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靶向巨噬细胞极化以恢复组织损伤后的内稳态

Targeting Macrophage Polarization for Reinstating Homeostasis following Tissue Damage.

机构信息

Immuno-Bioengineering Group, School of Life Sciences, University of Nottingham, Nottingham NG7 2RD, UK.

Medical School, Faculty of Medicine and Health Sciences, University of Nottingham, Nottingham NG7 2RD, UK.

出版信息

Int J Mol Sci. 2024 Jul 2;25(13):7278. doi: 10.3390/ijms25137278.

Abstract

Tissue regeneration and remodeling involve many complex stages. Macrophages are critical in maintaining micro-environmental homeostasis by regulating inflammation and orchestrating wound healing. They display high plasticity in response to various stimuli, showing a spectrum of functional phenotypes that vary from M1 (pro-inflammatory) to M2 (anti-inflammatory) macrophages. While transient inflammation is an essential trigger for tissue healing following an injury, sustained inflammation (e.g., in foreign body response to implants, diabetes or inflammatory diseases) can hinder tissue healing and cause tissue damage. Modulating macrophage polarization has emerged as an effective strategy for enhancing immune-mediated tissue regeneration and promoting better integration of implantable materials in the host. This article provides an overview of macrophages' functional properties followed by discussing different strategies for modulating macrophage polarization. Advances in the use of synthetic and natural biomaterials to fabricate immune-modulatory materials are highlighted. This reveals that the development and clinical application of more effective immunomodulatory systems targeting macrophage polarization under pathological conditions will be driven by a detailed understanding of the factors that regulate macrophage polarization and biological function in order to optimize existing methods and generate novel strategies to control cell phenotype.

摘要

组织再生和重塑涉及许多复杂的阶段。巨噬细胞通过调节炎症和协调伤口愈合,在维持微环境稳态方面起着关键作用。它们对各种刺激表现出高度的可塑性,显示出从 M1(促炎)到 M2(抗炎)巨噬细胞的一系列功能表型。虽然短暂的炎症是损伤后组织愈合的必要触发因素,但持续的炎症(例如,植入物的异物反应、糖尿病或炎症性疾病)会阻碍组织愈合并导致组织损伤。调节巨噬细胞极化已成为增强免疫介导的组织再生和促进植入材料更好地整合到宿主中的有效策略。本文首先概述了巨噬细胞的功能特性,然后讨论了调节巨噬细胞极化的不同策略。重点介绍了合成和天然生物材料在制备免疫调节材料方面的进展。这表明,为了优化现有方法并生成控制细胞表型的新策略,需要详细了解调节巨噬细胞极化和生物学功能的因素,从而推动针对病理条件下巨噬细胞极化的更有效的免疫调节系统的开发和临床应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1f21/11242417/faa72a70049f/ijms-25-07278-g001.jpg

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