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首页> 外文期刊>International journal of biological sciences >Exosomes Derived from Human Induced Pluripotent Stem Cells-Endothelia Cells Promotes Postnatal Angiogenesis in Mice Bearing Ischemic Limbs
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Exosomes Derived from Human Induced Pluripotent Stem Cells-Endothelia Cells Promotes Postnatal Angiogenesis in Mice Bearing Ischemic Limbs

机译:从人诱导的多能干细胞-内皮细胞衍生的外来体促进小鼠缺血肢体的产后血管生成。

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Induced pluripotent stem cell (iPSC) derived endothelial cells (ECs) is a novel therapeutic option for ischemic diseases. Although the detailed mechanism of this novel therapy remains unknown, emerging evidence has demonstrated that exosomes derived from hiPSC-ECs play a critical role in this approach. In this study, we first isolated and characterized the exosomes from iPSCs-ECs (hiPSC-EC-Exo) and determined the functional roles of hiPSC-EC-Exo in neovascularization and the underlying mechanism. Further, we evaluated the effect of exosomes derived from hiPS-ECs on promoting angiogenesis in a mouse model bearing ischemic limbs. Our results showed that miR-199b-5p, an miRNA highly associated with angiogenesis, is significantly upregulated during the differentiation of hiPSC-ECs. Mechanically, our studies found that hiPSC-ECs expressing miR-199b-5p significantly promote cell migration, proliferation and tube formation through Jagged-1-dependent upregulation of VEGFR2 in HUVECs. Similarly, coculture of hiPSC-ECs-Exo with HUVECs also resulted in a significant improvement in HUVEC migration, proliferation, and tube formation, suggesting that exosome-mediated cell-cell communication in a paracrine manner may serve as a fundamental mechanism for iPSC-EC-based treatment. Consequently, we found that the transfer of hiPSC-ECs enriched with miR-199b-5p significantly enhanced micro-vessel density and blood perfusion in ischemic limbs in vivo . Taken together, our studies were the first to demonstrate that transfer of hiPSC-ECs-Exo is a promising approach to treat ischemic injury via the mechanism of promoting neovascularization.
机译:诱导多能干细胞(iPSC)衍生的内皮细胞(ECs)是缺血性疾病的新型治疗选择。尽管这种新疗法的详细机制仍然未知,但新兴证据表明,源自hiPSC-EC的外泌体在该方法中起着至关重要的作用。在这项研究中,我们首先从iPSCs-ECs(hiPSC-EC-Exo)分离并鉴定了外泌体,并确定了hiPSC-EC-Exo在新生血管形成中的功能作用及其潜在机制。此外,我们评估了来自hiPS-ECs的外来体在促进缺血性肢体小鼠模型中促进血管生成的作用。我们的研究结果表明,miR-199b-5p(一种与血管生成高度相关的miRNA)在hiPSC-EC分化过程中显着上调。在机械上,我们的研究发现,表达miR-199b-5p的hiPSC-EC通过HUVEC中VEGFR2的Jagged-1依赖性上调显着促进细胞迁移,增殖和管形成。同样,hiPSC-ECs-Exo与HUVECs的共培养也导致HUVEC迁移,增殖和管形成的显着改善,这表明外泌体介导的外来体介导的细胞间通讯可能是iPSC-EC的基本机制基础的治疗。因此,我们发现体内富含miR-199b-5p的hiPSC-EC的转移显着增强了缺血肢体的微血管密度和血液灌注。综上所述,我们的研究首次证明,hiPSC-ECs-Exo的转移是一种通过促进新血管形成的机制治疗缺血性损伤的有前途的方法。

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