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enhanced glutathione production by a non-GMO Saccharomyces cerevisiae mutant isolated via acrolein resistance-mediated screening | Food Science and Biotechnology Hepatic effects of microgravity: Reduced

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doi: 10.1016/j.cmet.2014.10.002

enhanced glutathione production by a non-GMO Saccharomyces cerevisiae mutant isolated via acrolein resistance-mediated screening | Food Science and Biotechnology Hepatic effects of microgravity: Reduced

currently, more than 15 single nucleotide polymorphisms are known to influence serum B 12

enhanced glutathione production by a non-GMO Saccharomyces cerevisiae mutant isolated via acrolein resistance-mediated screening | Food Science and Biotechnology Hepatic effects of microgravity: Reduced

Damage to the tight endothelial junctions results in increased BBB permeability, leading to the entry of immune cells and inflammatory cytokines into the parenchyma, as well as impaired clearance of metabolic waste and neurotoxic compounds (Zlokovic, 2004

enhanced glutathione production by a non-GMO Saccharomyces cerevisiae mutant isolated via acrolein resistance-mediated screening | Food Science and Biotechnology Hepatic effects of microgravity: Reduced

The observed susceptibility in the GSH-deficient pad2-1 mutant suggests an indispensable role for GSH in plant defense, which encourages us to further investigate whether GSH acts as wound signal to trigger long distance calcium-based defense signaling events

enhanced glutathione production by a non-GMO Saccharomyces cerevisiae mutant isolated via acrolein resistance-mediated screening | Food Science and Biotechnology Hepatic effects of microgravity: Reduced

France : Elsevier Masson

enhanced glutathione production by a non-GMO Saccharomyces cerevisiae mutant isolated via acrolein resistance-mediated screening | Food Science and Biotechnology Hepatic effects of microgravity: Reduced

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