoiding breast cancer is the safest and most cost-effective approach compared with cancer therapy, with clear benefits for women of all ages and ethnicities and a net benefit to healthcare systems worldwide.
[0018] Current breast cancer chemoprevention approaches rely on estrogen-blocking drugs: tamoxifen or raloxifene, which cause life-threatening side effects—blood clots in the lungs or eyes, stroke, uterine cancer, high blood pressure, and chemically induced menopause.
[0019] Cancer cells adapt rapidly to anti-cancer therapies, whether chemotherapy, radiation, or a combination of one, two, or three anti-cancer drugs, and tumors frequently become unresponsive to treatment.
[0020] Single molecular approaches to prevent or treat cancer have repeatedly proven to be quickly ineffective due to mutations in pre-cancerous or cancerous cells and the inevitable need for a multi-pathway approach.
[0021] Therefore, an effective composition for long-term use to protect breast cells and significantly reduce the risk of developing breast cancer is desirable. [Means for solving the problem]
[0022] A first aspect of the present invention provides a composition comprising: Medicinal mushrooms, such as Reishi (Ganoderma lucidum), Phellinus linteus, Trametes vesicolor, Inonotus oblicus, and Grifola frondose; Quercetin; Indian gooseberry (Embilica officinalis); Indole-3-carbinol; Tea plant (Camellia sinensis); Garlic (Allium sativum); iodine; and selenium.
[0023] A further embodiment of the present invention provides a composition comprising: Reishi (Ganoderma Lucidum) (Reishi mushroom); Quercetin dihydrate; Indian goose berry (amla berry); Indole-3-carbinol; Camellia sinensis (green tea extract containing polyphenolic catechins); Garlic (garlic extract); iodine; and Selenium in one or more of sodium selenate, selenocysteine, or selenomethionine.
[0024] A further embodiment of the present invention provides a composition comprising: 150-450 mg of Reishi (Ganoderma Lucidum) (Reishi mushroom) per dose; 200-400 mg of quercetin dihydrate per dose; 150-450 mg of Indian goose berry (amla berry) per dose; 150-300 mg of indole-3-carbinol per dose; 900-1800 mg equivalent of Camellia sinensis (green tea extract containing polyphenol catechins) per dose; Garlic equivalent to 3000mg per dose (garlic extract); 300-400 mcg of iodine per dose; and 50-60mcg of selenium per dose.
[0025] In some embodiments, the compositions of the present invention may also include a pharmaceutically acceptable carrier, excipient, or diluent.
[0026] In some embodiments, the compositions of the present invention are in the form of a liquid, a powder in a capsule, a sachet, or a gel.
[0027] A second aspect provides a composition for use in protecting breast cells from malignant transformation and reducing the risk of developing breast cancer, the composition comprising: Reishi; Quercetin 95%; Indian gooseberry; Indole-3-carbinol; Tea plant; Garlic; iodine; and selenium.
[0028] A third aspect of the present invention provides a composition for daily use to soothe and protect breast tissue in women with dense breast tissue and fibrocystic breast conditions, the composition comprising: Reishi mushroom in an amount of 300-450 mg per dose; Quercetin dihydrate 95% in an amount of 200-450 mg per dose; Indian goose berry in an amount of 100-300 mg per dose; Indole-3-carbinol in an amount of 150-300 mg per dose; Tea plant in an amount equivalent to 900mg-1200mg per dose; Garlic in an amount equivalent to 1000-3000 mg per dose; Iodine in an amount of 300-400 mcg per dose; and Selenium in amounts of 60-120mcg per dose.
[0029] A fourth aspect of the present invention provides a composition for daily administration to reduce the risk of developing breast cancer for women at risk for breast cancer resulting from at least one of BRAC1 and BRAC2 mutations, family history, and previous cancer exposure, the composition comprising: Reishi mushroom in an amount of 300-450 mg per dose; Quercetin dihydrate 95% in an amount of 200-450 mg per dose; Indian goose berry (amla berry) in an amount of 150-300 mg per dose; Indole-3-carbinol in an amount of 150-300 mg per dose; Tea plant in an amount equivalent to 900mg-1200mg per dose; Garlic equivalent to 3000mg per dose; Iodine in an amount of 300-400 mcg per dose; and Selenium in amounts of 60-120mcg per dose.
[0030] In another aspect, the present invention provides a composition for inhibiting breast cancer growth by administering a daily dose of a composition comprising: 300-450 mg of reishi mushroom per dose; 200-450 mg of quercetin dihydrate 95% per dose; 150-300 mg of Indian goose berry per dose; 150-300 mg of indole-3-carbinol per dose; Tea plant equivalent to 900mg-1200mg per dose; Approximately 3000mg equivalent of garlic per dose; 300-400mcg of iodine per dose; 60-120mcg of selenium per dose.
[0031] In some embodiments, the composition is a powder in a sachet, hi other embodiments, the composition is in the form of a gel or liquid.
[0032] In a preferred embodiment, the quercetin is preferably in the form of a 95% dihydrate. The green tea extract is preferably a 12:1 extract containing 95% polyphenols. The garlic extract is preferably a 100:1 extract. The composition in liquid or gel form can be present in a suitable vehicle containing pharmaceutically acceptable excipients, emulsifiers, including, but not limited to, phosphatidylcholine (soy lecithin), flavorings, natural sweeteners (stevia), natural colors (cranberry extract), and preservatives.
[0033] The compositions described herein are comprised of the ingredients listed above and may optionally also include a pharmaceutically acceptable carrier, excipient or diluent, and a natural colorant.
[0034] A further aspect of the present invention is the use of the composition to protect and maintain the health of breast tissue in women of all ages.
[0035] The features and advantages of the present invention will become more readily apparent from the following detailed description of the invention, in which like elements are similarly labeled. [Brief explanation of the drawings]
[0036] [Figure 1] FIG. 1 shows in graphical form the comparative percentage of in vitro viability of MCF-7 cells after 24 and 48 hours for control and treated samples (Example 1). [Figure 2] FIG. 2 shows in graphical form the comparative percentage of in vitro cytotoxicity of control and treated samples in MCF-7 cells after 24 and 48 hours (Example 1). [Figure 3] FIG. 3 shows in graphical form both the in vitro viability and cytotoxicity recorded after 24 and 48 hours in MCF-7 cultures (Example 1). [Figure 4] FIG. 4 is an image showing three microscope field images of MCF-7 cell fields before, 24 hours, and 48 hours after exposure to HCBCP (Example 1). [Figure 5] FIG. 5 is a graph showing a comparison of in vitro viability of MCF-7 cells 24 hours after application of individual components of green tea extract, quercetin, reishi (Ganoderma lucidum) and amla (Embillica officinalis) (Example 1). [Figure 6] FIG. 6 shows in graphical form the tumor volumes (in mm 3 ) recorded during the in vivo study and on the days of the study (Example 2). [Figure 7]Figure 7 shows four tumor cross-section slides side by side, two from the control group on the left and two from the treatment group on the right, for comparison of tumor size (Example 2). DETAILED DESCRIPTION OF THE INVENTION
[0037] Aspects and embodiments of the present invention are described below, and further aspects and embodiments will be apparent to those skilled in the art.
[0038] Cancer is a chronic disease caused by chronic inflammation at the cellular level and progresses slowly within tissues over decades.
[0039] Cancer progresses silently, with gradual changes, and we are unaware of this process until a tumor is established and diagnosed.
[0040] Targeting known molecular pathways of cancer development can protect the cellular environment and significantly reduce the risk of developing breast cancer.
[0041] Preventing cancer from developing is the best way to avoid it.
[0042] To put a brake on cancer progression, chemopreventive or therapeutic compositions must act through multiple pathways and different molecules to address the complex cellular pathways that allow cancer to progress and spread.
[0043] Focusing solely on individual biochemical effects ignores that multiple ingredients may prove more potent and effective than a single compound, or that the interaction of coexisting phytochemicals may help to negate the side effects of individual ingredients.
[0044] This is why no single component or approach can provide sustainable results: using one or a few substances cannot comprehensively address all the mechanisms by which cancer takes hold and spreads in cells.
[0045] This is precisely why the composition of the present invention contains eight ingredients, each corresponding to several aspects of breast cell metabolism: antioxidant activity, anti-inflammatory activity, modulation of inflammatory enzymes, enhancing activation of the host immune response, suppressing the effects of estrogen-blocking chemicals, rapid proliferation, inhibition of apoptosis, inhibition of angiogenesis by inhibiting VEGF, inhibition of metalloproteases (MMP-9) that promote cell migration and spreading in the extracellular matrix, activation of detoxification mechanisms, and promotion of cell repair activity.
[0046] Due to the increasing incidence of cancer worldwide, interest in the pharmacological effects of bioactive plant molecules for cancer treatment and prevention has increased dramatically over the past decade.
[0047] Most malignant tumors of breast cancer are adenocarcinomas, accounting for more than 95% of breast cancers. In Examples 1 and 2, the effectiveness of the present invention was demonstrated using the MCF-7 breast cancer cell line derived from breast adenocarcinoma.
[0048] The MCF-7 cell line has proven to be a suitable model cell line for breast cancer research worldwide, including studies on anti-cancer drugs.
[0049] Synergistic effects of the present invention As shown in Example 1 and Figure 5, the present invention has a significant inhibitory effect on the proliferation of MCF-7 breast cancer cells, reducing viability and inducing cytotoxicity as a result of the synergistic effect of the combinations described herein. Furthermore, various components of the present invention were evaluated in terms of their inhibitory effect on MCF-7 breast cancer cell viability and compared with HCBCP. The results show that the present invention exerts superior inhibitory antiproliferative effects that enhance cytoprotection against carcinogenic factors.
[0050] Each component acts on multiple pathways via very distinct molecules, resulting in an effective composition that exerts sustained protective chemopreventive activity at the breast cell level and demonstrated inhibitory effects against the most common types of breast cancer cells.
[0051] In Example 2, the present invention demonstrates significant breast cancer suppression effects in vivo, with therapeutic effects achieved with daily administration.
[0052] Daily intake of phytochemicals for breast health effectively neutralizes free radicals, preventing and combating cell damage, providing a natural, non-toxic, and affordable long-term chemoprevention.
[0053] The composition contains small, yet effective amounts of each ingredient to avoid possible side effects and allow for long-term use.
[0054] The composition comprises: Indian gooseberry (Embilica officinalis) (amla berry) has the highest antioxidant capacity (free radical scavenging capacity) of any fruit or vegetable (260,000 ORAC units), 27 times more potent than wild blueberries (9,600 ORAC units).
[0055] Amla is rich in vitamin C, polyphenols, and tannins, which exert potent anti-inflammatory effects and downregulate NF-kB signaling molecules, which promote chronic inflammation and carcinogenesis. A preferred, non-limiting amount of gooseberry in the composition ranges from 100 to 450 mg per serving. In a further embodiment, the amount of gooseberry in the composition ranges from 275 to 325 mg.
[0056] One of the following medicinal mushrooms is included in the composition. The medicinal mushroom can be one of Reishi, Phellinus linteus, Trametes vesicolor, Inonotus obliquus, or Maitake. Medicinal mushrooms, particularly Ganoderma lucidum (Reishi mushroom), Phellinus linteus (Black Hoof Mushroom), Trametes vesicolor (or Coriolus vesicolor) (Turkey Tail Mushroom), Inonotus obloquus (Chaga Mushroom), and Grifola frondosa (Maitake Mushroom), have been traditionally used for centuries in Asia, Japan, and Europe to treat a variety of ailments. The primary active molecules present in both the fruiting body, a root-like structure within the substrate in which the mushroom grows, and the mycelium are polysaccharides, proteins, polyphenols, and triterpenes. In particular, a group of polysaccharides called polyglucans, found in Ganoderma lucidum (Reishi mushroom), Phellinus linteus (Black hoof mushroom), Trametes vesicolor (Turkey tail mushroom), Inonotus obloquus (Chaga mushroom), and Grifola frondosa (Maitake mushroom), appear to exert several biological properties, including potent immunostimulatory, antioxidant, and anti-inflammatory activities. Their effects of stimulating cellular immune function and suppressing inflammatory responses may be useful in suppressing tumor initiation and growth and in inducing apoptosis in breast cancer cells without causing side effects.
[0057] Ganoderma lucidum mushrooms are included in the composition due to their beta-glucan polysaccharides and triterpenoids. The immunomodulatory and antiproliferative effects of Ganoderma lucidum mushrooms are exerted through multiple mechanisms, including downregulation of estrogen-alpha receptors and the NF-kB pathway, antiangiogenic effects through downregulation of VEGF, downregulation of cell migration through inhibition of metalloproteinase (MMP-9), and activation of apoptosis in cancer cells. The preferred amount of Ganoderma lucidum included in the composition is, but is not limited to, 100-450 mg per dose. In a further embodiment, the amount of Ganoderma lucidum in the composition is in the range of 350-400 mg.
[0058] Quercetin is a flavonoid found in fruits and vegetables that has potent anti-inflammatory and anti-cancer properties. The preferred form of quercetin is quercetin dihydrate, as it has better bioavailability and absorption compared to quercetin.
[0059] Quercetin inhibits several metabolic pathways that lead to cancer: it suppresses the p53 protein and blocks estrogen receptors, preventing cancer cell division. However, at the same time, quercetin plays a role in inhibiting iodine absorption by the thyroid gland and downregulates the production of thyroxine (T4), thus negatively affecting cellular metabolism and energy production in general and affecting the positive activity of iodine in breast tissue in particular.
[0060] This problem has been addressed by increasing the amount of iodine in the composition to balance the chemopreventive activity of quercetin and compensate for its inhibitory effect on iodine absorption. A preferred, non-limiting amount of quercetin in the composition is in the range of 200-400 mg per dose. In other embodiments, the amount of quercetin in the composition is in the range of 350-400 mg per dose. In one embodiment of the present invention, quercetin is provided in the form of quercetin dihydrate.
[0061] Indole-3-carbinol (I3C) is produced from the breakdown of glucobrassicin, a compound found in most cruciferous vegetables, including cabbage, Brussels sprouts, and broccoli. In the stomach, I3C molecules undergo acid condensation to produce numerous biologically active I3C oligomers, including 3,3'-diindolylmethane (DIM) and 5,11-dihydroindolo-[3,2-b]carbazole (ICZ). I3C and DIM have been shown to induce the expression of detoxification and antioxidant enzymes.
[0062] Women use a huge number of estrogen-blocking chemicals (EDCs) every day in cosmetics, skin care products, hair care products, perfumes, and plastic packaging, all of which contain multiple man-made chemicals such as phthalates, bisphenols, and parabens.
[0063] Increasing evidence suggests that these toxic chemicals act as xenoestrogens and are important factors in the spread of breast cancer.
[0064] Because estrogen is a key growth factor for breast cells and has been shown to promote carcinogenesis at the cellular level, I3C was specifically added to this combination to mitigate the impact of EDCs on breast health through its anti-estrogenic activity. By neutralizing estrogenic compounds, toxins, and carcinogens, I3C reduces the risk of DNA mutations and the initiation of cancer.
[0065] Due to potential side effects, such as bleeding risk, skin rash, and diarrhea, in individuals with bleeding disorders at doses above 400 mg per day, a preferred, non-limiting amount of I3C in the composition is in the range of 150-300 mg per dose. In some embodiments, the amount of I3C in the composition is in the range of 100-200 mg per dose.
[0066] Iodine is a vital mineral that supports good energy metabolism. It helps maintain thyroid hormone production, known for its beneficial effects on cells. Breast tissue, like the thyroid gland, contains high concentrations of iodine, making iodine an important component of breast health. Iodine acts as an antioxidant, interacts with the estrogen pathway, and has antiproliferative properties that contribute to normal mammary gland integrity. The presence of sodium / iodide symporters in breast cells highlights its role in promoting normal versus neoplastic breast tissue development. Adequate iodine levels are beneficial for women with fibrocystic breast changes. These changes are recognized as a risk factor for breast cancer, and iodine deficiency has been associated with increased incidence of fibrocystic breast disease and increased breast cancer risk.
[0067] Iodine is an important balancing component of the composition, providing several beneficial synergistic and compensatory effects: it counteracts the inhibitory effects of quercetin on iodine absorption and thyroxine production, thereby preventing iodine deficiency; it disrupts and inhibits the estrogen pathway; it actively protects breast tissue from fibrocystic breast changes, which increase the risk of breast cancer; and it acts synergistically with selenium, since all three enzymes involved in thyroid hormone regulation are selenium-dependent. Therefore, selenium status can affect both thyroid hormone homeostasis and iodine availability. Preferred, non-limiting amounts of iodine range from 300 to 400 mcg per dose. In another embodiment, the amount of iodine in the composition ranges from 250 to 350 mcg per dose. In a preferred embodiment, iodine is provided in the form of potassium iodide or sodium iodide.
[0068] Tea Plant (Camellia sinensis) (Green Tea Extract 95% Polyphenols) The active molecules in green tea are a group of polyphenols called catechins. Epigallocatechin-3-gallate (EGCG), in particular, has antioxidant and potent free radical neutralizing properties and may protect cells from DNA damage caused by free radicals and UV rays. Furthermore, green tea has been shown to activate the detoxification enzyme glutathione-S-transferase, which may help prevent tumor development.
[0069] Green tea has numerous anti-inflammatory and antimutagenic properties that are essential for maintaining cellular health. Daily consumption of green tea may contribute to the low incidence of breast cancer among Japanese women. A preferred, non-limiting amount of tea plant extract 95% polyphenols is in the range of 900-1800 mg per dose. In another embodiment, the amount of tea plant extract 95% polyphenols is in the range of 900-1200 mg per dose.
[0070] Garlic (Allium sativum) vegetables and their components act at various stages of carcinogenesis, affecting many biological processes that alter cancer risk. The antioxidant properties of allium vegetables, particularly garlic, (oxygen radical absorption capacity and cancer prevention effects) are due to the bioactive sulfur compounds alliin and allicin. Antioxidant properties modify the tumor microenvironment by preventing the formation, growth, and differentiation of precancerous cells, disrupting the cell cycle, inhibiting signaling pathways, and inducing apoptosis. A preferred, non-limiting amount of allium extract is in the range of 1000-3000 mg per dose. In another embodiment, the amount of allium extract is in the range of 2500-3500 mg per dose.
[0071] Selenium is a micronutrient found in soil and foods. It plays a key role in 25 enzymes called selenoproteins, which are involved in thyroid hormone metabolism, DNA synthesis, immune function, and protection from oxidative damage. The Food and Nutrition Board recommends a daily intake of 55 mcg of selenium per day, with an upper limit of 400 mcg. Selenium exerts its protective effects through multiple mechanisms, including antioxidant activity (protecting cells from oxidative damage and inhibiting DNA damage), induction of apoptosis, and inhibition of angiogenesis and invasion. Although only small amounts are used in our compositions, their synergistic effects with iodine enhance the protective effects on breast cell health.
[0072] Selenium acts synergistically with iodine to support thyroid hormone metabolism, and thus selenium status influences both thyroid hormone homeostasis and iodine availability.
[0073] Preferred, non-limiting amounts of selenium range from 60 mcg to 120 mcg per dose. Selenium may be provided in the form of sodium selenate, selenocysteine, or selenomethionine.
[0074] Reduced side effects In the present invention, the synergistic effects of various phytochemicals and minerals allow for the use of lower doses of the components, avoiding potential side effects that may result from the use of multiple ingredients.
[0075] Below we explain how the amounts of active ingredients interact to reduce the side effects of high doses of these ingredients and maintain anti-cancer efficacy during safe long-term use.
[0076] Quercetin inhibits iodine absorption by the thyroid gland, reducing thyroid hormone production. To avoid this adverse effect, the amount of iodine used, in a non-limiting embodiment, ranges from 300 to 400 mcg per daily dose (200% to 266% of the recommended daily intake), which mitigates the inhibitory effect of quercetin on iodine absorption and does not interfere with thyroxine production.
[0077] Indole-3-carbinol, at doses above 400 mg per day, may pose potential side effects, such as increased bleeding risk in individuals with bleeding disorders, skin rash, and diarrhea. In a non-limiting embodiment, the amount of I3C in the composition ranges from 150 to 300 mg per daily dose.
[0078] Although very small amounts above 400 mcg can cause toxicity, selenium is highly active in multiple metabolic processes, including immune-boosting and anti-cancer effects, and non-limiting embodiments include selenium in the range of 60-120 mcg per daily dose.
[0079] Iodine can cause serious side effects, even in small doses above 1100 mcg. According to the National Institutes of Health (NIH), iodine can cause thyroid inflammation, a burning sensation in the mouth, throat, and stomach, fever, stomach pain, nausea, vomiting, diarrhea, a weak pulse, and coma. Additionally, iodine can interfere with the action of thyroid medications.
[0080] In the present invention, iodine is used in a non-limiting embodiment in the range of 300-400 mcg, which corresponds to 200-260% of the recommended daily amount, to mitigate the effect of quercetin on iodine absorption and provide a sufficient amount to exert its protective effect at the breast cell level.
[0081] Garlic is used in small amounts in the form of a concentrated extract because it is a well-known stomach irritant, allergen, and blood thinner that can interfere with the action of anticoagulant medications.
[0082] A woman's average lifetime risk of developing breast cancer is about 15%.
[0083] The present invention can be used by women at increased risk of breast cancer, such as women who are carriers of defective BRAC1 and BRAC2 genes, or women who have a family or personal history of breast cancer or other malignancies.
[0084] The present invention can be used by all women aged 20-70 to protect breast tissue from cellular damage and significantly reduce the risk of developing breast tumors.
[0085] High breast density has been shown to be a strong independent risk factor for breast cancer. Women with high breast density have been reported to have a 4-6 times higher risk of developing breast cancer compared to women with low breast density (Stephen W Duffy et al., 2018). https: / / www.ncbi.nlm.nih.gov / pmc / articles / PMC5768323 / -
[0086] The use of the present invention is beneficial for women with dense breast tissue, protecting breast cells from tumorigenesis and the development of malignant tumors (which increases the probability of developing breast cancer from an average risk of 15% for women overall to a very high 60-90% according to studies (Stephen W Duffy et al., 2018)).
[0087] The present invention can be used by any woman who has undergone hormone treatment, such as hormone replacement therapy (HRT), which is known to significantly increase the lifetime risk of breast cancer. https: / / www.webmd.com / breast-cancer / breast-cancer-hormone-replacement-therapy-cancer-risk
[0088] The present invention can also be used in women who have had breast implant surgery, as implants can cause chronic inflammation at the cellular level.
[0089] The composition can be in the form of a powder, liquid, or gel. In powder form, it can be placed in a sachet or enclosed in a vegetable capsule such as hydroxypropylmethylcellulose. The composition can also be administered in the form of a gel in a sachet, and gel embodiments can include pharmaceutically acceptable excipients, emulsifiers (including, but not limited to, phosphatidylcholine (soy lecithin), flavorings, natural sweeteners (stevia), natural colors (cranberry extract), and preservatives).
[0090] Further embodiments In some embodiments, the present invention provides a composition comprising: Reishi (Ganoderma Lucidum) (Reishi mushroom); Quercetin dihydrate; Indian gooseberry (Embilica officinalis) (amla berry); Indole-3-carbinol; Camellia sinensis (green tea extract containing polyphenol catechins); Garlic (Allium sativum) (garlic extract); Iodine (as potassium iodide); and Selenium (as sodium selenate, selenocysteine, or selenomethionine).
[0091] In a further embodiment, the present invention provides a composition comprising, per dose: 50-150 mg of Reishi (Ganoderma Lucidum) (Reishi mushroom) per dose; 70-130 mg of quercetin dihydrate 95% per dose; 50-150 mg of Indian goose berry (Embilica officinalis) (amla berry) per dose; 50-100 mg of indole-3-carbinol per dose; 300-600 mg equivalent of tea plant (Camellia sinensis) per dose (green tea extract containing 95% polyphenol catechins); Garlic (Allium sativum) equivalent to 1000 mg per dose (garlic extract); 100-130 mcg of iodine per dose; At least 20 mcg of selenium per dose.
[0092] In another aspect, the present invention provides a composition in powder form comprising the following ingredients: 150-450 mg of Reishi (Ganoderma Lucidum) (Reishi mushroom) per dose; 200-400 mg of quercetin dihydrate 95% per dose; 150-450 mg of Indian goose berry (Embilica officinalis) (amla berry) per dose; 150-300 mg of indole-3-carbinol per dose; 900-1800 mg equivalent of tea plant (Camellia sinensis) per dose (green tea extract containing 95% polyphenol catechins); Garlic (Allium sativum) (garlic extract) equivalent to 1000-3000 mg per dose; 300-400 mcg of iodine per dose; and 50-60mcg of selenium per dose.
[0093] Another aspect of the present invention provides a composition in liquid or gel form comprising the following ingredients: 150-450 mg of Reishi (Ganoderma Lucidum) (Reishi mushroom) per dose; 200-400 mg of quercetin dihydrate 95% per dose; 150-450 mg of Indian goose berry (Embilica officinalis) (amla berry) per dose; 150-300 mg of indole-3-carbinol per dose; Tea plant (Camellia sinensis) equivalent to 900-1800 mg per dose (green tea extract with 50-95% polyphenol catechins); Garlic (Allium sativum) (garlic extract) equivalent to 1000-3000 mg per dose; 300-400mcg of iodine per dose; 50-60mcg of selenium per dose.
[0094] In some embodiments, the present invention provides a composition for use in preventing breast cancer and protecting breast cells from malignant transformation, the composition comprising: Reishi (Ganoderma Lucidum) (Reishi mushroom); Quercetin dihydrate; Indian gooseberry (Embilica officinalis) (amla berry); Indole-3-carbinol; Camellia sinensis (green tea extract containing polyphenol catechins); Garlic (Allium sativum) (garlic extract); iodine; and selenium.
[0095] In some embodiments, the composition used to prevent breast cancer and protect breast cells from malignant changes comprises: 150-200 mg of Reishi (Ganoderma Lucidum) (Reishi mushroom) per dose; 100-150 mg of quercetin dihydrate 95% per dose; 50-150 mg of Indian goose berry (Embilica officinalis) (amla berry) per dose; 50-100 mg of indole-3-carbinol per dose; Tea plant (Camellia sinensis) equivalent to 300 mg or more per dose (green tea extract containing polyphenol catechins); Garlic (Allium sativum) (garlic extract) equivalent to 1000 mg or more per dose; 100 mcg or more of iodine per dose; and At least 20 mcg of selenium per dose.
[0096] In another aspect, the present invention provides a composition for use in preventing breast cancer and protecting breast cells from malignant changes by administering 2 to 4 capsules per day, the dose comprising: 300-450 mg of Reishi (Ganoderma Lucidum) (Reishi mushroom) per dose; 200-450 mg of quercetin dihydrate 95% per dose; 150-300 mg of Indian goose berry (Embilica officinalis) (amla berry) per dose; 150-300 mg of indole-3-carbinol per dose; 900mg-1000mg equivalent of tea plant (Camellia sinensis) per dose (green tea extract with 50-95% polyphenol catechins); Garlic (Allium sativum) (garlic extract) equivalent to approximately 3000 mg per dose; 300-400mcg of iodine per dose; 60-120mcg of selenium per dose; and optionally a pharmaceutically acceptable carrier such as a vegetarian capsule, excipient, diluent, etc.
[0097] In a further embodiment, the present invention provides a composition administered daily to prevent breast cancer and protect breast cells from malignant changes, the dose of which comprises: 300-450 mg of Reishi (Ganoderma Lucidum) (Reishi mushroom) per dose; 200-450 mg of quercetin dihydrate 95% per dose; 150-300 mg of Indian goose berry (Embilica officinalis) (amla berry) per dose; 100-300 mg of indole-3-carbinol per dose; 900mg-1800mg equivalent of tea plant (Camellia sinensis) per dose (green tea extract with 50-95% polyphenol catechins); Garlic (Allium sativum) (garlic extract) equivalent to 1000-3000 mg per dose; 100-130 mcg of iodine per dose; 20-60 mcg of selenium per dose; and optionally a pharmaceutically acceptable carrier such as a vegetarian capsule, excipient, diluent, etc.
[0098] In another aspect, the present invention provides a composition in the form of a liquid or gel to be administered daily to prevent breast cancer and protect breast cells from malignant changes, according to claim 4, said composition comprising: 300-450 mg of Reishi (Ganoderma Lucidum) (Reishi mushroom) per dose; 200-400 mg of quercetin dihydrate 95% per dose; 150-300 mg of Indian goose berry (Embilica officinalis) (amla berry) per dose; 100-300 mg of indole-3-carbinol per dose; 900mg-1800mg equivalent of tea plant (Camellia sinensis) per dose (green tea extract with 50-95% polyphenol catechins); Garlic (Allium sativum) (garlic extract) equivalent to 1000-3000 mg per dose; 100-130 mcg of iodine per dose; and 20-60mcg of selenium per dose.
[0099] A preferred composition comprises: 1) Quercetin as quercetin 95% dihydrate (in a non-limiting preferred embodiment, Sophora japonica is preferred) 2) Ganoderma Lucidum (in a non-limiting preferred embodiment, Ganoderma lucidum mushroom is preferred) powder 3) Indian gooseberry (Embilica officinalis) powder (amla berry is preferred in a non-limiting preferred embodiment) 4) Indole-3-carbinol 5) Green tea extract containing 95% polyphenol catechins (in a non-limiting preferred embodiment, Camellia sinensis 12:1 is preferred) 6) Garlic extract (in a non-limiting preferred embodiment, garlic (Allium sativum) is preferred) powder 100:1 7) Iodine as potassium iodide 8) Selenium as sodium selenite or selenomethionine
[0100] In any of the above embodiments, green tea extract 12:1 means that 1 mg of extract is equivalent to 12 mg of raw green tea leaves, and garlic extract 100:1 means that 1 mg of extract is equivalent to 100 mg of raw garlic herb.
[0101] In a further embodiment, the composition comprises: 350-400 mg of Reishi (Ganoderma Lucidum) (Reishi mushroom) per dose; 350-400 mg of quercetin dihydrate per dose; 275-325 mg of Indian goose berry (Embilica officinalis) (amla berry) per dose; 100-200 mg of indole-3-carbinol per dose; 900-1200 mg per dose of Camellia sinensis (green tea extract containing polyphenol catechins); Garlic (Allium sativum) equivalent to 2500-3500 mg per dose (garlic extract); 250-350 mcg of iodine per dose; and 60-120mcg of selenium per dose.
[0102] In some embodiments, the composition is in the form of a powder comprising: 150-450 mg of Reishi (Ganoderma Lucidum) (Reishi mushroom) per dose; 200-400 mg of quercetin dihydrate per dose; 150-450 mg of Indian goose berry (Embilica officinalis) (amla berry) per dose; 150-300 mg of indole-3-carbinol per dose; 900-1800 mg equivalent of tea plant (Camellia sinensis) per dose (green tea extract containing polyphenol catechins); Garlic (Allium sativum) (garlic extract) equivalent to 1000-3000 mg per dose; 300-400 mcg of iodine per dose; and 50-60mcg of selenium per dose.
[0103] In some embodiments, the composition is in the form of a liquid or gel comprising: 150-450 mg of Reishi (Ganoderma Lucidum) (Reishi mushroom) per dose; 200-400 mg of quercetin dihydrate per dose; 150-450 mg of Indian goose berry (Embilica officinalis) (amla berry) per dose; 150-300 mg of indole-3-carbinol per dose; 900-1800 mg equivalent of tea plant (Camellia sinensis) per dose (green tea extract containing polyphenol catechins); Garlic (Allium sativum) (garlic extract) equivalent to 1000-3000 mg per dose; 300-400 mcg of iodine per dose; and 50-60mcg of selenium per dose.
[0104] In another embodiment, the composition comprises per dose: Reishi mushroom in an amount of 50-150 mg per dose; Quercetin dihydrate in an amount of 70-130 mg per dose; Indian goose berry in an amount of 50-150 mg per dose; Indole-3-carbinol in an amount of 50-100 mg per dose; Tea plant in an amount equivalent to 300-600 mg per dose; Garlic equivalent to 1000mg per dose; Iodine in an amount of 100-130 mcg per dose; and Selenium in amounts of 20-40 mcg per dose. In some embodiments, the single dose is in the form of a powder within a capsule, and in further embodiments, three capsules are taken per day.
[0105] Preferred compositions may also contain pharmaceutically acceptable carriers or excipients, if necessary. These preferred compositions consist solely of the ingredients listed above, and may optionally contain pharmaceutically acceptable carriers or excipients and natural coloring agents, such as cranberry extract. These preferred compositions may be encapsulated, preferably in a hydroxypropylmethylcellulose vegetable capsule, hard or soft shell, or in gel or liquid form, and may contain, but are not limited to, pharmaceutically acceptable excipients, emulsifiers (phosphatidylcholine (soy lecithin), flavorings, natural sweeteners (stevia), natural coloring agents (cranberry extract), and preservatives).
[0106] In any of the above embodiments, the term "dose" refers to the total amount of therapeutic substance taken within a 24-hour period. The term "dose" applies only to capsule embodiments, and refers to one capsule. To reach the daily dose, one dose (capsule) can be taken several times a day.
[0107] How to use In some embodiments, the compositions of the present invention are used daily in women at risk for breast cancer to protect breast cells from malignant transformation and inhibit the development of breast cancer.
[0108] In some embodiments, the compositions of the present invention are used to protect breast tissue and reduce the risk of developing breast cancer in women with dense breast tissue and fibrocystic breast conditions.
[0109] In some embodiments, the compositions of the present invention are administered daily to women at risk of breast cancer resulting from at least one of BRAC1 and BRAC2 mutations, family history, and prior cancer to reduce the risk of developing breast cancer.
[0110] In some embodiments, the present invention provides methods of inhibiting breast cancer growth by daily administration of a composition comprising: 300-450 mg of reishi mushroom per dose; 200-450 mg of quercetin dihydrate 95% per dose; 150-300 mg of Indian goose berry per dose; 150-300 mg of indole-3-carbinol per dose; 900mg-1200mg of tea plant per dose; Approximately 3000mg equivalent of garlic per dose; 300-400 mcg of iodine per dose; and 60-120mcg of selenium per dose.
[0111] In some embodiments, the compositions can be used in combination with other cancer treatments, such as any one or more of surgery, radiation therapy, chemotherapy, or immunotherapy. [Example]
[0112] The following data highlight that the HCBCP formulation exhibits effective inhibitory activity against MCF-7 breast cancer cells both in vitro and in vivo.
[0113] Example 1 In vitro studies The purpose of this in vitro study was to test the anticancer activity of Herbal Composition for Breast Cancer Prevention (HCBCP) against the most common types of breast cancer cells.
[0114] The following compositions were tested: Reishi (Ganoderma lucidum) 375mg Quercetin 375mg Amla (Embilica officinalis) 300mg Indole-3-carbinol 150mg Green tea extract (Camelia sinensis) equivalent to 1080mg Garlic extract (Allium sativum) equivalent to 3000mg 300mcg iodine 60mcg selenium
[0115] To assess this activity, an established breast cancer cell line used in cancer research was chosen: MCF-7, a widely studied cancer cell line derived from breast adenocarcinoma, has proven to be a suitable model cell line for breast cancer research worldwide, including that related to anticancer drugs.
[0116] Cells were cultured in growth medium and seeded into two 96-well plates and incubated at 37° C. HCBCP solution was prepared by dissolving the powder in DPBS according to Table 1 below.
[0117] The resulting solution was sterilized by 0.22 micron filtration.
[0118] A volume of 0.2 ml was added to each test tube to give 2 mg of HCBCP.
[0119] After application of HCBCP, both plates were incubated at 37°C, one plate for 24 hours and the other for 48 hours.
[0120] All treatments were performed in quadruplicate. Controls were treated with 5% DPBS as the vehicle.
[0121] After 24 and 48 hour culture periods, cell viability was measured using PrestoBlue™ Cell Viability Reagent according to the manufacturer's instructions.
[0122] Fluorescence was detected at 24 and 48 hours after application using a TECAN SPARK10M microplate reader at an excitation wavelength of 560 nm and an emission wavelength of 590 nm. Fluorescence data are expressed as % cell viability compared to the solvent control.
[0123] Cell viability was calculated at 24 and 48 hours after application using the following formula: [(fluorescence of treated cells − mean background fluorescence) / (fluorescence of solvent control cells − mean background fluorescence)] × 100.
[0124] The percentage of cell viability when MCF-7 cells were treated with HCBCP for 24 and 48 hours compared to the control is shown below.
[0125] After 24 hours, the average viability of MCF-7 cells decreased from 100% to 17.02%, and after 48 hours to 1.1% (see Table 2 below and Figure 1).
[0126] Control survival remained at 100%.
[0127] The anticancer inhibitory effect of HCBCP on MCF-7 cell viability was measured at 24 and 48 hours, and the results are shown in Table 1.
[0128] [Table 1]
[0129] Table 1 shows the in vitro viability of MCF-7 cells after a single application of HCBCP, measured at 24 and 48 hours after application (Example 1).
[0130] FIG. 1 graphically illustrates the inhibitory antiproliferative effect of HCBCP compositions on MCF-7 cell viability at 24 and 48 hours.
[0131] Damage to the cell membrane results in the release of lactate dehydrogenase (LDH) into the cell culture supernatant, which is a key characteristic of cells undergoing apoptosis and a reliable indicator of cytotoxicity.
[0132] The percentage of cytotoxicity was calculated using the following formula: Cytotoxicity = [(compound-treated LDH activity - spontaneous LDH activity) / (maximum LDH activity - spontaneous LDH activity)] x 100. The cytotoxic effect of HCBCP on breast cancer cells increased in a time-dependent manner, reaching a peak 48 hours after the start of treatment, as shown in Table 2 below.
[0133] [Table 2]
[0134] Table 2 shows the percentage of in vitro MCF-7 cytotoxicity measured after a single application of HCBCP at 24 and 48 hours after application (Example 1).
[0135] As shown in Figure 2, the cytotoxic effect of the present invention on MCF-7 cells is displayed in graphical form as a percentage at 24 and 48 hours after application of HCBCP (Example 1).
[0136] Figure 3 summarizes in graphical form the combined effects of HCBCP on the viability and cytotoxicity of MCF-7 cells in a time-dependent manner.
[0137] Additionally, microscopic MCF-7 cell images of untreated MCF-7 cells and after 24 and 48 hours of exposure to HCBCP are shown in FIG.
[0138] As shown in Figure 4, 24 and 48 hours after application, a significant decrease in cell number occurred, along with changes in cell morphology, including cell rounding and shrinkage, chromatin condensation, and cell membrane blebbing, indicative of nonviable cells.
[0139] To compare the inhibitory effect of the present invention on MCF-7 cell viability with the effect of some of its components, additional in vitro tests were performed in which cell viability was assessed at 24 hours in vitro.
[0140] As shown in Table 3 below, in vitro MCF-7 cell viability 24 hours after application of green tea extract, quercetin, reishi (Ganoderma lucidum) and amla (Embillica officinalis) was compared to HCBCP (Example 1).
[0141] [Table 3]
[0142] FIG. 5 graphically illustrates that the synergistic effect of the HCBCP composition of the present invention exhibits a higher inhibitory effect on MCF-7 cells compared to the individual components.
[0143] Conclusions of the in vitro study The in vitro data shown in Figures 1-5 and Tables 1-3 above demonstrate that a single application of the Breast Cancer Prevention Herbal Composition (HCBCP) significantly inhibited breast cancer. This effect significantly reduced the viability of MCF-7 breast cancer cells, with a measured viability of 17.02% at 24 hours and only 1.11% of breast cancer cells remaining viable at 48 hours, resulting in a near complete loss of viability.
[0144] Equally important are data showing the cytotoxic effect of HCBCP after a single application, which increased from 24 to 48 hours, with the strongest cytotoxic effect occurring after 48 hours of treatment, at 16.73%.
[0145] Furthermore, microscopic images show that the present invention exhibits significant anti-proliferative and inhibitory effects after 24 and 48 hours, resulting in a reduction in cell number and the presence of predominantly non-viable MCF-7 cells.
[0146] Example 2 In vivo studies In vivo studies were performed to evaluate the inhibitory antiproliferative activity of the present invention for cancer treatment in a mouse xenograft model.
[0147] This study evaluated the effect of daily administration of HCBCP on breast cancer tumor development and progression in a mouse model.
[0148] Human breast cancer cells MCF-7 were used in NOD SCID hosts, an immunodeficient mouse model suitable for efficacy testing.
[0149] MCF-7 cancer cells were inoculated subcutaneously in the flank.
[0150] Animal handling was carried out in accordance with the guidelines of the National Institutes of Health (NIH) and the Association for Assessment and Accreditation of Laboratory Animal Care (AAALAC).
[0151] The study included two groups of 7-week-old female mice with an average weight of 16.9-22.6 grams at the start of the study. Each group consisted of 10 mice, the minimum number required for significance assessment in data analysis. Group 1 was the treatment group, and group 2 was the untreated control group.
[0152] Treatment with HCBCP began 1 week before MCF-7 cell inoculation in group 1 and was administered daily until the end of the study.
[0153] Tumor growth was monitored by caliper measurements.
[0154] During the study, animals underwent general clinical observation and were weighed. For humane reasons, tumors were removed from the study if their volume exceeded 1500 mm. 3 When this was reached, the animals were sacrificed.
[0155] Test articles were prepared by dissolving the HCBCP composition identified in Example 1 in cell culture grade water (Biological Industries Catalog No. 03-055-1A) and dispensing. Aliquots were stored at 2-8°C. Fresh aliquots were prepared weekly.
[0156] Dosing was by oral administration in a volume of 0.1 ml providing a daily dose of 90 mg / kg of HCBCP according to Table 4.
[0157] Table 4 below shows in tabular form the amounts of HCBCP administered daily to animals in the treatment groups in the in vivo study (Example 2).
[0158] [Table 4]
[0159] Treatment began 1 week before MCF-7 cell inoculation and was administered daily until the end of the study.
[0160] Seven days after the start of treatment in study group 1, all animals received 3 × 10 MCF-7 cells (200 μl / mouse) in PBS in the right flank. 6 were injected subcutaneously at 1000x per mouse.
[0161] Before injection, cells were washed, counted, and dispersed in PBS to a final concentration of 3 x 10 6 / 200 μL, and a 26 G injection needle was used.
[0162] After injection, body weight and tumor size were measured three times a week for the duration of the study.
[0163] Tumor volumes were measured two-dimensionally using calipers and expressed in mm using the formula V = (L × W × W) / 2, where V is the tumor volume, L is the tumor length (the longest dimension of the tumor), and W is the tumor width (the longest dimension of the tumor perpendicular to L).
[0164] Tumor volume (mm 3 ) results, as shown in Figure 6, showed that the HCBCP-treated group had an average volume of 716 mm 3 , and the control group had an average volume of 1330 mm 3 It was.
[0165] Figure 6 shows the tumor volumes (mm) recorded during the in vivo study and on the day of the study (Example 2). 3 The tumor volumes (units) are shown in graphical form, highlighting the tumor volumes in the HCBCP-treated and untreated groups. The tumor volumes in the treated group were 85% smaller than those in the control group, demonstrating a highly significant inhibitory effect with therapeutic potential even in the absence of other interventions, even in immunocompromised hosts.
[0166] Figure 7 shows four tumor slides - cross sections (H stained and E stained) side by side. The two samples on the left are from the control group, and the two samples on the right are from the treated group. The differences in tumor size, shape, and borders indicate the inhibitory effect of HCBCP on tumor development, and the measured tumor volume (mm) between the treated and untreated groups was significantly different from that shown in Figure 6. 3 ) differences are shown.
[0167] Conclusions of the in vivo study In vivo studies highlight the highly significant tumor suppressive effects demonstrated by HCBCP in an MCF-7 breast cancer xenograft model in female mice lacking an immune system. Even in the absence of host immunity or other therapeutic intervention, the invention suppressed breast cancer progression by 85%, highlighting the remarkable inhibitory effects and therapeutic potential of the invention.
[0168] As can be seen from the above, the composition of the present invention, when taken daily, has the effect of protecting breast tissue, and as demonstrated in the examples, has an inhibitory and anti-proliferative effect on breast cancer cells, significantly reducing the risk of developing breast cancer and suppressing / preventing the onset of breast cancer.
[0169] The compositions of the present invention can be used by women who have a defective BRAC1 / 2 gene and have at least a 50% lifetime risk of breast cancer to significantly reduce their risk of developing breast cancer and protect breast tissue from malignancies.
[0170] This composition can be used in women with dense breast tissue. According to the NIH-National Cancer Institute, nearly half of women over the age of 40 have dense breast tissue diagnosed by mammography. Dense breast tissue is a major risk factor for breast cancer, not only increasing the risk of developing breast cancer by 4-6 times but also making tumors difficult to diagnose during mammography breast cancer screening tests (Stephen W Duffy et al., 2018). https: / / www.ncbi.nlm.nih.gov / pmc / articles / PMC5768323 /
[0171] Additionally, the compositions of the present invention may be used in women undergoing hormone replacement therapy, which increases the risk of breast cancer and also increases the likelihood that cancer will be detected at a more advanced stage due to the effect of creating denser breast tissue, thereby reducing the effectiveness of mammography. https: / / www.webmd.com / breast-cancer / breast-cancer-hormone-replacement-therapy-cancer-risk
[0172] Thus, the compositions of the present invention may be used by women with a family or personal history of breast cancer or other malignancies.
[0173] The present invention may be used by women with breast implants that may cause inflammatory changes at the cellular level.
[0174] While the present invention has been described with reference to preferred embodiments, this description is provided to enable one skilled in the art to practice the invention and is not intended to limit the scope of the invention, which is determined by the claims.
[0175] The features disclosed in the foregoing description, or the following claims, or the accompanying examples and figures, may be expressed in their specific form, or in terms of means for performing a disclosed function, or methods or processes for obtaining a disclosed result, as appropriate, and such features can be utilized individually or in any combination to realize the invention in its various forms.
[0176] While the present invention has been described in conjunction with the exemplary embodiments set forth above, many equivalent modifications and variations will be apparent to those skilled in the art upon reading this disclosure. Accordingly, the exemplary embodiments of the invention set forth above are considered to be illustrative and not limiting. Various changes can be made to the described embodiments without departing from the spirit and scope of the invention.
[0177] For the avoidance of doubt, the theoretical explanations provided herein are provided for the purpose of enhancing the understanding of the reader, and the inventors do not wish to be bound by any of these theoretical explanations.
[0178] The section headings used herein are for organizational purposes only and are not to be construed as limiting the subject matter described.
[0179] Throughout this specification, including the claims that follow, unless the context otherwise requires, the words "comprises" and "comprises," and variations such as "comprises," "including," "comprising," etc., will be understood to mean the inclusion of stated integers or steps, or groups of integers or steps, but not the exclusion of other integers or steps, or groups of integers or steps.
[0180] It should be noted that, as used in this specification and the appended claims, the singular forms "a," "an," and "the" include the plural forms unless the context clearly dictates otherwise. Ranges may be expressed herein as from "about" one particular value and / or to "about" another particular value. When such a range is expressed, another embodiment includes from the one particular value and / or to the other particular value. Similarly, when values are expressed as approximations, by use of the antecedent "about," it is understood that the particular value forms another embodiment. The term "about" in reference to numerical values is optional and may mean, for example, + / - 10%.
Claims
1. A composition for inhibiting the proliferation of breast cancer cells, comprising: Reishi; Quercetin; Indian goose berry in powder form; Indole-3-carbinol; a tea plant extract consisting of a green tea extract containing polyphenol catechins; Garlic extract; Iodine; and selenium.
2. 10. The composition of claim 1 comprising: Reishi (Ganoderma lucidum mushroom) powder; Quercetin dihydrate; Indian goose berry (amla berry) powder; Indole-3-carbinol; a tea plant extract consisting of a green tea extract containing polyphenol catechins; Garlic extract; Iodine; and Selenium in one or more of sodium selenate, selenocysteine, or selenomethionine.
3. 10. The composition of claim 1 comprising: 150-450 mg of reishi (ganoderma lucidum mushroom) powder per dose; 200-400 mg of quercetin dihydrate per dose; 150-450 mg of Indian goose berry (amla berry) powder per dose; 150-300 mg of indole-3-carbinol per dose; 900 to 1800 mg per dose of a tea plant extract consisting of a green tea extract containing polyphenol catechins; 3000 mg of garlic extract per dose; 300-400 mcg of iodine per dose; and 60-120 mcg of selenium per dose.
4. The composition according to any one of claims 1 to 3, wherein the composition comprises a pharmaceutically acceptable carrier, excipient or diluent.
5. The composition according to any one of claims 1 to 3, wherein the composition is in the form of a liquid, a powder in a capsule, a sachet, or a gel.
6. The composition of any one of claims 1 to 3, wherein 95% of the quercetin is in the form of quercetin dihydrate.
7. The composition according to any one of claims 1 to 3, wherein the tea plant extract contains 95% polyphenol catechins.
8. 2. The composition of claim 1, wherein the tea plant is a green tea extract containing polyphenol catechins, and the selenium is one or more of selenomethionine, selenocysteine, or sodium selenate.
9. A composition used to protect breast cells from malignant changes and reduce the risk of developing breast cancer, comprising: Reishi powder; Quercetin, 95% of which is in the form of quercetin dihydrate; Indian gooseberry powder; Indole-3-carbinol; a tea plant extract consisting of a green tea extract containing polyphenol catechins; Garlic extract; Iodine; and selenium A composition comprising:
10. 10. The composition of claim 9 for daily use to soothe and protect breast tissue in women with dense breast tissue and fibrocystic breasts, comprising: Ganoderma lucidum powder in an amount of 300-450 mg per dose; quercetin, 95% of which is in the form of quercetin dihydrate, in an amount of 200-450 mg per dose; Indian gooseberry powder in an amount of 100-300 mg per dose; indole-3-carbinol in an amount of 150 to 300 mg per dose; tea plant extract in an amount of 900 mg to 1200 mg per dose; Garlic extract in an amount of 1000 to 3000 mg per dose; Iodine in an amount of 300-400 mcg per dose; and Selenium in amounts of 60-120 mcg per dose A composition comprising:
11. 11. Use of a composition according to claim 9 or 10 for women who are currently undergoing or have previously undergone hormone replacement therapy.
12. 10. A composition for use according to claim 9, to be administered daily to reduce the risk of developing breast cancer in women at risk for breast cancer resulting from at least one of BRAC1 and BRAC2 mutations, family history, and previous cancer history, comprising: Ganoderma lucidum powder in an amount of 300-450 mg per dose; quercetin, 95% of which is in the form of quercetin dihydrate, in an amount of 200-450 mg per dose; Indian gooseberry (amla berry) powder in an amount of 150-300 mg per dose; indole-3-carbinol in an amount of 150 to 300 mg per dose; tea plant extract in an amount of 900 mg to 1200 mg per dose; Garlic extract in an amount of 3000 mg per dose; Iodine in an amount of 300-400 mcg per dose; and Selenium in amounts of 60-120 mcg per dose A composition comprising:
13. The composition for use according to claim 12, wherein the composition is a powder in a bag.
14. The composition for use according to claim 12, wherein the composition is in the form of a gel or a liquid.
15. 10. A composition for use according to claim 9 for inhibiting breast cancer growth by administering a daily dose of the composition, 300-450 mg of Ganoderma lucidum powder per dose; 200-450 mg per dose of quercetin, 95% of which is in the form of quercetin dihydrate; 150-300 mg of Indian gooseberry powder per dose; 150-300 mg of indole-3-carbinol per dose; 900 mg to 1200 mg of tea plant extract per dose; Approximately 3000 mg of garlic extract per dose; 300-400 mcg of iodine per dose; 60-120 mcg of selenium per dose A composition comprising:
16. 16. The composition for use according to claim 15, wherein the composition is in the form of one of a powder, a gel, or a liquid in a capsule or sachet, and further comprises at least one of a pharmaceutically acceptable carrier, excipient, diluent, colorant, and flavoring agent.
Citation Information
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