首页> 外文期刊>Stem Cell Research & Therapy >Mesenchymal stem cell-derived exosomes ameliorate cardiomyocyte apoptosis in hypoxic conditions through microRNA144 by targeting the PTEN/AKT pathway
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Mesenchymal stem cell-derived exosomes ameliorate cardiomyocyte apoptosis in hypoxic conditions through microRNA144 by targeting the PTEN/AKT pathway

机译:间充质干细胞衍生的外泌体通过靶向PTEN / AKT途径通过MicroRNA144改善缺氧条件的心肌细胞凋亡

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A growing body of evidence suggests that stem cell-derived exosomal microRNAs (miRNAs) could be a promising cardioprotective therapy in the context of hypoxic conditions. The present study aims to explore how miRNA-144 (miR-144), a miRNA contained in bone marrow mesenchymal stem cell (MSC)-derived exosomes, exerts a cardioprotective effect on cardiomyocyte apoptosis in the context of hypoxic conditions and identify the underlying mechanisms. MSCs were cultured using the whole bone marrow adherent method. MSC-derived exosomes were isolated using the total exosome isolation reagent and confirmed by nanoparticle trafficking analysis as well as western blotting using TSG101 and CD63 as markers. The hypoxic growth conditions for the H9C2 cells were established using the AnaeroPack method. Treatment conditions tested included H9C2 cells pre-incubated with exosomes, transfected with miR-144 mimics or inhibitor, or treated with the PTEN inhibitor SF1670, all under hypoxic growth conditions. Cell apoptosis was determined by flow cytometry using 7-ADD and Annexin V together. The expression levels of the miRNAs were detected by real-time PCR, and the expression levels of AKT/p-AKT, Bcl-2, caspase-3, HIF-1α, PTEN, and Rac-1 were measured by both real-time PCR and western blotting. Exosomes were readily internalized by H9C2 cells after co-incubation for 12?h. Exosome-mediated protection of H9C2 cells from apoptosis was accompanied by increasing levels of p-AKT. MiR-144 was found to be highly enriched in MSC-derived exosomes. Transfection of cells with a miR-144 inhibitor weakened exosome-mediated protection from apoptosis. Furthermore, treatment of cells grown in hypoxic conditions with miR-144 mimics resulted in decreased PTEN expression, increased p-AKT expression, and prevented H9C2 cell apoptosis, whereas treatment with a miR-144 inhibitor resulted in increased PTEN expression, decreased p-AKT expression, and enhanced H9C2 cell apoptosis in hypoxic conditions. We also validated that PTEN was a target of miR-144 by using luciferase reporter assay. Additionally, cells treated with SF1670, a PTEN-specific inhibitor, resulted in increased p-AKT expression and decreased H9C2 cell apoptosis. These findings demonstrate that MSC-derived exosomes inhibit cell apoptotic injury in hypoxic conditions by delivering miR-144 to cells, where it targets the PTEN/AKT pathway. MSC-derived exosomes could be a promising therapeutic vehicle to facilitate delivery of miRNA therapies to ameliorate ischemic conditions.
机译:越来越多的证据表明干细胞衍生的外泌体微大稻草(miRNA)在缺氧条件的背景下可能是有前途的心脏保护治疗。本研究旨在探讨MiRNA-144(miR-144),骨髓间充质干细胞(MSC)的异常含有的miRNA,对缺氧条件的背景下对心肌细胞凋亡产生心脏保护作用,并确定潜在机制。使用全骨髓粘附方法培养MSC。使用全外辐射分离试剂分离出MSC衍生的外泌体,并通过纳米粒子贩运分析证实,并且使用TSG101和CD63作为标记的蛋白质印迹。使用Anaeropack方法建立H9C2细胞的缺氧生长条件。测试的治疗条件包括与外来体预孵育的H9C2细胞,用MiR-144模拟剂或抑制剂转染,或者用Pten抑制剂SF1670处理,所有缺氧生长条件都是如此。通过使用7-加和膜蛋白V在一起通过流式细胞术测定细胞凋亡。通过实时PCR检测miRNA的表达水平,并且通过实时测量Akt / p-Akt,Bcl-2,Caspase-3,HIF-1α,PTEN和RAC-1的表达水平PCR和Western Blotting。在共孵育12μl后,通过H9C2细胞容易地内化外泌体。外出介导的H9C2细胞免受凋亡的保护伴随着增加水平的p-akt。发现miR-144在MSC衍生的外泌体中高度富集。用miR-144抑制剂转染细胞削弱了外部介导的细胞凋亡的保护。此外,用miR-144模仿在缺氧条件下生长的细胞的处理导致PTEN表达,增加的P-AKT表达增加,并且预防H9C2细胞凋亡,而用miR-144抑制剂治疗导致PTEN表达增加,降低了P-AKT表达,增强了缺氧条件下的H9C2细胞凋亡。我们还通过使用荧光素酶报告器测定验证PTEN是MIR-144的靶标。另外,用SF1670处理的细胞,PTEN特异性抑制剂,导致P-AKT表达增加并降低H9C2细胞凋亡。这些研究结果表明,MSC衍生的外来体通过向细胞递送miR-144来抑制缺氧条件下的细胞凋亡损伤,其中靶向PTEN / AKT途径。 MSC衍生的外泌体可以是有希望的治疗型载体,以促进将miRNA疗法递送以改善缺血条件。

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