Why Detox from Heavy Metals?
Heavy metals can be harmful even in low concentrations because they interfere with many normal metabolic processes within the body. Over time, excessive exposure has been associated with problems affecting the brain, nerves, muscles, liver, kidneys, endocrine system, and may contribute to the development of certain cancers. Common toxic metals include aluminum, arsenic, cadmium, lead, mercury, nickel, and uranium. Fortunately, not all metals are harmful. Essential minerals such as calcium, magnesium, potassium, iron, copper, manganese, and zinc are vital for good health and must be maintained at normal levels.
Any time you take any metal detoxing agent (also called a binder), it is generally best to take any toxin or metal binder about 1 hour before eating or wait 1 to 2 hours after you have eaten or taken any supplements to permit those supplements or food to be absorbed. Consuming a detoxing agent/toxin binder too close to taking supplements or food can upset and reduce their absorption and decrease the binders effectiveness. It is important to use only one of these detoxing products at a time so as not to strip your system of essential metals, electrolytes and minerals. Then allow your body about 4 to 5 days for your body to replenish essentials metals before repeating the detox or rotating to another product. Always follow the directions provided with each product, since some detoxifying agents may be taken daily or with food. The following video explains these guidelines in greater detail. https://www.youtube.com/watch?v=FooV6uyJntY https://www.youtube.com/watch?v=ZjrhgAhIGp4&ab_channel=FelixHarder
Many researchers believe that heavy metals, environmental toxins, parasites, microplastics, and other chemical exposures can interfere with normal cellular metabolism and mitochondrial function. Some of these exposures have been associated with adverse health effects and may interfere with normal cellular or mitochondrial processes, although the evidence and mechanisms vary considerably depending on the substance.
They come from many sources, including drinking water, processed foods, medications, pesticides, herbicides, air pollution, household and workplace chemicals, and nutrient-depleted soils.
1. EDTA (first synthesized in 1935) is a chelating agent that binds to certain heavy metals so they can be removed from the body. The form most commonly used for oral supplementation is calcium disodium EDTA (ethylenediaminetetraacetic acid). For oral use, many practitioners prefer the liquid microsomal calcium EDTA because it is absorbed much more efficiently than standard oral EDTA formulations. Take 500 mg of liquid microsomal calcium EDTA orally in the evening before bedtime.
Some protocols combine oral calcium disodium EDTA with vitamin C. Because high-dose vitamin C can cause adverse effects and may not be appropriate for everyone, particularly at doses above the established adult upper intake level of 2,000 mg per day, higher amounts should be discussed with a qualified healthcare provider. The following morning, consider taking a high-quality multivitamin with minerals to help replenish essential nutrients.
This protocol may be used as directed by your healthcare provider. Allowing time between treatments helps your body restore important minerals that EDTA may also bind to, including calcium, magnesium, potassium, iron, copper, manganese, and zinc. Replacing these essential minerals with a quality multivitamin and mineral supplement is important. EDTA can also be administered intravenously (IV) in certain physician-supervised clinics, although many people choose the oral form. Get EDTA here: https://thedrardisshow.com/nature-wins-edta-2oz/
2. Other Nutrients and Practices to Consider Also consider discussing some of the following nutrients, foods, supplements, and practices with your healthcare provider during a detox program: Ashwagandha, vitamin E, selenium, NAC (N-acetylcysteine), glutathione, chlorella, cilantro, spirulina, milk thistle, ginger, zinc, and sweating through exercise or sauna use.
If you take blood-thinning medications or other prescription medications, check with your healthcare provider before adding supplements because some may interact with medications.
The following video provides a practical overview of EDTA, how it works, and important safety considerations before using it.
3. Calcium-based bentonite clay is generally alkaline, with reported pH values commonly ranging from approximately 8.5 to 10.6, depending on its source, mineral composition, and method of measurement. It is the preferred form by most practitioners for internal use over sodium bentonite clay. Bentonite clay has also been investigated for its potential role in supporting digestive health, including symptoms associated with IBS-D (irritable bowel syndrome with diarrhea). Typically, one would start with ½ to 1 teaspoon mixed in water per day. It is important to drink plenty of water while using bentonite clay to help maintain normal bowel function and hydration. Take bentonite clay at least 2 to 3 hours before or after medications or nutritional supplements. This helps reduce the chance that the clay will bind to them and decrease their absorption.
https://www.bentoniteclayinfo.com/
The following video by Dr. Josh Axe provides an excellent overview of bentonite clay, its potential uses, and important safety considerations.
https://www.youtube.com/watch?v=H0Ziz3xqoe0&t=687s&ab_channel=Dr.JoshAxe
The following podcast features Perry A. Arledge, author of Living Clay, discussing bentonite clay and its traditional uses.
https://www.bentoniteclayinfo.com/clay_info/q_and_a/2016/qanda_021116b.mp3
https://bentoniteclayinfo.wordpress.com/page/2/
Search Perry Arledge and her book “Living Clay”.
4. Baking Soda (sodium bicarbonate) has been studied for several health applications and is sometimes included in detoxification protocols. Baking soda can temporarily reduce acidity in the stomach and has been studied for its effects on acid-base balance in the body. In cancer research, sodium bicarbonate has also been studied for its potential to reduce acidity in the tumor microenvironment, creating conditions that may be less favorable for cancer growth, invasion, and metastasis. Much of this research has been laboratory and animal research. See Chapter 4 for more.
5. DMSA (meso-2-3-dimercaptosuccinic acid) contains sulfhydryl, a water-soluble, orally administered metal chelator (metal remover) that has been in use as an antidote for lead poisoning since the 1950s. Research supports the use of DMSA as an effective oral chelating agent for certain heavy metals, particularly mercury and lead. It has also been studied for its ability to help remove other toxic metals under appropriate medical supervision. DMSA’s water-solubility, oral dosing, large therapeutic window and low toxicity make it the chelator of choice for many applications. About 20 percent of orally administered DMSA is absorbed from the gastrointestinal tract. It is believed that one sulfhydryl in DMSA binds to a cysteine molecule on albumin, leaving the other sulfhydryl to chelate (remove) metals.
The following dosage regimen for DMSA has been described in conventional medical references: approximately 10 mg for every 2.2 pounds of body weight every eight hours for five days, followed by the same dose every 12 hours for an additional 14 days. For example, using this formula, a 150-pound individual calculates to approximately 680 mg per dose. DMSA dosing may vary depending on the specific heavy metal involved, the degree of exposure, and individual medical circumstances. Because DMSA is a chelating medication that can cause side effects and may require laboratory monitoring, its use and appropriate dosage should be discussed with a qualified healthcare provider. https://www.evenbetterhealth.com/order_hair_analysis.php
A heavy metal hair analysis can provide a baseline measurement before beginning a detoxification program and can be repeated later to monitor changes. However, testing is optional and is not required before starting a detox program. For a more detailed discussion of DMSA, including dosage information, mechanisms of action, and safety considerations, I highly recommend the following reference.
https://www.warddeanmd.com/dmsa-and-detoxing-heavy-metals/
DMSA Product Source https://northernhealthproducts.com/product/dmsa-45-capsules/
For additional information about heavy metal toxicity and treatment options, see the following resource. https://www.evenbetterhealth.com/heavy-metal-poisoning-treatment.phphttps://www.evenbetterhealth.com/FAQs-Hair-Tissue-Analysis.php
https://www.warddeanmd.com/dmsa-and-detoxing-heavy-metals/
BUY DMSA HERE: https://northernhealthproducts.com/product/dmsa-45-capsules/
For additional information about heavy metal toxicity and treatment options, see the following resource. https://www.evenbetterhealth.com/heavy-metal-poisoning-treatment.phphttps://
www.evenbetterhealth.com/FAQs-Hair-Tissue-Analysis.php
6. Glutathione is the body’s primary intracellular antioxidant and plays a central role in helping detoxify harmful substances, including certain toxic metals and environmental chemicals. When glutathione levels are low, the body’s ability to neutralize and eliminate toxins from both the environment and normal cellular metabolism may be reduced. Low glutathione levels may also reduce the body’s ability to protect cells from oxidative stress. Maintaining healthy glutathione levels is considered an important part of supporting the body’s natural detoxification processes.
https://glutathioneforhealth.wordpress.com/2011/12/24/low-glutathione-levels/
Glutathione can be difficult to absorb effectively when taken as a conventional oral supplement because it may be broken down during digestion. Liposomal glutathione is enclosed in microscopic lipid (fat) particles designed to help protect it during digestion and improve its absorption. Another approach is to provide the body with nutrients it uses to produce its own glutathione. Supplements such as NAC (N-acetylcysteine) and glycine provide important building blocks used in glutathione production.
Glutathione is often called the body’s “master antioxidant” because it plays such an important role in protecting cells from oxidative stress and supporting the body’s natural detoxification processes. Low glutathione levels have been associated with many chronic illnesses, although it is not always clear whether they are a cause or a consequence of disease. For cancer patients, maintaining healthy glutathione levels may help support normal cellular metabolic function. As with every supplement discussed on this website, consider it as one part of an overall strategy to improve metabolic health rather than as a stand-alone solution.
https://www.quicksilverscientific.com/pages/detoxification https://www.quicksilverscientific.com/products/glutathione?_pos=28&_fid=0256ffd25&_ss=c
Zeolite is a naturally occurring mineral with a porous structure that allows it to attract and bind certain substances, including some heavy metals and other contaminants. Because of these binding properties, zeolite has generated interest as a potential aid in reducing exposure to or absorption of certain unwanted substances. Zeolites are also widely used in water filtration and environmental applications because of their ability to capture specific ions and contaminants.
Zeolite has generated considerable interest because of its unique ability to bind certain substances. While laboratory and some early human studies suggest that certain forms of zeolite may have potential health applications, more high-quality human research is needed to fully understand their benefits, safety, and limitations. If you choose to use zeolite, consider it as one tool that may help reduce exposure to certain unwanted substances while continuing to focus on good nutrition, hydration, and healthy lifestyle habits.
https://www.zeolitelabs.com
This is a brand I trust and recommend. Their complete story is found here. They offer much more than the liquid versions because of the actual quantity of zeolite contained in each dose. That quantity is directly related to the amounts of heavy metals and toxins that are removed from the body. https://www.zeolitelabs.com/education
Modified Citrus Pectin (MCP) is a specially processed form of citrus pectin with a lower molecular weight and altered structure that allows it to be absorbed more readily than ordinary citrus pectin. It has been studied for its potential role in supporting healthy cellular function, detoxification, and the body’s natural immune response.
One of the most researched forms of MCP is PectaSol® Modified Citrus Pectin, which has been the subject of numerous published scientific studies. Researchers have investigated its ability to bind and assist in the removal of certain heavy metals, including lead, mercury, and arsenic, while helping preserve essential minerals.
PectaSol has also received considerable attention for its interaction with Galectin-3, a protein involved in inflammation, fibrosis (scar tissue formation), and several chronic diseases, including cancer. Elevated Galectin-3 levels have been associated with cancer progression and other inflammatory conditions. Studies suggest that Modified Citrus Pectin may help influence Galectin-3 activity, making it an area of ongoing research in both cancer and cardiovascular disease. Although research continues, I believe it deserves consideration as part of a comprehensive approach to improving overall metabolic health. As always, continue evaluating the evidence and discuss new supplements with your healthcare provider.
In addition, researchers have investigated Modified Citrus Pectin for its potential to:
If you choose to take Modified Citrus Pectin, many practitioners recommend taking it 1 to 2 hours away from medications and other supplements to avoid interfering with their absorption.
Additional Resources
Video https://www.youtube.com/watch?v=yXJrdMleEIo&ab_channel=GordonMedicalAssociates PectaSol® Modified Citrus Pectin https://econugenics.com/collections/pectasol
9. This is Joe Tippens Cancer Protocol below is included here as an add on. https://www.onedaymd.com/2024/04/fenbendazole-joe-tippens-protocol.html
If you want Mebendazole get it here: https://www.alldaychemist.com/mebex-100mg.html If you want to use Fenbendazole get it here https://fenbenlab.com/product/fenbendazole-capsules-222mg/ or here https://shopbplife.com/collections/fenbendazole-powder Dosage 222 mg 2 to 3 times per day. Panacur, Pancur, Panacur C and Safe-Guard are the Brand Names of the MERCK product. Or you can obtain the easy to use liquid form of Fenbendazole at https://www.valleyvet.com/ct_detail.html?pgguid=30e0766b-7b6a-11d5-a192-00b0d0204ae5
10. SPECIAL PARASITE DETOX PROTOCOL from Dr. Lee Merritt
Dr. Lee Merritt uses Fenbendazole and Nitazoxanide on a specific timed schedule. Work with your physician if you are interested in this protocol. Both are easily acquired. START at the 19 minute mark in the video below.
https://rumble.com/v1owcgh-parasites-a-new-paradigm.html?e9s=src_v1_ucp
Fenbendazole from https://www.valleyvet.com/ct_detail.html?pgguid=30e0766b-7b6a-11d5-a192-00b0d0204ae5 or at https://fenbenlab.com/shop/
Nitazoxanide (Nizonide) from https://www.alldaychemist.com//catalogsearch/result/?q=Nizonide In USA to Phone Order 1(855) 840-0584. They have always been reliable.
Herxheimer effects during detox are die-off reactions like gas, bloating, diarrhea, headache and nausea. If these symptoms become significant, consider slowing or temporarily stopping the protocol and increasing hydration. Discuss persistent or severe symptoms with your healthcare provider. Your body needs time to get rid of the toxins being released into your system. Toxins leave your body primarily through the urine and stool. Increase fluids to promote the detoxing process.
11. Methylene Blue (MB)
What is Methylene Blue? Methylene Blue (MB) is one of the oldest synthetic dyes still used in modern medicine. It was first synthesized in 1876 by German chemist Heinrich Caro and has been used for laboratory staining, the treatment of methemoglobinemia, certain infections, and other medical applications. MB is available in industrial, chemical, and pharmaceutical grades. Only pharmaceutical-grade Methylene Blue should ever be used internally for human use.
IMPORTANT Warning! If you are taking any type of anti-depressant like an SSRI or SNRI like Zoloft, or others on this list https://www.whatmedicine.org/2023/10/the-most-common-antidepressants.html DO NOT use Methylene Blue!! Contact your physician first. See the 2 LINKS below for clean sources of MB. Combining these medications may result in a serious condition called serotonin syndrome.
Why has it been included here?
Methylene Blue has attracted research interest because of its effects on mitochondrial function. Mitochondria are the energy-producing structures within our cells that generate ATP, the primary form of usable cellular energy. Laboratory and experimental studies suggest that Methylene Blue may interact with the mitochondrial electron transport chain and, under certain conditions, may help support mitochondrial energy production and reduce oxidative stress. Research into these potential applications is continuing.
Nitric oxide (NO) is a signaling molecule naturally produced by the body. In appropriate amounts, it plays important roles in regulating blood flow, immune function, nerve signaling, and wound healing. However, excessive or prolonged nitric oxide production under certain conditions can contribute to cellular stress and mitochondrial dysfunction. Nitric oxide can also react with other molecules, particularly superoxide, to form peroxynitrite, a highly reactive compound capable of damaging proteins, lipids, DNA, and mitochondria. Therefore, the biological effects of nitric oxide depend greatly on its concentration, location, duration, and the conditions within the surrounding cells and tissues.
The reason for concerning ourselves with mitochondrial health is to support the normal function and metabolism of cells throughout the body by maintaining adequate ATP (energy) production. Healthy mitochondria help cells use nutrients from the foods we eat to produce the energy needed to perform their many functions. Excessive oxidative stress and free-radical damage can injure mitochondria, proteins, lipids, and DNA and have been associated with the development and progression of many chronic diseases, including some cancers.
Cells require energy to grow, repair themselves, communicate, and produce new cells through normal cell division. Different specialized cells form tissues, produce hormones and enzymes, transport O2 and CO2, transmit signals throughout the body, and carry out the countless chemical reactions necessary to sustain life.
Methylene Blue vs Cancer
Normal cells use (oxidize/burn) glucose (sugar) in their mitochondria (energy producers) to make ATP (energy) so the cell can do it’s job. Cancer is a metabolic problem where the cells are unable to oxidize sugar inside their mitochondria efficiently. This was documented 90 years ago by two time Noble Prize Winner Otto Heinrich Warburg. Many researchers and clinicians who support the metabolic theory of cancer have known for many years that mitochondrial dysfunction and altered cellular metabolism play a central role in the development of many cancers. This view differs from the traditional model that emphasizes genetic mutations as the primary cause. In the book ‘CANCER The Metabolic Disease Unraveled’ by Mark Sloan, there are 30 studies showing cancer cells can transform back to normal cells. With the proper interventions, Cancer cells can revert back to normal cells, no killing with chemo or radiation necessary. When mitochondria from normal cells are placed inside Cancer cells the Cancer cells transform back to normal cells. These experiments have been performed repeatedly. https://www.shortform.com/pdf/the-ultimate-guide-to-methylene-blue-pdf-mark-sloan
Nitric oxide (NO) has an important and complex relationship with mitochondrial function. At elevated concentrations or under certain cellular conditions, nitric oxide can inhibit cytochrome c oxidase (Complex IV), a critical enzyme in the mitochondrial electron transport chain that is necessary for efficient ATP production. Nitric oxide can compete with oxygen at cytochrome c oxidase, temporarily reducing mitochondrial respiration and altering cellular energy metabolism. Researchers have investigated how prolonged or abnormal nitric oxide signaling and oxidative stress may contribute to mitochondrial dysfunction and metabolic changes associated with cancer.
Nitric oxide promotes tumor growth and the formation of new blood vessels (angiogenesis) that the tumor needs to grow/spread or metastasize even further in the body. The main point here is that Cancer cells are injured cells and do not make adequate amounts of ATP/energy because of the presence of nitric oxide. Only two interventions are known to reverse this process. They are methylene blue and red light therapy, also called photo-dynamic therapy, (PDT). They break the bond between the toxin, nitric oxide, and the needed enzyme, cytochrome c oxidase, thus releasing that enzyme to participate in normal metabolism inside the mitochondria. This enables the mitochondria to produce the ATP needed for healthy metabolism in the cell.
Nitric oxide may play a complex role in cancer progression. Under certain conditions, elevated or prolonged nitric oxide signaling has been associated with processes involved in tumor growth, angiogenesis, invasion, and metastasis. Because metastasis—the spread of cancer cells from the original tumor to other parts of the body—is responsible for the great majority of cancer-related deaths, researchers are interested in biological pathways that may influence this process. Nitric oxide may also influence the ability of cancer cells to migrate and interact with surrounding tissues. This has led researchers to investigate substances that may influence excessive or abnormal nitric oxide activity. Methylene Blue is one such compound being studied. Red-light photobiomodulation has also been investigated for its ability to influence mitochondrial function, including the interaction between nitric oxide and cytochrome c oxidase, which may affect mitochondrial ATP production.
Research involving Methylene Blue extends back more than a century, although its investigation specifically for cancer remains largely experimental. Methylene Blue can participate in mitochondrial electron transport and has been studied for its potential effects on cellular energy metabolism and oxidative stress. Researchers are investigating whether these properties may be useful in cancer cells with altered mitochondrial metabolism. The mitochondrial electron transport chain consists of several protein complexes that transfer electrons and ultimately help generate ATP, the usable energy required for normal cellular function.
How much Methylene Blue do I take?
MB is sold in powder and premixed liquid forms. When mixed in water they both can be easily added to drinks with a dropper. Expect aquamarine-colored urine between 4 and 48 hours after consumption. Oral consumption of Methylene Blue is at a rate from 10mg to 40mg which would be 1 to 4 cc of a 1% solution. I take it once every one to two weeks.
For anyone wanting to drill down into the 4 steps in the electron transport chain in the mitochondria, there’s plenty on the web to enhance your understanding. However, you don’t need to know all that to benefit from MB consumption in the same way that you don’t need to know all about how a car or computer works to actually benefit from using them.
Generally low doses of MB are used from a 1% solution and range from 10mg to 40mg or 1cc to 4cc. Each cc/ml equals 10mg in a 1% solution. The book by Mark Sloan entitled “THE ULTIMATE GUIDE to METHYLENE BLUE” is an excellent resource to have on hand, 10mg to 40mg is a reasonable range for most individuals. Methylene Blue is extremely stable with a long shelf life if kept in a dark place out of sunlight. Get the book “CANCER CURED, Victory Over The WAR on Cancer” also by Mark Sloan to expand your options. It contains over 2300 references to scientific studies on cancer solutions.
General Safety Guidelines are:
(a) Methylene blue should NOT be taken with selective serotonin re-uptake inhibitors (SSRI) medications.
(b) Methylene blue should not be given to infants or children under the age of 12. (c) Do not use Methylene Blue if you are pregnant or breast feeding.
(d) Methylene Blue may also be effective against a UTI (urinary tract infection) (e) People with G6PD deficiency should not use methylene blue unless specifically instructed by their physician because serious complications can occur.
Methylene Blue has been used in medicine for well over a century and continues to be studied for a variety of medical applications. Within the metabolic theory of cancer, some clinicians believe it may help support mitochondrial function and improve cellular energy production. Although the laboratory research is encouraging, high-quality human cancer studies remain limited. My goal is not to present Methylene Blue as a cure, but rather as one option worth understanding as you continue learning about metabolic approaches to health and cancer.
Where can I obtain pharmaceutical grade methylene blue?
This source sells a 6-pack of blue bottles with 1 gram of Methylene Blue dry powder already in each bottle. All you do is add 4 ounces of distilled water to the bottle that contains the Methylene Blue powder and you have a 1% solution. A 1% solution is equal to 10mg per ml/cc from the eye dropper or syringe. They have several other choices in their Shop store. https://quantuminnovationlabs.com/shop/
This source also has several selections of pharmaceutical grade Methylene Blue. I have found that the small containers of 1 gram each of methylene powder are also easy to mix into a 4-ounce bottle with distilled water that they do supply for reuse with their 5-gram pack option. This turns out to be a 1% solution and equals 10mg per cc/ml. https://cztl.bz/collections/all
https://www.youtube.com/watch?v=nlm5BuQXUUw&ab_channel=HBOTUSA
https://www.youtube.com/watch?v=x7PPLiueLWs&ab_channel=JonasKuehneMD
https://www.youtube.com/watch?v=ly6tFWaroUI&ab_channel=CuttingEdgeHealthPodcastwithJaneRogers
https://drtalks.com/videos/unlocking-the-power-of-methylene-blue/
12. Red Light Therapy
What is it?
Red Light Therapy (RLT), also called photobiomodulation, uses specific wavelengths of red light (approximately 620–700 nanometers) and near-infrared light (approximately 700–1000 nanometers) to stimulate cellular activity. Research has investigated its use for wound healing, pain relief, inflammation, muscle recovery, and other medical conditions. These wavelengths are also naturally present in sunlight.
www.youtube.com/watch?v=e4zBv1N7aq8&ab_channel=FelixHarder
The primary reason for including RLT on this website is its potential to support mitochondrial function. One proposed mechanism involves cytochrome c oxidase, an important enzyme in the mitochondrial electron transport chain. Research suggests that red and near-infrared light may influence the interaction between nitric oxide and cytochrome c oxidase, potentially increasing mitochondrial respiration and ATP (energy) production under certain conditions. ATP provides the usable energy cells need to carry out their normal functions. Photobiomodulation may also influence other cellular signaling pathways, so its effects are probably not explained by this mechanism alone.
.SPECIAL NOTE: The appropriate treatment time for Red Light Therapy depends on the wavelength, intensity of the light, distance from the device, and area being treated. For many home RLT devices, treatment sessions are relatively short, often around 10–15 minutes, but users should follow the recommendations for their particular device.
Another fascinating area of research involves what scientists call systemic or “abscopal” effects of photobiomodulation. Studies suggest that exposing one area of the body to red or near-infrared light may sometimes produce biological effects in tissues that were not directly exposed. Researchers are continuing to investigate how cellular signaling and other systemic mechanisms may contribute to these effects.
If you have ever heard that we “are fearfully and wonderfully made,” my humble opinion is that this statement is a massive understatement!
Red light and near-infrared light can produce similar biological effects. One important difference is that near-infrared wavelengths generally penetrate deeper into body tissues than visible red light.
Thousands of scientific papers have been published on Red Light Therapy covering wound healing, pain management, sports medicine, neurological conditions, and other areas. As with any field, the quality of evidence varies depending on the condition being studied.
So, do your due diligence and you will find much to be discovered about this fascinating modality being studied for health and well-being. Healthy mitochondrial function and efficient ATP production are important to the normal function of cells throughout the body, and RLT is being studied for its potential to support these processes.
There are many companies that produce RLT devices. To compare available products, search for “Red Light Therapy device reviews.” Many RLT devices combine both red and near-infrared wavelengths, allowing both forms of light to be used during the same treatment session.
Without elaborating, what are some benefits of RLT?
Red Light Therapy vs Cancer
Researchers who support the metabolic theory of cancer believe that improving mitochondrial function plays an important role in supporting healthy cellular metabolism. Within this framework, Red Light Therapy and Methylene Blue have both been proposed as complementary approaches for supporting mitochondrial energy production. Human clinical research evaluating these approaches specifically for cancer remains limited and continues to evolve.
Red Light Therapy is one of the most extensively studied non-drug approaches for supporting tissue repair, reducing inflammation, and improving mitochondrial function. I believe its greatest potential lies in helping healthy cells produce the energy they need to function according to their original design. While research into its role in cancer care is still evolving, it’s safety profile and broad range of potential benefits make it a therapy worthy of careful consideration and further study.
13. Spirulina
Laboratory and animal studies have investigated phycocyanin against several types of cancer cells, including triple-negative breast cancer. Some studies suggest that phycocyanin may influence cellular signaling pathways, including MAPK-related pathways, and may promote cell-cycle arrest and apoptosis (programmed cell death) in certain cancer cells. These findings are encouraging, but additional human clinical research is needed to determine whether these effects translate into meaningful benefits for cancer patients.
Many people use Spirulina as a dietary supplement, although serving sizes and concentrations vary considerably among products. Start with a small amount and increase gradually as tolerated, following the manufacturer’s directions. https://www.verywellhealth.com/spirulina-89079
Increasing studies have shown that phycocyanin has anti-cancer effects by blocking the tumor cell growth cycle. This review discusses the therapeutic use of phycocyanin and focuses on the latest advances of phycocyanin as a promising anti-cancer drug without harming healthy cells. Phycocyanin also serves as a promising anti-cancer agent inducing tumor cell apoptosis (programmed cell death).
https://pmc.ncbi.nlm.nih.gov/articles/PMC9513730/
Researchers have also investigated phycocyanin in pancreatic ductal adenocarcinoma (PDA), one of the most aggressive forms of pancreatic cancer. In laboratory studies, phycocyanin purified from Spirulina inhibited the growth of pancreatic cancer cells and promoted apoptosis (programmed cell death). The researchers concluded that phycocyanin showed potential as an anti-pancreatic cancer agent and warranted further investigation. However, these findings were based primarily on laboratory and animal research and do not establish phycocyanin as a treatment for pancreatic cancer in humans.
https://www.nature.com/articles/srep34564
https://www.youtube.com/watch?v=F3cPWs7sKig&ab_channel=Dr.JoshAxe
https://www.youtube.com/watch?v=t0fj76eMlMk&ab_channel=LiveWell
https://www.youtube.com/watch?v=QxB_H6noG_U&ab_channel=SuperfoodEvolution
Good quality brands are here.
https://www.nutrex-hawaii.com/collections/hawaiian-spirulina
https://mrmnutrition.com/products/superfoods-raw-spirulina-powder
Nautical Elements Spirulina 240 Capsules from Amazon at $20
One important thing to know about Spirulina is that much of its vitamin B12-like content is not true, biologically active vitamin B12, but rather an inactive analogue sometimes called pseudovitamin B12. For this reason, Spirulina should not be relied upon as a primary source of vitamin B12. Those needing additional B12 should obtain it from reliable sources such as foods naturally containing B12, fortified foods, or supplements containing active forms of cobalamin.
Spirulina is another example of a natural product that has generated considerable scientific interest because of its active compound, phycocyanin. The laboratory research is encouraging, particularly regarding antioxidant activity, inflammation, and the ability to influence cancer cell growth in experimental models. For that reason, I view Spirulina as one possible component of an overall strategy to support health and mitochondrial function rather than as a stand-alone cancer treatment. As always, continue learning, evaluate the evidence carefully, and discuss any supplements with your healthcare provider, especially if you are receiving cancer treatment.
Interesting viewing for further information