巨噬细胞的可塑性:信号通路、组织修复和再生。

IF 10.7 Q1 MEDICINE, RESEARCH & EXPERIMENTAL MedComm Pub Date : 2024-08-01 DOI:10.1002/mco2.658
Lingfeng Yan, Jue Wang, Xin Cai, Yih-Cherng Liou, Han-Ming Shen, Jianlei Hao, Canhua Huang, Gaoxing Luo, Weifeng He
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引用次数: 0

摘要

巨噬细胞是多功能的免疫细胞,具有显著的可塑性,能适应不同的组织微环境并发挥各种功能。传统上,巨噬细胞被分为经典活化(M1)和替代活化(M2)两种表型。信号通路、转录调节因子和表观遗传修饰的复杂相互作用协调了巨噬细胞的极化,使它们能够动态地对各种刺激做出反应。在这里,我们全面概述了支配巨噬细胞可塑性的信号级联,重点介绍了Toll样受体、转录信号转导和激活蛋白、核受体和微RNA的作用。我们还讨论了巨噬细胞新陈代谢重编程和训练有素的免疫力等新兴概念,这些概念有助于提高巨噬细胞的功能适应性。巨噬细胞的可塑性在组织修复和再生中起着举足轻重的作用,巨噬细胞能协调炎症、血管生成和基质重塑,从而恢复组织的稳态。利用巨噬细胞可塑性的潜力,可以开发出针对巨噬细胞极化的新型治疗策略,用于治疗各种疾病,包括慢性伤口、纤维化疾病和炎症。最终,深入了解巨噬细胞可塑性的分子机制将为创新再生医学和组织工程方法铺平道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Macrophage plasticity: signaling pathways, tissue repair, and regeneration

Macrophages are versatile immune cells with remarkable plasticity, enabling them to adapt to diverse tissue microenvironments and perform various functions. Traditionally categorized into classically activated (M1) and alternatively activated (M2) phenotypes, recent advances have revealed a spectrum of macrophage activation states that extend beyond this dichotomy. The complex interplay of signaling pathways, transcriptional regulators, and epigenetic modifications orchestrates macrophage polarization, allowing them to respond to various stimuli dynamically. Here, we provide a comprehensive overview of the signaling cascades governing macrophage plasticity, focusing on the roles of Toll-like receptors, signal transducer and activator of transcription proteins, nuclear receptors, and microRNAs. We also discuss the emerging concepts of macrophage metabolic reprogramming and trained immunity, contributing to their functional adaptability. Macrophage plasticity plays a pivotal role in tissue repair and regeneration, with macrophages coordinating inflammation, angiogenesis, and matrix remodeling to restore tissue homeostasis. By harnessing the potential of macrophage plasticity, novel therapeutic strategies targeting macrophage polarization could be developed for various diseases, including chronic wounds, fibrotic disorders, and inflammatory conditions. Ultimately, a deeper understanding of the molecular mechanisms underpinning macrophage plasticity will pave the way for innovative regenerative medicine and tissue engineering approaches.

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CiteScore
6.70
自引率
0.00%
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审稿时长
10 weeks
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