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discovery of glutathione SLC33A1-mediated transport regulates ER redox balance and function Glutathione-mediated biotransformation in the liver

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Ho, C.-C

discovery of glutathione SLC33A1-mediated transport regulates ER redox balance and function Glutathione-mediated biotransformation in the liver

[DOI] [PubMed] [Google Scholar] 299.Blevins CH, Iyer PG, Vela MF, Katzka DA

discovery of glutathione SLC33A1-mediated transport regulates ER redox balance and function Glutathione-mediated biotransformation in the liver

[DOI] [PubMed] [Google Scholar] 74.Kolker S, Christensen E, Leonard JV, Greenberg CR, Boneh A, Burlina AB, Burlina AP, Dixon M, Duran M, Garcia Cazorla A, Goodman SI, Koeller DM, Kyllerman M, Muhlhausen C, Muller E, Okun JG, Wilcken B, Hoffmann GF, Burgard P

discovery of glutathione SLC33A1-mediated transport regulates ER redox balance and function Glutathione-mediated biotransformation in the liver

BPC-157 wordt intensief bestudeerd vanwege haar interacties met angiogenese, celcommunicatie en herstelmechanismen op moleculair niveau

discovery of glutathione SLC33A1-mediated transport regulates ER redox balance and function Glutathione-mediated biotransformation in the liver

Impaired platelet aggregation (may promote bleeding)

discovery of glutathione SLC33A1-mediated transport regulates ER redox balance and function Glutathione-mediated biotransformation in the liver

Individuals who are obese do not exhibit the postprandial decline in plasma concentrations observed in the lean, in addition to having lower ghrelin levels

discovery of glutathione SLC33A1-mediated transport regulates ER redox balance and function Glutathione-mediated biotransformation in the liver

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