IFNγ preconditioning improves neuroprotection of MSC-derived vesicles on injured retinal ganglion cells by suppressing microglia activation via miRNA-dependent ribosome activity.

IF 4.8
Extracellular vesicles and circulating nucleic acids Pub Date : 2025-02-19 eCollection Date: 2025-01-01 DOI:10.20517/evcna.2024.66
Tianjing You, Yuanxing Yang, Luodan A, Xuan Cheng, Xi Lin, Qingle Liang, Lingling Ge, Jing Xie, Siyu Chen, Na Liu, Juncai He, Haiwei Xu, Xiang Ma
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Abstract

Aim: Microglial activation plays a pivotal role in the pathogenesis of retinal ganglion cell (RGC) degeneration resulting from optic nerve crush (ONC). Small extracellular vesicles (sEVs) secreted by mesenchymal stem cells (MSCs) have the potential to prevent retinal degeneration by modulating microglial activation. In this study, we elucidated the specific effects of sEVs derived from IFN-γ-primed MSCs on the phenotypic transition of microglia and the associated pathways in ONC mice. Methods: The ONC mice model was established and administered intravitreal injection with the sEVs derived from native MSCs (native sEVs) and the sEVs derived from MSCs primed with IFN-γ (IFNγ-sEVs). Their respective effects on the survival of the retinal ganglion cells (RGCs) and the transition of microglia phenotypes were determined through visual function testing and immunohistochemical staining. Combined with mRNA seq and microRNA seq techniques, we elucidated the mechanism of modulation of microglia phenotypic transformation by sEVs derived from MSCs primed by IFNγ. Results: It demonstrated that IFNγ-sEVs exhibited superior protective effects against RGC loss and reduced inflammatory responses in the ONC retina compared to native sEVs. Both types of sEVs promoted microglia activation to disease-associated microglia (DAM) phenotype, while IFNγ-sEVs especially suppressed interferon-responsive microglia (IRM) activation during RGCs degeneration. Subsequent miRNA sequencing suggested that miR-423-5p, which exhibited the most significant differential expression between the two sEVs types and elevated expression in IFNγ-sEVs, inhibited the expression of IRM and ribosomal genes. Conclusion: These findings suggest that IFN-γ-preconditioned MSCs may enhance sEVs of neuroprotection on RGCs by suppressing IRM activation through the secretion of sEVs containing specific microRNAs in ONC mice.

IFNγ预处理通过mirna依赖的核糖体活性抑制小胶质细胞的激活,提高了msc源性囊泡对损伤视网膜神经节细胞的神经保护作用。
目的:小胶质细胞激活在视神经挤压(ONC)所致视网膜神经节细胞(RGC)变性的发病机制中起关键作用。间充质干细胞(MSCs)分泌的小细胞外囊泡(sev)有可能通过调节小胶质细胞的激活来预防视网膜变性。在本研究中,我们阐明了IFN-γ-引物MSCs衍生的sev对ONC小鼠小胶质细胞表型转变及其相关途径的特异性作用。方法:建立ONC小鼠模型,玻璃体内注射天然MSCs衍生的sev (native sev)和IFN-γ诱导的MSCs衍生的sev (IFN -γ - sev)。通过视觉功能检测和免疫组化染色,确定它们各自对视网膜神经节细胞(RGCs)存活和小胶质细胞表型转变的影响。结合mRNA seq和microRNA seq技术,我们阐明了IFNγ诱导MSCs衍生的sev调控小胶质细胞表型转化的机制。结果:与天然sev相比,ifn - γ- sev在ONC视网膜中对RGC丢失具有更好的保护作用,并能减轻炎症反应。两种类型的sev都促进了小胶质细胞向疾病相关小胶质细胞(DAM)表型的激活,而ifn γ- sev特别抑制了RGCs变性过程中干扰素反应性小胶质细胞(IRM)的激活。随后的miRNA测序表明,miR-423-5p抑制了IRM和核糖体基因的表达,miR-423-5p在两种sev类型中表达差异最显著,在ifn γ- sev中表达升高。结论:IFN-γ预处理MSCs可能通过抑制ONC小鼠体内含有特定microrna的sev的激活,从而增强对RGCs的sev神经保护作用。
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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