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The internet-related low level EMF fields, global warming and actinidic archaea affect mitochondrial function. The internet-related low level of EMF fields can trigger endosymbiotic archaeal growth and methanogenesis producing global warming, increases endosymbiotic archaeal growth which produces the Warburg phenotype in the human cell with mitochondrial dysfunction. The internet-related low level EMF fields can act upon mitochondria which functions as a quantal organelle producing mitochondrial dysfunction. The internet-related low level of EMF fields can produce heme oxygenase induction and…mehr

Produktbeschreibung
The internet-related low level EMF fields, global warming and actinidic archaea affect mitochondrial function. The internet-related low level of EMF fields can trigger endosymbiotic archaeal growth and methanogenesis producing global warming, increases endosymbiotic archaeal growth which produces the Warburg phenotype in the human cell with mitochondrial dysfunction. The internet-related low level EMF fields can act upon mitochondria which functions as a quantal organelle producing mitochondrial dysfunction. The internet-related low level of EMF fields can produce heme oxygenase induction and decrease heme in the system. The removal of heme increases porphyrin synthesis and leads to the formation of porphyrin stacks called porphyrions. The porphyrions can act as a template for the formation of RNA viroids, DNA viroids, prions and eventually nanoarchaea. The archaea secretes RNA viroids which can hybridize with human genomic elements like HERV sequences generating the Covid 19 virus denovo. Internet-related low level of EMF fields can produce mitochondrial dysfunction which can release its bacterial DNA triggering the Covid 19 cytokine storm.
Autorenporträt
Dr Ravikumar Kurup is the Director of the Metabolic Disorders Research Centre, Trivandrum.