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协调前线:HDAC3-miKO招募巨噬细胞援军以加速中风后髓鞘碎片清除

Orchestrating the frontline: HDAC3-miKO recruits macrophage reinforcements for accelerated myelin debris clearance after stroke.

作者信息

Li Jiaying, Wang Chenran, Zhang Yue, Huang Yichen, Shi Ziyu, Zhang Yuwen, Wang Yana, Chen Shuning, Yuan Yiwen, Wang He, Mao Leilei, Gao Yanqin

机构信息

State Key Laboratory of Medical Neurobiology, MOE Frontiers Center for Brain Science, and Institutes of Brain Science, Fudan University, Shanghai, China.

Institute of Science and Technology for Brain-Inspired Intelligence, Fudan University, Shanghai, China.

出版信息

Theranostics. 2025 Jan 1;15(2):632-655. doi: 10.7150/thno.103449. eCollection 2025.

Abstract

White matter has emerged as a key therapeutic target in ischemic stroke due to its role in sensorimotor and cognitive outcomes. Our recent findings have preliminarily revealed a potential link between microglial HDAC3 and white matter injury following stroke. However, the mechanisms by which microglial HDAC3 mediates these effects remain unclear. We generated microglia-specific HDAC3 knockout mice (HDAC3-miKO). DTI, electrophysiological technique and transmission electron microscopy were used to assess HDAC3-miKO's effects on white matter. RNA sequencing, flow cytometry, immunofluorescence staining and phagocytosis assay were conducted to investigate the mechanism by which HDAC3-miKO ameliorated white matter injury. Macrophage depletion and reconstitution experiments further confirmed the involvement of macrophage CCR2 in the enhanced white matter repair and sensorimotor function in HDAC3-miKO mice. HDAC3-miKO promoted post-stroke oligodendrogenesis and long-term histological and functional integrity of white matter without affecting early-stage white matter integrity. In the acute phase, HDAC3-deficient microglia showed enhanced chemotaxis, recruiting macrophages to the infarct core probably by CCL2/CCL7, where dMBP-labelled myelin debris surged and coincided with their infiltration. Infiltrated macrophages outperformed resident microglia in myelin phagocytosis, potentially serving as true pioneers in myelin debris clearance. Although macrophage phagocytosis potential was similar between HDAC3-miKO and WT mice, increased macrophage numbers in HDAC3-miKO accelerated myelin debris clearance. Reconstitution with CCR2-KO macrophages in HDAC3-miKO mice slowed this clearance, reversing HDAC3-miKO's beneficial effects. Our study demonstrates that HDAC3-deficient microglia promote post-stroke remyelination by recruiting macrophages to accelerate myelin debris clearance, underscoring the essential role of infiltrated macrophages in HDAC3-miKO-induced beneficial outcomes. These findings advance our understanding of microglial HDAC3's role and suggest therapeutic potential for targeting microglial HDAC3 in ischemic stroke.

摘要

由于白质在感觉运动和认知结果中发挥的作用,它已成为缺血性中风的关键治疗靶点。我们最近的研究结果初步揭示了小胶质细胞HDAC3与中风后白质损伤之间的潜在联系。然而,小胶质细胞HDAC3介导这些效应的机制仍不清楚。我们构建了小胶质细胞特异性HDAC3基因敲除小鼠(HDAC3-miKO)。采用弥散张量成像(DTI)、电生理技术和透射电子显微镜来评估HDAC3-miKO对白质的影响。进行RNA测序、流式细胞术、免疫荧光染色和吞噬试验,以研究HDAC3-miKO改善白质损伤的机制。巨噬细胞清除和重建实验进一步证实了巨噬细胞CCR2参与了HDAC3-miKO小鼠白质修复增强和感觉运动功能改善。HDAC3-miKO促进中风后少突胶质细胞生成以及白质的长期组织学和功能完整性,而不影响早期白质完整性。在急性期,HDAC3缺陷的小胶质细胞表现出增强的趋化性,可能通过CCL2/CCL7将巨噬细胞招募到梗死核心,在那里dMBP标记的髓磷脂碎片激增并与它们的浸润同时发生。浸润的巨噬细胞在髓磷脂吞噬方面优于驻留的小胶质细胞,可能是髓磷脂碎片清除的真正先驱。尽管HDAC3-miKO和野生型小鼠之间巨噬细胞吞噬潜力相似,但HDAC3-miKO中巨噬细胞数量增加加速了髓磷脂碎片清除。用CCR2基因敲除巨噬细胞重建HDAC3-miKO小鼠减缓了这种清除,逆转了HDAC3-miKO的有益作用。我们的研究表明,HDAC3缺陷的小胶质细胞通过招募巨噬细胞加速髓磷脂碎片清除来促进中风后髓鞘再生,强调了浸润的巨噬细胞在HDAC3-miKO诱导的有益结果中的重要作用。这些发现推进了我们对小胶质细胞HDAC3作用的理解,并提示了针对缺血性中风中靶向小胶质细胞HDAC3的治疗潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5566/11671378/feaef6946fdb/thnov15p0632g001.jpg

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