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干细胞衍生的外泌体通过一种新型的外泌体/circHIPK3/FOXO3a 途径防止细胞焦亡并修复缺血性肌肉损伤。

Stem cell-derived exosomes prevent pyroptosis and repair ischemic muscle injury through a novel exosome/circHIPK3/ FOXO3a pathway.

机构信息

Institute for Cardiovascular Science and Department of Cardiovascular Surgery, First Affiliated Hospital and Medical College of Soochow University, Suzhou, Jiangsu 215123, P. R. China.

Department of Cardiology, Changzheng Hospital, Second Military Medical University, Shanghai 200003, P. R. China.

出版信息

Theranostics. 2020 May 18;10(15):6728-6742. doi: 10.7150/thno.42259. eCollection 2020.

Abstract

Ischemic injury of the skeletal muscle remains a serious clinical problem and currently there is no effective therapy. The aim of the present study is to determine whether human umbilical cord mesenchymal stem cells- derived exosomes (UMSC-Exo) could repair ischemic injury by releasing circular RNA. To create hindlimb ischemia, we surgically ligated the left femoral artery in C57BL/6 mice. Using circRNA-seq analyses of total RNA from ischemic and control muscles, we found reduced expression of circHIPK3 in the ischemic muscle. To explore the role of circHIPK3 in ischemic injury, the mice were randomly assigned into three groups after surgery: 1) vehicle; 2) UMSC-Exo; 3) UMSC-Exo and siRNA targeting circHIPK3 (UMSC-Exo /si-circHIPK3). UMSC-Exo treatment significantly increased expression of circHIPK3 and improved blood perfusion, running distance and muscle force, which were reversed by injection of UMSC-Exo /si-circHIPK3, suggesting that UMSC-Exo improve muscle function by releasing circHIPK3. UMSC-Exo treatment also inhibited ischemia induced pyroptosis - cell death caused by inflammasome as evidenced by activation of NLRP3, cleaved caspase-1, and subsequent increase of IL-1β and IL-18, and the effects were reversed by injection UMSC-Exo /si-circHIPK3. Bioinformatic analysis identified miR-421/FOXO3a as a potential target for circHIPK3, which was confirmed by luciferase reporter assay. Knockdown of circHIPK3 in C2C12 cells resulted in increased expression of miR-421. We established an model of pyroptosis by stimulating C2C12 cells with LPS and ATP. LPS and ATP treatment resulted in reduced expression of circHIPK3 and increased expression of miR-421, which was prevented by UMSC-Exo. Western blot analysis showed reduced levels of NLRP3 and cleaved caspase-1 when cells were treated by UMSC-Exo. The expression of FOXO3a in C2C12 cells was increased in the presence of miR-421 inhibitor, and the expression was reduced when cells were treated by LPS and ATP. Importantly, the expression of FOXO3a was upregulated by UMSC-Exo but was reduced when si-circHIPK3 was present. Using loss/gain-of function method, we demonstrated that miR-421/FOXO3a is the direct target of circHIPK3, and UMSC-Exo prevent ischemic injury by releasing circHIPK3, which in turn down regulate miR-421, resulting in increased expression of FOXO3a, leading to inhibition of pyroptosis and release of IL-1β and IL-18.

摘要

骨骼肌缺血性损伤仍然是一个严重的临床问题,目前尚无有效的治疗方法。本研究旨在确定人脐带间充质干细胞衍生的外泌体(UMSC-Exo)是否可以通过释放环状 RNA 来修复缺血性损伤。为了建立后肢缺血模型,我们通过手术结扎 C57BL/6 小鼠的左股动脉。通过对缺血和对照肌肉总 RNA 的 circRNA-seq 分析,我们发现 circHIPK3 在缺血肌肉中的表达降低。为了探索 circHIPK3 在缺血性损伤中的作用,手术后将小鼠随机分为三组:1)载体;2)UMSC-Exo;3)UMSC-Exo 和靶向 circHIPK3 的 siRNA(UMSC-Exo/si-circHIPK3)。UMSC-Exo 治疗显著增加了 circHIPK3 的表达,并改善了血液灌注、跑步距离和肌肉力量,而注射 UMSC-Exo/si-circHIPK3 则逆转了这些作用,表明 UMSC-Exo 通过释放 circHIPK3 来改善肌肉功能。UMSC-Exo 治疗还抑制了缺血诱导的细胞焦亡——炎症小体引起的细胞死亡,这一点从 NLRP3、切割的 caspase-1 的激活以及随后的 IL-1β 和 IL-18 的增加得到证实,而注射 UMSC-Exo/si-circHIPK3 则逆转了这种作用。生物信息学分析确定了 miR-421/FOXO3a 作为 circHIPK3 的潜在靶点,这一点通过荧光素酶报告基因检测得到了证实。在 C2C12 细胞中敲低 circHIPK3 导致 miR-421 的表达增加。我们通过用 LPS 和 ATP 刺激 C2C12 细胞建立了细胞焦亡模型。LPS 和 ATP 处理导致 circHIPK3 的表达降低和 miR-421 的表达增加,而 UMSC-Exo 则阻止了这种情况。Western blot 分析显示,当用 UMSC-Exo 处理细胞时,NLRP3 和切割的 caspase-1 的水平降低。当用 LPS 和 ATP 处理时,C2C12 细胞中 FOXO3a 的表达增加,而 miR-421 抑制剂存在时,FOXO3a 的表达减少。重要的是,UMSC-Exo 上调了 FOXO3a 的表达,但当存在 si-circHIPK3 时,其表达减少。通过丧失/获得功能方法,我们证明了 miR-421/FOXO3a 是 circHIPK3 的直接靶点,UMSC-Exo 通过释放 circHIPK3 来预防缺血性损伤,从而反过来下调 miR-421,导致 FOXO3a 的表达增加,从而抑制细胞焦亡和 IL-1β 和 IL-18 的释放。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4838/7295049/5057645e96a3/thnov10p6728g001.jpg

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