Does oral trigonelline supplementation improve metabolism and cardiac function in a high-fat diet and L-NAME-induced mouse model of HFpEF?
Trigonelline supplementation shows therapeutic potential for HFpEF by mitigating metabolic disorders and improving cardiac function through microbiome-mediated AMPK activation in a preclinical model.
Heart failure with preserved ejection fraction (HFpEF) is a prevalent end-manifestation of cardiovascular diseases currently lacking effective treatment. Using a high-fat diet and L-NAME-induced mouse model, untargeted metabolomic profiling is performed and trigonelline is identified as a markedly reduced metabolite in HFpEF hearts. Oral trigonelline supplementation alleviates metabolic syndromes, including obesity, insulin resistance, and hepatic injury, leading to improved cardiac function in HFpEF mice. AMPK inhibition blunts the protective effects of trigonelline despite trigonelline per se not activating AMPK directly. Gut microbiota is required in AMPK activation and consequent beneficial effects on HFpEF mice by trigonelline. Further investigations demonstrate that trigonelline significantly restores HFpEF mouse gut microbiome dysbiosis by decreasing Firmicutes and increasing Bacteroidetes. In conclusion, the studies demonstrate that trigonelline supplementation mitigates HFpEF-associated metabolic disorders and improves cardiac function via gut microbiome alterations-mediated AMPK activation. These findings suggest that trigonelline has therapeutic potential for HFpEF.
Cheng et al. (Wed,) studied this question.
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