Wang Yanyan, Xu Huangru, Zhou Xiqiao, Chen Weidong, Zhou Huiping
Department of Microbiology and Immunology, Virginia Commonwealth University , Richmond Veterans Affairs Medical Center, Richmond, VA, USA.
School of Pharmaceutical Science, Anhui University of Chinese Medicine, Hefei, Anhui, China.
Med Rev (2021). 2024 Jun 4;4(4):262-283. doi: 10.1515/mr-2024-0020. eCollection 2024 Aug.
Maintaining bile acid homeostasis is essential for metabolic health. Bile acid homeostasis encompasses a complex interplay between biosynthesis, conjugation, secretion, and reabsorption. Beyond their vital role in digestion and absorption of lipid-soluble nutrients, bile acids are pivotal in systemic metabolic regulation. Recent studies have linked bile acid dysregulation to the pathogenesis of metabolic diseases, including obesity, type 2 diabetes mellitus (T2DM), and metabolic dysfunction-associated steatotic liver disease (MASLD). Bile acids are essential signaling molecules that regulate many critical biological processes, including lipid metabolism, energy expenditure, insulin sensitivity, and glucose metabolism. Disruption in bile acid homeostasis contributes to metabolic disease altered bile acid feedback mechanisms, hormonal dysregulation, interactions with the gut microbiota, and changes in the expression and function of bile acid transporters and receptors. This review summarized the essential molecular pathways and regulatory mechanisms through which bile acid dysregulation contributes to the pathogenesis and progression of obesity, T2DM, and MASLD. We aim to underscore the significance of bile acids as potential diagnostic markers and therapeutic agents in the context of metabolic diseases, providing insights into their application in translational medicine.
维持胆汁酸稳态对代谢健康至关重要。胆汁酸稳态包括生物合成、结合、分泌和重吸收之间的复杂相互作用。除了在脂溶性营养物质的消化和吸收中发挥重要作用外,胆汁酸在全身代谢调节中也起着关键作用。最近的研究将胆汁酸失调与包括肥胖症、2型糖尿病(T2DM)和代谢功能障碍相关脂肪性肝病(MASLD)在内的代谢性疾病的发病机制联系起来。胆汁酸是调节许多关键生物学过程的重要信号分子,包括脂质代谢、能量消耗、胰岛素敏感性和葡萄糖代谢。胆汁酸稳态的破坏会导致代谢性疾病——胆汁酸反馈机制改变、激素失调、与肠道微生物群的相互作用以及胆汁酸转运体和受体的表达及功能变化。本综述总结了胆汁酸失调导致肥胖症、T2DM和MASLD发病及进展的重要分子途径和调节机制。我们旨在强调胆汁酸作为代谢性疾病潜在诊断标志物和治疗剂的重要性,为其在转化医学中的应用提供见解。