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GPR75 在代谢相关脂肪性肝病中的作用及其机制。

Effect and mechanism of GPR75 in metabolic dysfunction-related steatosis liver disease.

机构信息

Department of Internal Medicine, The Affiliated Zhong Shan Hospital of Dalian University, Dalian, 116001, China.

Department of Central laboratory, Central Hospital of Dalian University of Technology, Dalian, 116033, China.

出版信息

Int J Med Sci. 2024 Sep 9;21(12):2343-2347. doi: 10.7150/ijms.101094. eCollection 2024.

Abstract

Research on G protein-coupled receptor 75 (GPR75) in metabolic dysfunction-related steatosis liver disease (MASLD) reveals its potential role in regulating body weight and energy balance. Loss-of-function mutations in the GPR75 gene are significantly associated with lower body mass index and reduced body weight. Studies demonstrate that GPR75 knockout mice exhibit lower fasting blood glucose levels, improved glucose homeostasis, and significant prevention of high-fat diet-induced MASLD. The absence of GPR75 reduces fat accumulation by beneficially altering energy balance rather than restricting adipose tissue expansion. Moreover, female GPR75 knockout mice show greater protection against lipid accumulation on a high-fat diet compared to males, potentially attributed to higher physical activity and energy expenditure. However, current research primarily relies on mouse models, and its applicability to humans requires further validation. Future studies should explore the role of GPR75 across diverse populations, its clinical potential, and delve into its specific mechanisms and interactions with other metabolic pathways. Ultimately, targeted therapies based on GPR75 could offer novel strategies for the prevention and treatment of MASLD and other metabolic disorders.

摘要

关于 G 蛋白偶联受体 75(GPR75)在代谢功能障碍相关脂肪性肝病(MASLD)中的研究揭示了其在调节体重和能量平衡方面的潜在作用。GPR75 基因的功能丧失突变与较低的体重指数和体重减轻显著相关。研究表明,GPR75 敲除小鼠表现出较低的空腹血糖水平、改善的葡萄糖稳态以及高脂肪饮食诱导的 MASLD 的显著预防作用。缺乏 GPR75 通过有益地改变能量平衡而不是限制脂肪组织扩张来减少脂肪积累。此外,雌性 GPR75 敲除小鼠在高脂肪饮食下显示出对脂质积累的更大保护作用,这可能归因于更高的体力活动和能量消耗。然而,目前的研究主要依赖于小鼠模型,其在人类中的适用性需要进一步验证。未来的研究应探索 GPR75 在不同人群中的作用、其临床潜力以及深入研究其特定机制及其与其他代谢途径的相互作用。最终,基于 GPR75 的靶向治疗可能为 MASLD 和其他代谢紊乱的预防和治疗提供新的策略。

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