Cancer refers to any one of a large number of disease characterized by the development of abnormal cells that divide uncontrollably malignant cells which have the ability to infiltrate & destroy normal body tissue. Scientists link elephants' high resistance to cancer to their 20 copies of the p53 gene – the 'guardian of the genome' – compared with the single p53 gene found in other mammals. Cancer often has the ability to spread throughout your body. Cancer is the second-leading cause of death in the world.
Some cancer cells feed of Methionine C5H11NO2S although it is an essential amino acid found in meat, fish, and dairy products. Amino acids are the building blocks used to make proteins. Methionine cannot be made by the body, so it must be consumed in the diet. It plays an important role in the many function within the body. Many cancer cells exhibit a "methionine addiction" (or the Hoffmann effect), requiring high level of the amino acid methionine for rapid growth, while normal cells can survive without methionine . Restricting methionine, often through specialized diets, can slow tumor growth, induce cell cycle arrest Key Aspects of Methionine in Cancer Tumor Dependence: Many malignancies, including breast, prostate, colon, and skin cancers, cannot grow without exogenous methionine, making them highly sensitive to its deprivation. Mechanism of Action: Methionine is crucial for producing S-adenosylmethionine (SAM), which is necessary for cancer cell metabolism, methylation processes, and growth. Dietary Restriction: Studies show that limiting methionine intake can lead to increased cancer cell death (apoptosis) and reduce tumor burden in animal models. Immune System Consideration: While Methionine restriction hampers cancer cells, it may also affect the function of immune cells (like T cells) in the tumor microenvironment. Clinical trials are exploring the use of methionine restriction, often combined with traditional therapies, to target this metabolic weakness in cancer. Methionine restriction (MR) is a powerful dietary strategy that involve limiting the intake of the sulfur-containing essential amino acid methionine. While most nutrients are sought in abundance, cutting back on methionine is one of the few proven way to significantly extend lifespan & improve metabolic health in mammals.
1. How Methionine Restriction Works Because methionine is the "start" amino acid for almost every protein assembled in your ribosomes, restricting it forces the cell into a "maintenance & repair" mode rather than a "growth" mode.
FOXO Activation: Methionine Restriction reduce the activity of the IGF-1 & mTOR pathway. This allow the FOXO3 gene to move into the nucleus & activate DNA repair (via the MRN complex) & antioxidant production. Hydrogen Sulfide (H2s) Production: Paradoxically, when you eat less methionine, your body increases the production of hydrogen sulfide (H2S). As we discussed, this gas acts as a "longevity signal" that protect the heart & brain from oxidative stress. Mitochondrial Efficiency: Methionine Restriction reduce the production of Reactive Oxygen Species (ROS) in the mitochondria, which prevent the "burning" of your DNA assembly instructions. 2. Impact on Protein Folding and Glycation Autophagy: Methionine Restriction triggers "self-eating" (autophagy), where the cell identify & destroy misfolded protein glycation damage before they can form toxic clumps. Proteostasis: Methionine Restriction improves the "quality control" of the ribosomes, ensuring that new protein are folded correctly the first time. 3. Longevity Result in Research In laboratory study, methionine restriction has produced some of the most dramatic "Methuselah" effect: Mice: Restricting methionine by 80% can increase lifespan by 30% to 45%.
Cancer: Many cancer cells are "methionine dependent" (the Hoffman Effect). They cannot grow without high level of this amino acid, so MR is being studied as a way to "starve" tumors while keeping healthy stem cells alive.
While healthy cells can recycle methionine from other molecules (like homocysteine), cancer cells often lose this ability & cannot divide without a constant supply from the blood.
Methioninase (also known as L-methionine -lyase or MGL) is an enzyme that specifically breaks down the amino acid methionine into
-ketobutyrate, ammonia, and methanethiol. While essential for many organisms, this enzyme is not found in humans nor other mammals. It is being developed as a "metabolic weapon" in cancer therapy to exploit a vulnerability known as the Hoffman effect. 1. Cancer’s "Methionine Addiction"
Most cancer cells have an absolute "addiction" to external Methionine C5H11NO2S . While healthy cells can recycle methionine from other molecules (like homocysteine), cancer cells often lose this ability & cannot divide without a constant supply from the blood. Targeted Starvation: By administering methioninase, doctors can "starve" tumors of this essential fuel while leaving normal cells relatively unharmed. 2. Clinical Application in Cancer Methioninase is currently being tested in various form to treat advanced or treatment-resistant cancer:
Recombinant Methioninase (rMETase): A laboratory-produced version of the bacterial enzyme (often from Pseudomonas putida). Oral Administration: A major breakthrough in 2018 showed that rMETase can be effective when taken orally, which is easier for patient than intravenous drips. Synergy with Chemotherapy: Methioninase "traps" cancer cells in a specific part of the cell cycle (S/G2 phase), making them up to 1,000 times more sensitive to standard chemotherapy drugs like 5-fluorouracil or cisplatin. Success Stories: Early clinical report have shown success in treating metastatic pancreatic, breast & prostate cancer when combined with a low-methionine diet.
3. Mechanism of Action When methioninase deplete methionine, it trigger a "methionine-depletion catastrophe" in cancer cells: Epigenetic Collapse: It lower level of SAM (S-adenosylmethionine), causing the cell's "epigenetic tags" to fail shutting down gene expression. Mitochondrial Dysfunction: It forces the cell to use up its glutathione & ATP, leading to a surge in oxidative stress & mitochondrial "meltdown". Apoptosis: The cancer cell identifies itself as broken and undergoes programmed cell death. 4. Non-Medical Application Because methioninase break down sulfur-containing amino acids, it has unique use outside the clinic: Food Science: It is used in the cheese industry to produce the specific volatile sulfur compound that give fermented food their characteristic aroma. Biosensors: It can be used in gold-based sensors to detect environmental pollutants or specific gas.
Cancer is a group of diseases involving abnormal cell growth with the potential to invade or spread to other parts of the body. These contrast with benign tumors, which do not spread. Possible signs and symptoms include a lump, abnormal bleeding, prolonged cough, unexplained weight loss, and a change in bowel movements. While these symptoms may indicate cancer, they can also have other causes. Over 100 type of cancer affect humans. Tobacco use is the cause of about 22% of cancer deaths. Another 10% are due to obesity, poor diet, lack of physical activity or excessive alcohol consumption. Other factors include certain infections, exposure to ionizing radiation, and environmental pollutants. Infection with specific viruses, bacteria and parasites is an environmental factor causing approximately 16-18% of cancer worldwide. These infectious agents include Helicobacter pylori, hepatitis B, hepatitis C, human papillomavirus infection, Epstein–Barr virus, Human T-lymphotropic virus 1, Kaposi's sarcoma-associated herpesvirus and Merkel cell polyomavirus. Human immunodeficiency virus (HIV) does not directly cause cancer but it causes immune deficiency that can magnify the risk due to other infection, sometimes up to several thousand fold (in the case of Kaposi's sarcoma). Importantly, vaccination against hepatitis B and human papillomavirus have been shown to nearly eliminate risk of cancer caused by these viruses in persons successfully vaccinated prior to infection. These environmental factors act, at least partly, by changing the genes of a cell. Typically, many genetic changes are required before cancer develops. Approximately 5–10% of cancers are due to inherited genetic defects. Cancer can be detected by certain signs and symptoms or screening tests. It is then typically further investigated by medical imaging and confirmed by biopsy. The risk of developing certain cancer can be reduced by not smoking, maintaining a healthy weight, no alcohol intake, eating plenty of vegetables, supplements , and whole grains, also ingesting gastroliths vaccination against infectious disease, limiting consumption of processed meat and reducing a high carb diet , and getting exposure to direct sunlight.
Joe Tippens survived stage 4 lung caner research his amazing survivor story on A.i & YouTube Amazing miracle drug Panacur Fenbendazole is one of many cancer cures order from zecoya.com . Panacur works by 3 ways 1 it stop cancer cell form metabolizing sugar 2 Panacur break the microtubules in the cancer cells it turns out parasites & cancer cells have a similar microtubule cell structure 3 Fenbendazole increases TP53 The TP53 gene which provide instruction for making a protein called tumor protein Tp53. This protein act as a tumor suppressor, which means that it regulate cell division by keeping cells from growing & dividing (proliferating) too fast or in an uncontrolled way. “Let food be thy medicine, and let medicine be thy food.” Hippocrates 460BC Let supplements be thy medicine & let medicine be thy supplement spend at least $1000 on fenbendazole to completely cure cancer. You have to take the right treatment panacur.
Early detection through screening is useful for cervical & colorectal cancer. The benefits of screening for breast cancer are controversial. Cancer is often treated with some combination of radiation therapy, surgery, chemotherapy & targeted therapy. Pain & symptom management are an important part of care. Palliative care is particularly important in people with advanced disease. The chance of survival depends on the type of cancer & extent of disease at the start of treatment. In children under 15 at diagnosis, the five-year survival rate in the developed world is on average 80%. For cancer in the United States, the average five-year survival rate is 66% for all ages. In 2015, about 90.5 million people worldwide had cancer. In 2019, annual cancer cases grew by 23.6 million people & there were 10 million deaths worldwide, representing over the previous decade increase of 26% & 21%, respectively. The most common type of cancer in males are lung cancer, prostate cancer, colorectal cancer & stomach cancer. Panacur the canine dewormer is known to cure all cancer. In females, the most common type are breast cancer, colorectal cancer, lung cancer & cervical cancer. If skin cancer other than melanoma were included in total new cancer cases each year, it would account for around 40% of cases. In children, acute lymphoblastic leukemia and brain tumors are most common, except in Africa, where non-Hodgkin lymphoma occurs more often. In 2012, about 165,000 children under 15 years of age were diagnosed with cancer. The risk of cancer increases significantly with age & many cancer occur more commonly in developed countries. Rates are increasing as more people consume high amounts of sugar in developed countries to an old age & as lifestyle changes and high glucose intake occur in the developing world. Cancer feed on sugar a diet high in carbs also feed cancer the best prevention is to quit high carb diet & sugar also start supplementing .
The global total economic costs of cancer were estimated at US$1.16 trillion (equivalent to $1.62 trillion in 2023) per year as of 2010. Cowpea mosaic plant virus is known to cure cancer. NYU is transforming cancer treatment with histotripsy, a non-invasive method using focused ultrasound to target liver tumors effectively. several species are known to be extremely cancer resistant. These include the naked mole rat, blind mole rat, elephant and bowhead whale. The age of onset of cancer also varies greatly depending on the lifespan thus, animals have God given efficient mechanisms such as hyaluronic acid to delay the onset of tumors until postreproductive age. The BRCA genes are tumor suppressor genes that normally prevent cancer. They control cell growth and division and help repair damage to DNA. But mutated BRCA genes can increase the risk of developing certain type of cancer. There are 2 BRCA gene mutation that are known to cause cancer – BRCA1 and BRCA2. Background Species such as crocodiles and cockroaches can withstand high radiation, reside in unsanitary condition, thrive on germ-infested feed, and when exposed to heavy metals, yet they are not reported to develop cancer. Research also found that compared to other mammals, bat genomes contain more changes in cancer-fighting genes, including six that repair DNA and 46 that suppress tumors. Over 90% of cancer are observed to have some type of genetic alteration. Some of these alterations are inherited, while others are caused by high sugar intake cancer cells have insulin receptors. Early (preclinical) study showed some cancer cells can't use ketones as energy. So, changing the diet to supplement with ketones high in High Density Lipoprotein fat and low in carbohydrate will lower glucose levels & starve cancer cells. Normal body cells adapt and can use ketones to survive. Cancer remains the leading cause of death in Canada. An estimated 2 in 5 Canadians will be diagnosed with cancer in their lifetime and about 1 in 4 will die from cancer. In 2021, an estimated 229 200 Canadians will be diagnosed with cancer and 84 600 will die from cancer. What type of cancer does alcohol cause? Drinking alcohol causes 7 different type of cancer. This includes: Breast cancer and bowel cancer (two of the most common type) glucose fermentation happen in a no oxygen environment ketone supplements are not fermentable cancer cells use the fermentation of glucose & glutamine to grow ~ supplements such as iodine , Hyaluronic acid , k9 dewormers and sulforaphane can fight cancer if you have cancer try cutting down on sugar professor Robert Lustig explains it best on youtube sugar feed cancer because cancer cells have insulin receptors so decrease your sugar intake to zero don't drink sugar at all increase your mineral intake and decrease your carbs intake because carbs turn to sugar in the liver ,damage in respiration defect in mitochondria function cause cells to adopt glycolysis and increase glucose consumption cancer lactic acid is a byproduct of cancer cells positron emission tomography reveals how cancer consumes high amounts of glucose in the body Scientist Thomas N. Seyfried professor of biology said it best cancer is a metabolic disease of too much sugar Thomas Seyfried, a professor of biology at Boston College, explains that cancer is increasingly prevalent, with over 600,000 people dying annually in the U.S. traditionally viewed as a genetic disease, Seyfried argues that cancer is primarily a mitochondrial metabolic disease research show that cancer cells rely on fermentation for energy, specifically glucose and the amino acid glutamine, which in high dose damage mitochondria. Seyfried advocates for metabolic therapies, including calorie restriction, ketogenic diets, and targeted drugs, to starve cancer cells of their fuel, offering a promising alternative to current treatment. Dan Hollis, coroner for Silver Bow County, confirmed the form of skin cancer as Blackstock's cause of death to Entertainment Weekly; the manner of death was listed as natural. Blackstock, who died on Aug. 7 at the age of 48, passed peacefully surrounded by family at his home in Butte, Mont
GGT targeting: Because many cancer have high GGT level on their surface to steal cysteine from the blood, researchers are developing GGT-inhibitors to "lock" the cancer out of its antioxidant supply .Why GGT Inhibition is a "Holy Grail" Inhibiting GGT effectively "starves" cancer cells by cutting off their access to extracellular cysteine. This causes a crash in their glutathione levels, making them up to 1,000 times more vulnerable to standard chemotherapy drugs like Cisplatin Cl2H6N2Pt . GGT-Inhibitor GGsTop C13H18NO7P . EVT0185 C22H34O
The chemical formula for IDE397 (also known as GSK4362676), a potent and selective inhibitor of the MAT2A enzyme, is: C14H8Cl F3N4O Molecular Breakdown IDE397 is a small-molecule therapeutic designed for "synthetic lethality" in MTAP-deleted cancer. Its formula represent the following atomic composition: 14 Carbon atoms: Forming the core pyrido[2,3-d] pyrimidin-2-one ring system & an attached chlorophenyl group. 8 Hydrogen atoms. 1 Chlorine atom: Located on the phenyl ring (2-chlorophenyl). 3 Fluorine atoms: Part of a trifluoromethyl CF3 group at the 7-position of the pyrido-pyrimidine core. 4 Nitrogen atoms: Distributed within the heterocyclic rings & an amino NH2 group at the 4-position. 1 Oxygen atom: Present as a carbonyl O group in the pyrimidinone ring. Physicochemical Property Property Value Molecular Weight IUPAC Name 4-amino-1-(2-chlorophenyl)-7-(trifluoromethyl)pyrido[2, 3-d]pyrimidin-2(1H)-one
CAS Number 2439277-80-0 Solubility Soluble in DMSO (up to 18mg/mL Mechanism of Action As discussed previously regarding met enzymes, IDE397 bind to and inhibit MAT2A. This prevent the production of S-adenosylmethionine (SAM), effectively "starving" cancer cells that lack the MTAP gene & are therefore addicted to external methionine for their DNA methylation & growth needs.
Cancer is put to remission when you stop eating sugar methionine & glutamine & eliminate high carbs off your diet , follow the Joe Tippens protocol as many cancer survivors have supplement with Fenbendazole & MsM supplements in high dose also take Nature's Plus 72 trace minerals of vitacost.com which equip natural Killer cells with cancer fighting ligand receptors, so cancer patients must ingest 4mg iodine daily to boost natural killer & T cells which drop with age also take Astaxanthin C40H52O4 supplement which is a PdL 1 & PdL2 blocker permitting natural killer cells to destroy cancer cells for there are 4 iodine atoms in T4 cells & 3 iodine atoms in T3 cells so to be healed of cancer supplement with minerals which are way underrated don't make the mistake of undermining minerals which build healthy stem cells, take all these precious supplements with fresh drinks of hard chlorinated water Mechanism of Action As discussed previously regarding met enzymes, IDE397 bind to and inhibit MAT2A. This prevent the production of S-adenosylmethionine (SAM), effectively "starving" cancer cells that lack the MTAP gene & are therefore addicted to external methionine for their DNA methylation & growth needs . Because cancer is a collapse of the immune system you need to quit Methionine Glutamine Sugar & Carbs don't eat a high carb diet don't even eat desert ! May the Holy Roman Catholic Church supplement with Fenbendazole , MsM & 72 Trace Minerals of Nature's Plus be blessed by God the Father God the Son & God the Holy Spirit Hallelujah Hallelujah Blessed be the word of the Lord for Christ is risen Hallelujah Hallelujah peace be still in Nomine Patris et FiLii et Spiritus Sancti amen
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UCSD unearths new cancer treatment
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ICIs: Key to Surviving Cancer - Medical Frontiers
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Could this new ultrasound change the way cancer is treated? - BBC News
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Thomas N. Seyfried - Cancer as a Metabolic Disease
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"Cancer Stem Cells: Are We Targeting the Right Cells?" with Max S. Wicha, MD - May 21, 2014
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Methylation and Cancer - メチル化と癌 Prof. Hoffman (AntiCAncer Inc and UCSD)
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Cancer cells are addicted to this amino acid
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Communication of tumour cells with the microenvironment
Candida is a horrible fungus that feeds on sugar there are several non prescription supplements to get rid of Candida the best is quiting sugar consumption altogether & replacing sugar with cement concrete & charcoal for all the minerals within copper & Hydrogen Peroxide do a really good job killing off candida bacteria; drink caprylic acid, hydrogen peroxide, Fluorine & Chlorinated water an environment in which fungus virus & bacteria cannot grow high PH environment & copper kills candida the strongest candida killers are generally recognized to be antifungal drugs, such as fluconazole (brand name Diflucan C13H12F2N6O ), nystatin C47H75NO17, and clotrimazole C22H17ClN2 . Carbon from charcoal kills Candida i took no medicine but a high dose 3 kg of Charcoal smoothies for 3 weeks Candida has decreased by about 40% but i was still drinking sugar which feed candida i stopped drinking pop on Thursday May 1 2025 AD Anno Domini in the year of our LORD Jesus Christ since started ingesting gastroliths it has reduce my candida in 3 months to 95% gone sugar was the big culprit i was drinking 2 litters of pop a day all that horrible sugar was feeding the candida i completely changed my diet stopped drinking pop altogether now i drink cement gastroliths & charcoal, concrete & charcoal diet is the key cure to candida don't drink sugar
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Candida: The Invisible Disease of 21st Century (A Documentary)
KRAS mutation are present in about 40–45% of Colon Cancer cases. Vitamin c targets KRAS, to cure colon cancer take supplements such as Hydrogen Peroxide Vitamin C & Nitric Oxide & have a Hydrogen water bottle specially cut down on sugar & carbs don't drink sugar don't eat so much carbs eat meat & minerals and take probiotics filamentous bacteria
Coronavirus disease 2019 (COVID-19) is a contagious disease caused by the coronavirus SARS-CoV-2. The first known case was identified in Wuhan, China, in December 2019. Most scientists believe the SARS-CoV-2 virus entered into human populations through natural zoonosis, similar to the SARS-CoV-1 and MERS-CoV outbreaks, and consistent with other pandemics in human history. Social and environmental factors including climate change, natural ecosystem destruction and wildlife trade increased the likelihood of such zoonotic spillover. The disease quickly spread worldwide, resulting in the COVID-19 pandemic. The symptoms of COVID‑19 are variable but often include fever, fatigue, cough, breathing difficulties, loss of smell, and loss of taste. Symptoms may begin one to fourteen days after exposure to the virus. At least a third of people who are infected do not develop noticeable symptoms. Of those who develop symptoms noticeable enough to be classified as patients, most (81%) develop mild to moderate symptoms (up to mild pneumonia), while 14% develop severe symptoms (dyspnea, hypoxia, or more than 50% lung involvement on imaging), and 5% develop critical symptoms (respiratory failure, shock, or multiorgan dysfunction). Older people are at a higher risk of developing severe symptoms. Some complications result in death. Some people continue to experience a range of effects (long COVID) for months or years after infection, and damage to organs has been observed. Multi-year studies are underway to further investigate the long-term effects of the disease. COVID‑19 transmission occurs when infectious particles are breathed in or come into contact with the eyes, nose, or mouth. The risk is highest when people are in close proximity, but small airborne particles containing the virus can remain suspended in the air and travel over longer distances, particularly indoors. Transmission can also occur when people touch their eyes, nose or mouth after touching surfaces or objects that have been contaminated by the virus. People remain contagious for up to 20 days and can spread the virus even if they do not develop symptoms. Testing methods for COVID-19 to detect the virus's nucleic acid include real-time reverse transcription polymerase chain reaction (RT‑PCR), transcription-mediated amplification, and reverse transcription loop-mediated isothermal amplification (RT‑LAMP) from a nasopharyngeal swab. Several COVID-19 vaccines have been approved and distributed in various countries, many of which have initiated mass vaccination campaigns. Other preventive measures include physical or social distancing, quarantining, ventilation of indoor spaces, use of face masks or coverings in public, covering coughs and sneezes, hand washing, and keeping unwashed hands away from the face. While drugs have been developed to inhibit the virus, the primary treatment is still symptomatic, managing the disease through supportive care, isolation, and experimental measures. Viral "Hijacking" Certain virus, such as Coronavirus (SARS-CoV-2), HIV & Herpes, target the nucleolus. These virus "sequestrate" nucleolar protein to help replicate the viral genome. This interaction often cause the nucleolus to swell or change shape as it become a site for viral assembly.
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COVID-19 Animation: What Happens If You Get Coronavirus?