doi: 10.1016/j.ejcb.2021.151189 37 NemajerovaAAmelioIGebelJDtschVMelinoGMollUMet al
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BODY COMPOSITION AND METABOLISM Lean Muscle Mass Aging Models Increase in lean body mass: 4-8% after 12 weeks (aged rats) Muscle protein synthesis: increase of 2535% (fractional MPS synthesis rate) IGF-1 expression in muscle: local upregulation 180% Fiber diameter: Type II increment 15-20% Strength: 20-30% improvement in grip strength tests Anabolic Mechanisms mTOR Activation: S6K1, 4E-BP1 Phosphorylation Ribosomal synthesis: increased translational capacity Satellite cells: activation and myogenic differentiation Catabolism reduction: ubiquitin-proteasome inhibition Body Fat Reduction Visceral fat loss: 1525% (16-week studies) Lipolysis: activation of hormone-sensitive lipase (HSL) Fatty acid oxidation: increased mitochondrial -oxidation 40% Thermogenesis: Upregulation of UCP-1 in Brown Adipose Tissue Lean-to-fat mass ratio: improvement of 3040% Insulin Sensitivity HOMA-IR: 25% improvement (homeostatic model assessment) Glucose uptake: increase in muscle GLUT-4 35% Insulin signaling: IRS-1 phosphorylation, Akt Adiponectin: increased circulating levels 50% 2

Prenatal methylmercury exposure hampers glutathione antioxidant system ontogenesis and causes long-lasting oxidative stress in the mouse brain
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doi:10.21037/apm-21-2523 Wu, Albert G, and Jeffrey M Weinberg