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Archaeal Endosymbiosis Induced Human Adaptation Metabolic Syndrome

Archaeal Endosymbiosis Induced Human Adaptation Metabolic Syndromevon Ravikumar Kurup Sie sparen 18% des UVP sparen 18%
Über Archaeal Endosymbiosis Induced Human Adaptation Metabolic Syndrome

Endosymbiotic archaea can modulate metabolism at multiple levels producing the human metabolic adaptation syndrome. Archaeal endosymbiosis leads to a metabolic adaptation syndrome consisting of pyruvate dehydrogenase deficiency, mitochondrial dysfunction, porphyria, hyperammonemia, hyperhomocysteinemia, defective protein glycosylation, cholesterol depletion, hyperprolinemia, neutral amino acid transport defect, branched chain ketoacid dehyrogenase deficiency, hyperdigoxinemia, magnesium depletion and selenium deficiency. The archaea induced cholesterol catabolism leads to low vitamin D synthesis and the endosymbiosis induced redox stress produces hypoascorbemia. The archaea induced cholesterol catabolism produces decreased sex hormone synthesis and metabolic hypogonadism. The endosymbiotic archaea mediated human adaptation syndrome can thus be treated by a high fibre - high medium chain triglyceride ketogenic diet and megavitamin therapy. This archaeal endosymbiosis induced human adaptation syndrome can lead to diseases like autoimmune disease, neuropsychiatric disorders, neurodegeneration, metabolic syndrome and oncogenesis.

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  • Sprache:
  • Englisch
  • ISBN:
  • 9786200084194
  • Einband:
  • Taschenbuch
  • Seitenzahl:
  • 164
  • Veröffentlicht:
  • 3. Mai 2019
  • Abmessungen:
  • 150x10x220 mm.
  • Gewicht:
  • 262 g.
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Beschreibung von Archaeal Endosymbiosis Induced Human Adaptation Metabolic Syndrome

Endosymbiotic archaea can modulate metabolism at multiple levels producing the human metabolic adaptation syndrome. Archaeal endosymbiosis leads to a metabolic adaptation syndrome consisting of pyruvate dehydrogenase deficiency, mitochondrial dysfunction, porphyria, hyperammonemia, hyperhomocysteinemia, defective protein glycosylation, cholesterol depletion, hyperprolinemia, neutral amino acid transport defect, branched chain ketoacid dehyrogenase deficiency, hyperdigoxinemia, magnesium depletion and selenium deficiency. The archaea induced cholesterol catabolism leads to low vitamin D synthesis and the endosymbiosis induced redox stress produces hypoascorbemia. The archaea induced cholesterol catabolism produces decreased sex hormone synthesis and metabolic hypogonadism. The endosymbiotic archaea mediated human adaptation syndrome can thus be treated by a high fibre - high medium chain triglyceride ketogenic diet and megavitamin therapy. This archaeal endosymbiosis induced human adaptation syndrome can lead to diseases like autoimmune disease, neuropsychiatric disorders, neurodegeneration, metabolic syndrome and oncogenesis.

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