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自噬激活的髓核细胞通过靶向 MMP-13 来递送外泌体 miR-27a ,从而防止细胞外基质降解。

Autophagy-activated nucleus pulposus cells deliver exosomal miR-27a to prevent extracellular matrix degradation by targeting MMP-13.

机构信息

Department of Orthopaedic Surgery, Zhongshan Hospital, Fudan University, Shanghai, China.

出版信息

J Orthop Res. 2021 Sep;39(9):1921-1932. doi: 10.1002/jor.24880. Epub 2020 Oct 29.

Abstract

Although autophagy may be beneficial for maintaining the metabolic balance of the extracellular matrix (ECM) in the nucleus pulposus (NP) and its vitality under inflammation, the underlying mechanism still remains unclear. A previous study found that autophagy activation stimulated the release of exosomes in normal chondrocytes, which are located in a similar avascular environment and share many common features with those of nucleus pulposus cells (NPCs). This study explored the protective effect on matrix degradation in the NP by exosomes derived from autophagy-activated NPCs and exosomal microRNAs. NPCs-derived exosomes (NPCs-Exos) were isolated from culture medium of either normal NPCs or rapamycin-treated NPCs and quantified by nanoparticle tracking analysis. The effect of rapamycin-treated NPC-derived exosomes on NPCs were assessed by coculture with interleukin 1β (IL-1β)-stimulated NPCs. After examination of six major proteinases of the ECM, matrix metalloproteinase 13 (MMP-13) was chosen for further study. miR-27a, which targets MMP-13, was investigated through previous studies and bioinformatics tool. The levels of miR-27a were upregulated in both rapamycin-treated NPCs and their exosomes, compared to the control. When exosomal miR-27a was transferred into NPCs, it alleviated IL-1β-induced degradation of the NPC ECM by targeting MMP-13. Autophagy activation may promote the release of NPCs-derived exosomes and thereby prevent the NPC matrix from degradation. Autophagy activation also alleviates intervertebral disc degeneration (IDD), at least partly via exosomal miR-27a, which restrains MMP-13 expression under IL-1β stimulation. Our work elucidates a new mechanism for how autophagy may participate in preventing IDD, which may be a promising therapeutic strategy.

摘要

虽然自噬可能有利于维持核髓核(NP)中细胞外基质(ECM)的代谢平衡及其在炎症下的活力,但潜在机制仍不清楚。先前的一项研究发现,自噬激活刺激了正常软骨细胞中细胞外体的释放,正常软骨细胞位于类似的无血管环境中,与核髓核细胞(NPCs)有许多共同特征。本研究探讨了自噬激活的 NPC 衍生的细胞外体及其细胞外体 microRNAs 对 NP 基质降解的保护作用。通过纳米颗粒跟踪分析从正常 NPC 或雷帕霉素处理的 NPC 的培养物中分离 NPC 衍生的细胞外体(NPCs-Exos)并进行定量。通过与白细胞介素 1β(IL-1β)刺激的 NPC 共培养来评估雷帕霉素处理的 NPC 衍生的细胞外体对 NPC 的影响。在检查 ECM 的六种主要蛋白酶后,选择基质金属蛋白酶 13(MMP-13)进行进一步研究。通过先前的研究和生物信息学工具研究了靶向 MMP-13 的 miR-27a。与对照相比,雷帕霉素处理的 NPC 及其细胞外体中的 miR-27a 水平上调。当外泌体 miR-27a 被转染到 NPC 中时,它通过靶向 MMP-13 减轻了 IL-1β 诱导的 NPC ECM 降解。自噬激活可能会促进 NPC 衍生的细胞外体的释放,从而防止 NPC 基质降解。自噬激活还通过外泌体 miR-27a 减轻椎间盘退变(IDD),至少部分通过在 IL-1β 刺激下抑制 MMP-13 表达。我们的工作阐明了自噬如何参与预防 IDD 的新机制,这可能是一种有前途的治疗策略。

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