Common medications that may trigger G6PD-related hemolytic anemia include:
Acetaminophen: an analgesic (pain-relieving) drug
Acetylsalicylic acid (aspirin): an anti-inflammatory drug
Chloramphenicol: an antibiotic drug
Chloroquine: an immunosuppressant and antimalarial drug
Colchicine: a gout medication
Diaminodiphenyl sulfone (Dapsone): an antibiotic and antimalarial drug
Diclofenac sodium: an anti-inflammatory drug
Diphenhydramine: an antihistamine drug
Glyburide: a diabetes drug
Ibuprofen: an anti-inflammatory drug
Izoniazid: an antibiotic drug
L-dopa: a Parkinson’s disease treatment
Methylene blue: a dye and blood disorder treatment
Nitrofurantoin: an antimicrobial drug
Phenazopyridine: an analgesic drug
Primaquine: an antimalarial drug
Rasburicase: a gout medication
Streptomycin: an antibiotic drug
Sulfa drugs: a group of antibiotics that includes co-trimoxazole, sulfacetamide, and trimethoprim
Tripelennamine: an antihistamine drug
Vitamin K: a dietary supplement
Caution if using herbal supplements or extracts containing Rhizoma coptidis (also called Huang Lian) or Coptis chinensis. These herbs can be used to produce a supplement called berberine.
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Human Genetic Resistance to Malaria
Innate Resistance to HIV
Hemoglobin Subunit Beta
Hemolytic Anemia
G6PD
CCR5 (HIV)
G6PD (Malaria)
https://en.m.wikipedia.org/wiki/Hemolytic_anemia
https://en.m.wikipedia.org/wiki/Glucose-6-phosphate_dehydrogenase
https://en.m.wikipedia.org/wiki/Human_genetic_resistance_to_malaria
https://en.m.wikipedia.org/wiki/Innate_resistance_to_HIV
https://en.m.wikipedia.org/wiki/CCR5
https://en.m.wikipedia.org/wiki/Sickle_cell_disease
https://en.m.wikipedia.org/wiki/Hemoglobin_subunit_beta
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G6PD
Glucose-6-Phosphate Dehydrogenase
Hemolytic Anemia
Human Genetic Resistance to Malaria
Chromosome
Enzyme Catalyst
Cytosolic, Cytosol cytoplasmic matrix or groundplasm.
Genetic variation in human G6PD resulted from generations of adaptation to malarial infection.
Human genetic resistance to malaria refers to inherited changes in the DNA of humans which increase resistance to malaria.
X-linked genetic deficiency of G6PD makes a human prone to non-immune hemolytic anemia.
Modified F420-dependent G6PD is found in Mycoplasma Tuberculosis.
Common medications that may trigger G6PD-related Hemolytic Anemia.
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Highly Reduced Genomes of Protist Endosymbionts Show Evolutionary Convergence
https://www.sciencedirect.com/science/article/pii/S0960982219317038
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the usefulness of carboxylic ionophores is based on selective toxicity to protozoan parasites and bacteria and margins of safety in the approved target species. Desirable effects occur when animals are provided feed containing approved dosage ranges, but higher levels may result in adverse effects.
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Ionophore
Protonophore
EDTA Chelation
Nonactin
Nitrogen
Human genetic resistance to malaria
Innate resistance to HIV
Vertically transmitted infection
Parasitic chromosome
Selfish genetic element
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i suspect the reason is because something is already in that position, called genetic disease, autoimmune, making it difficult for other kind of similar disease to take root.
one of my suspensions is we can live with those kind of symbionts, but they need to somehow be reset or rebooted to be neuroprotective, not parasitic.
RE: Protonation Cation/Anion