生物
功能(生物学)
计算生物学
鉴定(生物学)
肠道菌群
机制(生物学)
微生物群
疾病
肠道微生物群
生物信息学
可药性
代谢途径
G蛋白偶联受体
神经科学
信号转导
受体
寄主(生物学)
钥匙(锁)
代谢调节
发病机制
透视图(图形)
冠心病
作者
Lei Chen,Mengyao Li,Xin Wang,Wei‐Ting Hu,Yiming Pan,Yun Wang
摘要
The gut microbiota, through its extensive metabolic repertoire, plays a pivotal role in regulating systemic physiological processes and contributing to the pathogenesis of extraintestinal diseases. Key microbial metabolites, including short-chain fatty acids (SCFAs), tryptophan derivatives, bile acids, and trimethylamine N-oxide (TMAO), act as molecular mediators that link the gut to distant organs. Despite substantial advances, significant knowledge gaps remain regarding the precise mechanisms by which these metabolites influence organ function and disease progression. This review aims to address these gaps by providing a comprehensive overview of the current understanding of the "gut-organ axes," with a focus on how microbial metabolites influence the brain, lungs, liver, kidneys, and heart through specific receptors and signaling pathways. It also highlights recent advances in bioinformatics and multi-omics integration that facilitate the decoding of these interactions and the identification of therapeutic targets. Furthermore, the translational potential of microbiota-based interventions is discussed, along with key challenges hindering their clinical implementation. By presenting a systems-level perspective on gut-organ metabolic crosstalk, this review proposes a framework for microbiota-targeted strategies to tackle complex diseases, highlighting crucial areas for future research.
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