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Actinides like cerium, endogenous digoxin and organisms like phytoplasmas and viroids have been implicated in the etiology of endomyocardial fibrosis. Endogenous digoxin synthesis by an actinide based primitive organism like archaea with mevalonate and cholesterol catabolic pathways was considered a likely possibility. An actinide dependent shadow biosphere of archaea and viroids in the Covid 19 syndrome is described. The endosymbiotic archaeal growth is induced by global warming and low level of EMF generated by widespread internet use. The low level of EMF pollution can mimic the…mehr

Produktbeschreibung
Actinides like cerium, endogenous digoxin and organisms like phytoplasmas and viroids have been implicated in the etiology of endomyocardial fibrosis. Endogenous digoxin synthesis by an actinide based primitive organism like archaea with mevalonate and cholesterol catabolic pathways was considered a likely possibility. An actinide dependent shadow biosphere of archaea and viroids in the Covid 19 syndrome is described. The endosymbiotic archaeal growth is induced by global warming and low level of EMF generated by widespread internet use. The low level of EMF pollution can mimic the electromagnetic fields generated by metal actinides. Metal actinides in beach sands have been postulated to play a role in abiogenesis. The archaeal cholesterol catabolism can generate porphyrions and PAH which forms templates for the abiogenetic replication of archaea and RNA viroids like Covid 19. The archaeal endosymbiosis occurs following global warming and low level of EMF pollution induced by widespread use of the internet.
Autorenporträt
Dr Ravikumar Kurup is the Director of the Metabolic Disorders Research Centre, Trivandrum.