Sabahat Syeda Elezeh, Saqib Muhammad, Talib Muneeba, Shaikh Taha Gul, Khan Tooba, Kailash Sejal Jain
Jinnah Sindh Medical University.
Shaheed Mohtarma Benazir Bhutto Medical University, Larkana, Pakistan.
Ann Med Surg (Lond). 2024 Aug 7;86(9):5410-5415. doi: 10.1097/MS9.0000000000002433. eCollection 2024 Sep.
The gut microbiota plays an important role in regulating the body's physiological system, and more recently its impact on bile acid metabolism and cognitive function has been investigated by many studies. In addition to their conventional function in fat digestion and absorption, bile acids are now considered crucial signaling molecules that control several metabolic processes and immunological responses. For this purpose, the authors conducted comprehensive research using relevant terms in an attempt to understand more about the gut microbiota and its impact on bile acid metabolism and cognitive health. The gut-brain axis refers to the network of routes through which gut bacteria communicate with the brain. Through its capacity to bio-transform primary bile acids into secondary bile acids, the gut microbiota plays a significant role in bile acid metabolism. Bile acids function as signaling molecules and act on the brain through nuclear and membrane-bound receptors, influencing neurotransmitter production, neuroinflammation, and neuroplasticity to modify this communication. Any dysregulation in this axis can result in cognitive dysfunction. The link between gut microbiota, bile acids, and cognitive health cannot be ignored. It is imperative to explore this link further by conducting large-scale trials to improve the cognitive health of patients with multiple comorbidities, especially those involving the gastrointestinal tract and nervous system.
肠道微生物群在调节人体生理系统中发挥着重要作用,最近许多研究对其在胆汁酸代谢和认知功能方面的影响进行了调查。除了在脂肪消化和吸收中的传统功能外,胆汁酸现在被认为是控制多种代谢过程和免疫反应的关键信号分子。为此,作者使用相关术语进行了全面研究,试图更多地了解肠道微生物群及其对胆汁酸代谢和认知健康的影响。肠-脑轴是指肠道细菌与大脑进行交流的途径网络。肠道微生物群通过将初级胆汁酸生物转化为次级胆汁酸的能力,在胆汁酸代谢中发挥重要作用。胆汁酸作为信号分子,通过核受体和膜结合受体作用于大脑,影响神经递质的产生、神经炎症和神经可塑性,从而改变这种交流。该轴的任何失调都可能导致认知功能障碍。肠道微生物群、胆汁酸和认知健康之间的联系不容忽视。必须通过开展大规模试验进一步探索这种联系,以改善患有多种合并症的患者的认知健康,尤其是那些涉及胃肠道和神经系统的患者。