Microglial intervention in ischemic stroke: Roles and intervention strategies.

IF 5.9 2区 医学 Q2 CELL BIOLOGY
Neural Regeneration Research Pub Date : 2026-02-01 Epub Date: 2025-02-24 DOI:10.4103/NRR.NRR-D-24-01166
Cuiling Ji, Lixinbei Sheng, Kaijun Han, Ping Yuan, Wei Li, Lu Chen, Yongyue Gao
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引用次数: 0

Abstract

Ischemic stroke is a major cause of neurological deficits and high disability rate. As the primary immune cells of the central nervous system, microglia play dual roles in neuroinflammation and tissue repair following a stroke. Their dynamic activation and polarization states are key factors that influence the disease process and treatment outcomes. This review article investigates the role of microglia in ischemic stroke and explores potential intervention strategies. Microglia exhibit a dynamic functional state, transitioning between pro-inflammatory (M1) and anti-inflammatory (M2) phenotypes. This duality is crucial in ischemic stroke, as it maintains a balance between neuroinflammation and tissue repair. Activated microglia contribute to neuroinflammation through cytokine release and disruption of the blood-brain barrier, while simultaneously promoting tissue repair through anti-inflammatory responses and regeneration. Key pathways influencing microglial activation include Toll-like receptor 4/nuclear factor kappa B, mitogen-activated protein kinases, Janus kinase/signal transducer and activator of transcription, and phosphoinositide 3-kinase/protein kinase B/mammalian target of rapamycin pathways. These pathways are targets for various experimental therapies aimed at promoting M2 polarization and mitigating damage. Potential therapeutic agents include natural compounds found in drugs such as minocycline, as well as traditional Chinese medicines. Drugs that target these regulatory mechanisms, such as small molecule inhibitors and components of traditional Chinese medicines, along with emerging technologies such as single-cell RNA sequencing and spatial transcriptomics, offer new therapeutic strategies and clinical translational potential for ischemic stroke.

缺血性脑卒中中的小胶质细胞干预:作用和干预策略。
摘要缺血性脑卒中是导致神经功能缺损和致残率高的主要原因。作为中枢神经系统的初级免疫细胞,小胶质细胞在中风后的神经炎症和组织修复中发挥双重作用。它们的动态激活和极化状态是影响疾病进程和治疗结果的关键因素。本文综述了小胶质细胞在缺血性卒中中的作用,并探讨了可能的干预策略。小胶质细胞表现出动态的功能状态,在促炎(M1)和抗炎(M2)表型之间转换。这种双重性在缺血性中风中是至关重要的,因为它维持了神经炎症和组织修复之间的平衡。激活的小胶质细胞通过细胞因子的释放和血脑屏障的破坏促进神经炎症,同时通过抗炎反应和再生促进组织修复。影响小胶质细胞活化的关键通路包括toll样受体4/核因子κ B、丝裂原活化蛋白激酶、Janus激酶/信号转导和转录激活因子、磷酸肌苷3-激酶/蛋白激酶B/哺乳动物雷帕霉素靶点通路。这些通路是各种旨在促进M2极化和减轻损伤的实验性疗法的靶点。潜在的治疗药物包括二甲胺四环素等药物中的天然化合物,以及传统的中药。针对这些调节机制的药物,如小分子抑制剂和中药成分,以及单细胞RNA测序和空间转录组学等新兴技术,为缺血性中风提供了新的治疗策略和临床转化潜力。
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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来源期刊
Neural Regeneration Research
Neural Regeneration Research CELL BIOLOGY-NEUROSCIENCES
CiteScore
8.00
自引率
9.80%
发文量
515
审稿时长
1.0 months
期刊介绍: Neural Regeneration Research (NRR) is the Open Access journal specializing in neural regeneration and indexed by SCI-E and PubMed. The journal is committed to publishing articles on basic pathobiology of injury, repair and protection to the nervous system, while considering preclinical and clinical trials targeted at improving traumatically injuried patients and patients with neurodegenerative diseases.
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