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首页> 外文期刊>Biochemical and Biophysical Research Communications >Exosomes derived from human umbilical vein endothelial cells promote neural stem cell expansion while maintain their stemness in culture
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Exosomes derived from human umbilical vein endothelial cells promote neural stem cell expansion while maintain their stemness in culture

机译:源自人脐静脉内皮细胞的外泌体促进神经干细胞膨胀,同时保持其培养物的茎

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摘要

Abstract The neural stem cell (NSC) niche in subventricular zone (SVZ) of adult mammalian brain contains dense vascular plexus, where endothelial cells (ECs) regulate NSCs by releasing plenty of angiocrine factors. However, the role of ECs-derived exosomes, a novel type of mediators of intercellular communications, in the regulation of NSCs remains unclear. In the current study, primary NSCs isolated from embryonic mouse brains form more neurospheres when cultured in the presence of human umbilical vein endothelial cells (HUVECs). The supportive role of ECs in the coculture was significantly attenuated when GW4869, a blocker of exosome formation, was included, suggesting that HUVECs-derived exosomes played a significant role in supporting NSCs. In order to investigate the role of ECs-derived exosomes on NSCs, we collected exosomes from HUVECs. We found that HUVECs-derived exosomes could significantly promote the formation of neurospheres by primary murine NSCs. EdU incorporation and TUNEL assays indicated that the proliferation of NSCs increased while apoptosis decreased when cultured in the presence of HUVECs-derived exosomes. NSCs incubated with the HUVECs-derived exosomes maintained their potential of multi-lineage differentiation potentials. The expression of stemness-related genes was up-regulated. These data suggested that ECs-derived exosomes could play an importantly role in NSC niche, and they might be used as a reagent for ex?vivo NSC amplification for medical application.
机译:摘要成人哺乳动物脑细胞胎盘区(SVZ)中的神经干细胞(NSC)Niche含有致密的血管丛,其中内皮细胞(ECS)通过释放大量血管内容器来调节NSC。然而,在NSC的调节中,ECS衍生的外泌体是ECS衍生的外泌体,一种小细胞间通信介质的介质仍然尚不清楚。在目前的研究中,当在人脐静脉内皮细胞(HUVECS)存在下培养时,从胚胎小鼠大脑中分离的原发性NSC形成更多的神经球。当包括外出组形成的阻断剂,ECS在共培养物中ECS在共培养物中的支持性作用显着衰减,表明HUVECS衍生的外泌体在支持NSCs中发挥了重要作用。为了探讨ECS衍生的外来体对NSCs的作用,我们从Huvecs收集外来体。我们发现Huvecs衍生的外来体可以通过原发性小鼠NSCs显着促进神经球的形成。 EDU掺入和TUNEL测定表明,在HUVECS衍生的外索体存在下培养时,NSCs的增殖增加而细胞凋亡降低。与Huvecs衍生的外泌体孵育的NSC保持其潜在的多谱分化潜力。止咳相关基因的表达上调。这些数据表明ECS衍生的外泌体可以在NSC Niche中发挥重要作用,它们可能用作用于医疗应用的EXα体内扩增的试剂。

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  • 作者单位

    Department of Medical Genetics and Developmental Biology Fourth Military Medical University;

    Department of Medical Genetics and Developmental Biology Fourth Military Medical University;

    Department of Medical Genetics and Developmental Biology Fourth Military Medical University;

    Department of Medical Genetics and Developmental Biology Fourth Military Medical University;

    Department of Medical Genetics and Developmental Biology Fourth Military Medical University;

    Department of Medical Genetics and Developmental Biology Fourth Military Medical University;

    Department of Medical Genetics and Developmental Biology Fourth Military Medical University;

    Department of Medical Genetics and Developmental Biology Fourth Military Medical University;

    Department of Cardiovascular Surgery Xijing Hospital Fourth Military Medical University;

    Department of Medical Genetics and Developmental Biology Fourth Military Medical University;

    Department of Medical Genetics and Developmental Biology Fourth Military Medical University;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学 ;
  • 关键词

    Exosomes; Neural stem cells; Endothelial cells; Stemness;

    机译:外来肌肉;神经干细胞;内皮细胞;茎;

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