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从神经损伤模型和假手术对照小鼠中分离的小细胞外囊泡差异调节原代小胶质细胞中的基因表达。

Small Extracellular Vesicles From Spared Nerve Injury Model and Sham Control Mice Differentially Regulate Gene Expression in Primary Microglia.

机构信息

Pharmacology & Physiology, Drexel University College of Medicine, Philadelphia, Pennsylvania.

Microbiology & Immunology, Drexel University College of Medicine, Philadelphia, Pennsylvania.

出版信息

J Pain. 2023 Sep;24(9):1570-1581. doi: 10.1016/j.jpain.2023.03.015. Epub 2023 Apr 11.

Abstract

Nerve injury outcomes might be predicted by examining small extracellular vesicles (sEVs) in circulation, as their biomolecular cargo facilitates cellular communication and can alter transcriptional state and behavior of recipient cells. We found that sEVs from the serum of spared nerve injury (SNI) model male mice had 7 differentially expressed miRNAs compared to sEVs from sham-operated control mice 4 weeks postsurgery. We investigated how these sEVs alter transcription in primary cortical microglia, a crucial mediator of neuropathic pain, using RNA sequencing. While the uptake of sEVs from both SNI model and sham groups changed gene expression in microglia compared to PBS treatment, sEVs from the sham group induced a more drastic change, particularly in genes involved in immune response. This was recapitulated by increased levels of pro-inflammatory cytokines and chemokines in microglia incubated with sEVs from sham control compared to sEVs from SNI model, naïve mice, or PBS. However, treating microglia with sEVs from female mice showed that serum sEVs derived from female SNI mice but not from female sham mice induced a more pronounced microglial secretion of pro-inflammatory mediators. Our data demonstrate that the molecular changes induced by sham surgery injuring skin and muscles are reflected in circulating sEVs in male mice 4 weeks later. Thus, when using sEVs from sham mice as control in comparative mechanistic studies after nerve injury, sex of mice should be taken into consideration. PERSPECTIVE: Microglial uptake of sEVs from male sham control mice induces higher pro-inflammatory responses compared to SNI sEVs but the reverse was observed upon treatment with sEVs from female mice. Wound healing may have a long-term impact on sEVs in male mice and should be considered for comparative studies using sEVs.

摘要

神经损伤的结果可能可以通过检查循环中小细胞外囊泡(sEVs)来预测,因为它们的生物分子货物促进细胞间通讯,并可以改变受体细胞的转录状态和行为。我们发现,与手术后 4 周的假手术对照小鼠的血清 sEVs 相比, spared nerve injury(SNI)模型雄性小鼠的血清 sEVs 中有 7 个差异表达的 miRNA。我们使用 RNA 测序研究了这些 sEVs 如何改变原代皮质小胶质细胞的转录,小胶质细胞是神经病理性疼痛的关键介质。与 PBS 处理相比,来自 SNI 模型和假手术组的 sEVs 的摄取均改变了小胶质细胞中的基因表达,但来自假手术组的 sEVs 引起的变化更为剧烈,特别是在参与免疫反应的基因中。与 SNI 模型、未处理的小鼠或 PBS 相比,用来自假手术对照的 sEVs 孵育的小胶质细胞中促炎细胞因子和趋化因子的水平增加,证实了这一点。然而,用来自雌性小鼠的 sEVs 处理小胶质细胞表明,来自雌性 SNI 小鼠而非雌性假手术小鼠的血清 sEVs 诱导了更明显的小胶质细胞促炎介质分泌。我们的数据表明,4 周后,损伤皮肤和肌肉的假手术引起的分子变化反映在雄性小鼠的循环 sEVs 中。因此,在神经损伤后进行比较机制研究时,当使用假手术对照小鼠的 sEVs 作为对照时,应考虑小鼠的性别。观点:与 SNI sEVs 相比,来自雄性假手术对照小鼠的 sEVs 被小胶质细胞摄取会引起更高的促炎反应,但在用来自雌性小鼠的 sEVs 处理时则相反。伤口愈合可能对雄性小鼠的 sEVs 产生长期影响,在使用 sEVs 进行比较研究时应予以考虑。

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