intestinal microbiota metabolism of l-carnitine JCI Chlorogenic acid inhibits trimethylamine-N-oxide formation
Chlorogenic acid inhibits trimethylamine N oxide formation and remodels intestinal microbiota to alleviate liver dysfunction in high l carnitine feeding mice Food & Function (RSC Publishing) Carnitine metabolic disorders and novel clinical approaches: Mechanistic insights from deficiency management to liver and kidney disease treatment ScienceDirect Comparison of short term and long term effects of peroral L carnitine intake: clinical implications of elevated TMAO levels in cardiovascular complications Mechanisms linking the gut microbiota to lipid metabolism & pathophysiological conditions associated with dyslipidemia. SCFAs regulate host lipid metabolism by supplying the host with energy,improving peripheral tissue metabolism & stimulating incretin Carnitine metabolism in the human gut: characterization of the two component carnitine monooxygenase CntAB from Acinetobacter baumannii Journal of Biological Chemistry High l Carnitine Ingestion Impairs Liver Function by Disordering Gut Bacteria Composition in Mice Journal of Agricultural and Food Chemistry
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