Chelation
Antioxidant
Sodium Thiosulfate (Sulfur)
EDTA (Nitrogen)
Thiol-containing antioxidants prevent formaldehyde cytotoxicity.
Heavy metals are essential for a wide range of biological processes, including the growth and reproduction of cells, synthesis of biomolecules, many enzymatic reactions, and the body’s immunity, but their excessive intake is harmful. Specifically, they cause oxidative stress (OS) and generate free radicals and reactive oxygen species (ROS) in metabolism. In addition, the accumulation of heavy metals in humans can cause serious damage to different organs, especially respiratory, nervous and reproductive and digestive systems.
Biologically, metal chelation therapy is often used to treat metal toxicity. This process occurs through the interaction between the ligand and a central metal atom, forming a complex ring-like structure. After metals are chelated with appropriate chelating agents, their damage in metabolism can be prevented and efficiently removed from the body. On the other hand, heavy metals, including Zn, Fe and Cu, are necessary for the suitable functioning of different proteins including enzymes in metabolism. However, when the same metals accumulate at levels higher than the optimum level, they can easily become toxic and have harmful effects toward biomolecules. In this case, it induces the formation of ROS and nitrogen species (RNS) resulting in peroxidation of biological molecules such as lipids in the plasma membrane.
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The role of thiols in antioxidant systems
https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7041647/
https://en.m.wikipedia.org/wiki/Pyrithione
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A method for treating wastewater containing formaldehyde
https://www.sciencedirect.com/science/article/abs/pii/S004313540100255X?via%3Dihub
Sodium sulphite is believed to react with formaldehyde forming sodium formaldehyde bisulphite, which is not only non-toxic to microorganisms but also a biodegradable substance.
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its part of the redox & chelation detoxification process, and this means its antioxidant.
but apparently does require Vitamin C to activate & also replenish the good mineral electrolytes, otherwise might disrupt your ion exchange balance.
all of the pathogenic virus, microbes & parasites cause inflammation problems are oxidative stress from formaldehyde & cyanide.
im trying to conceptualize how to convert the excess negative ions into positive, without massive amounts of supplements, the excess that will need to also be detoxed.
some kind of enzyme to help flip everything the right way?
not sure yet, answer has not revealed itself.
for example, we already have an abundance of Sulfur & Nitrogen in our bodies already, why add more when the old ones are just flipped the wrong way?
for example, flipped the wrong way, retains fluids, high blood pressure, blood sugar, liver problems.
flipped the right way, everything goes back to normal.
flipping the ions correctly could be as simple as wood ash (potash, lye) mixed in citric acid or vinegar.
just a drop a day ect..
its all from formaldehyde & cyanide, that are in the wrong polarity, flipped back and they are totally fine.
its the wrong ion configuration of Nitrogen & Sulfur, binding to carbohydrates, and binding up the liver & kidneys.
is why enzymes help, but the body stops producing enzymes when everything becomes to much oxidative.
mycoplasma does this to the lipids, charged lipids, that block up the organs, to make enzymes that flip ions & detox via redox.
the next idea is we already have an abundance of Sulfur & Nitrogen in our bodies already, flipped in the wrong polarity, making oxidative particles.
how can we flip the bad into good, with the least amount of disturbance?
some kind of polarity ions that excite the latent enzimes.
the basic function of Fenbendazole & the additional charged enzyme ions.
im trying conceptualize how to make an Enzyme that converts bad Nitrogen & Sulfur already in the body into the equivalent of Fenbendazole.
my guess is citric acid & wood ash.. its a slow process, thinking all this mess up & testing things.
Fenbendazole
https://en.m.wikipedia.org/wiki/Pyrazole
RE: Red Book