运动介导的巨噬细胞极化调节NAFLD的靶向治疗作用:综述。

Physical activity and nutrition Pub Date : 2023-09-01 Epub Date: 2023-09-30 DOI:10.20463/pan.2023.0023
Li Zhenyu, Wang Ying, Tian Zhuang, Xie Yongchao, Jaecheol Kim
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引用次数: 0

摘要

目的:通过分析运动介导的非酒精性脂肪性肝病(NAFLD)的发病机制和影响肝巨噬细胞极化的原因,探讨运动介导肝巨噬细胞极化机制及其对改善和调节NAFLD的作用。除了探讨不同运动类型对NAFLD巨噬细胞极化调节的不同影响外,为NAFLD的治疗提供方向和依据。方法:研究方法包括使用“NAFLD”、“巨噬细胞极化”和“运动”等特定关键词,全面检索PubMed数据库,检索已发表的相关文献。结果:(1)高脂饮食、肥胖、胰岛素抵抗(IR)、肠道微生物群变化和易感性遗传变异是诱发NAFLD的主要因素。(2) 药物治疗、营养诱导、微因子诱导、生理环境诱导等因素均可诱导肝巨噬细胞极化,影响NAFLD。(3) 不同强度、类型和频率的运动对极化巨噬细胞有不同的影响,也可能对改善肝脏炎症、纤维化和NAFLD有不同的作用。目前,有规律的中等强度有氧运动是治疗NAFLD最有效的方法。结论:通过运动改善NAFLD的方法包括通过抑制M1或驱动M2激活来改变巨噬细胞极化的策略。然而,对不同类型的运动介导的巨噬细胞极化机制和治疗效果差异的研究还不够充分。未来的研究有必要探索不同运动治疗NAFLD的确切机制和效果差异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Exercise-mediated macrophage polarization modulates the targeted therapeutic effect of NAFLD: a review.

Purpose: This review aims to explore the exercise-mediated hepatic macrophage polarization mechanism and its effect on improving and regulating non-alcoholic fatty liver disease (NAFLD) by analyzing the pathogenesis of NAFLD and the cause of the influence of hepatic macrophage polarization. In addition to exploring the varied effects of different exercise types on macrophage polarization regulation in NAFLD, to provide a direction and basis for the treatment of NAFLD.

Methods: The research methodology involved a comprehensive search of the PubMed database using specific keywords such as "NAFLD", "macrophage polarization", and "exercise", to retrieve relevant literature published.

Results: (1) The main factors inducing NAFLD were high-fat diet, obesity, insulin resistance (IR), changes in gut microbiota, and genetic variation in susceptibility. (2) Drug treatment, nutrient induction, microfactor induction, physiological environment induction, and other factors can induce the polarization of hepatic macrophages and affect NAFLD. (3) Different intensities, types, and frequencies of exercise have different effects on polarization macrophages, and may also differently effects improving liver inflammation, fibrosis, and NAFLD. Curently, regular moderate-intensity aerobic exercise is the most effective therapy for treating NAFLD.

Conclusion: Approaches to ameliorate NAFLD with exercise involve strategies to alter macrophage polarization by inhibiting M1 or driving M2 activation. However, research on the different types of exercise-mediated macrophage polarization mechanisms and differences in therapeutic effects is not yet sufficient. Future research is necessary to explore the exact mechanisms and differences in the effects of different exercises on the treatment of NAFLD.

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