首页> 外文期刊>American Journal of Physiology >Activation of host tissue trophic factors through JAK-STAT3 signaling: a mechanism of mesenchymal stem cell-mediated cardiac repair.
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Activation of host tissue trophic factors through JAK-STAT3 signaling: a mechanism of mesenchymal stem cell-mediated cardiac repair.

机译:通过JAK-STAT3信号激活宿主组织营养因子:间充质干细胞介导的心脏修复机制。

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We recently demonstrated a cardiac therapeutic regimen based on injection of bone marrow mesenchymal stem cells (MSCs) into the skeletal muscle. Although the injected MSCs were trapped in the local musculature, the extracardiac cell delivery approach repaired the failing hamster heart. This finding uncovers a tissue repair mechanism mediated by trophic factors derived from the injected MSCs and local musculature that can be explored for minimally invasive stem cell therapy. However, the trophic factors involved in cardiac repair and their actions remain largely undefined. We demonstrate here a role of MSC-derived IL-6-type cytokines in cardiac repair through engagement of the skeletal muscle JAK-STAT3 axis. The MSC IL-6-type cytokines activated JAK-STAT3 signaling in cultured C2C12 skeletal myocytes and caused increased expression of the STAT3 target genes hepatocyte growth factor (HGF) and VEGF, which was inhibited by glycoprotein 130 (gp130) blockade. These in vitro findings were corroborated by in vivo studies, showing that the MSC-injected hamstrings exhibited activated JAK-STAT3 signaling and increased growth factor/cytokine production. Elevated host tissue growth factor levels were also detected in quadriceps, liver, and brain, suggesting a possible global trophic effect. Paracrine actions of these host tissue-derived factors activated the endogenous cardiac repair mechanisms in the diseased heart mediated by Akt, ERK, and JAK-STAT3. Administration of the cell-permeable JAK-STAT inhibitor WP1066 abrogated MSC-mediated host tissue growth factor expression and functional improvement. The study illustrates that the host tissue trophic factor network can be activated by MSC-mediated JAK-STAT3 signaling for tissue repair.
机译:我们最近展示了一种基于将骨髓间充质干细胞(MSCs)注入骨骼肌的心脏治疗方案。尽管注射的MSC被困在局部肌肉组织中,但心外膜细胞递送方法修复了衰竭的仓鼠心脏。这一发现揭示了由注射的MSC和局部肌肉组织衍生的营养因子介导的组织修复机制,该机制可用于微创干细胞治疗。然而,涉及心脏修复的营养因子及其作用在很大程度上尚不确定。我们在这里证明了通过骨骼肌JAK-STAT3轴的参与,MSC衍生的IL-6型细胞因子在心脏修复中的作用。 MSC IL-6型细胞因子激活了培养的C2C12骨骼肌细胞中的JAK-STAT3信号传导,并引起STAT3靶基因肝细胞生长因子(HGF)和VEGF的表达增加,这被糖蛋白130(gp130)阻断所抑制。这些体外研究结果通过体内研究得到证实,表明MSC注射的ham绳肌表现出活化的JAK-STAT3信号传导并增加了生长因子/细胞因子的产生。在股四头肌,肝脏和大脑中也检测到宿主组织生长因子水平升高,提示可能存在总体营养作用。这些宿主组织衍生因子的旁分泌作用激活了由Akt,ERK和JAK-STAT3介导的患病心脏的内源性心脏修复机制。细胞渗透性JAK-STAT抑制剂WP1066的使用废除了MSC介导的宿主组织生长因子的表达和功能改善。研究表明,宿主组织营养因子网络可以被MSC介导的JAK-STAT3信号激活以修复组织。

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