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l carnitine tmao Dietary supplementation of l-carnitine ameliorates metabolic syndrome independent of trimethylamine N-oxide produced by gut microbes in high-fat diet-induced obese mice The gut–brain axis and trimethylamine

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doi: 10.1056/NEJMoa2030880 11 MenzellaFGaleoneCGhidoniGRuggieroPDAmatoMFontanaMet al

l carnitine tmao Dietary supplementation of l-carnitine ameliorates metabolic syndrome independent of trimethylamine N-oxide produced by gut microbes in high-fat diet-induced obese mice The gutbrain axis and trimethylamine

When Mg2+ concentration is low (e.g., 10 mM in 70S ribosomes from Escherichia coli), the ribosome dissociates with the release of ribosomal components, stopping polypeptide synthesis [33, 34]

l carnitine tmao Dietary supplementation of l-carnitine ameliorates metabolic syndrome independent of trimethylamine N-oxide produced by gut microbes in high-fat diet-induced obese mice The gutbrain axis and trimethylamine

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l carnitine tmao Dietary supplementation of l-carnitine ameliorates metabolic syndrome independent of trimethylamine N-oxide produced by gut microbes in high-fat diet-induced obese mice The gutbrain axis and trimethylamine

Ngi mun tng cng sc khe, h min dch

l carnitine tmao Dietary supplementation of l-carnitine ameliorates metabolic syndrome independent of trimethylamine N-oxide produced by gut microbes in high-fat diet-induced obese mice The gutbrain axis and trimethylamine

During the immune exhaustion characteristic of chronic infection, an increase in CTLA-4 expression is observed, which may increase IDO activation (234)

l carnitine tmao Dietary supplementation of l-carnitine ameliorates metabolic syndrome independent of trimethylamine N-oxide produced by gut microbes in high-fat diet-induced obese mice The gutbrain axis and trimethylamine

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