Honest, research-backed journalism on ivermectin, fenbendazole, HCQ, and your right to medical sovereignty. Updated daily.
Strongyloides stercoralis can replicate silently inside the human body for 50+ years via autoinfection. Here's the biology, the danger, and why ivermectin remains the treatment of choice.
Ivermectin's decades-long safety record rests on a specific biological gatekeeper. Here is how P-glycoprotein at the blood-brain barrier explains it.
Ivermectin's success against parasitic worms can come with a temporary flare of fever, itching and swelling. Here is the biology behind it, and why it matters.
Antiseptic, disinfectant and sanitiser are distinct regulatory categories, not synonyms. Here is the actual science behind silver, chitosan, and hygiene practice.
Chitosan, derived from shellfish shells, and silver, an ancient antimicrobial element, are both studied materials in skin care—here is what the research actually shows.
Ivermectin traces to a Japanese soil sample and a decades-long research partnership. Here is the real science behind its discovery, its 2015 Nobel Prize, and its actual approved uses.
Ionic silver and silver nanoparticles are chemically distinct, with different evidence bases. Here is what cell, animal, and human studies actually distinguish.
Chelation is a specific, well-defined chemical bond structure, not a marketing word. Here's what it actually does to a metal ion, and why it matters for skin-contact materials.
A tiny mite that lives on nearly every adult face may drive rosacea's flares in some patients—and a soil-derived compound helps calm it.