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首页> 外文期刊>Scientific reports. >Exosome-Mimetic Nanovesicles from Hepatocytes promote hepatocyte proliferation in vitro and liver regeneration in vivo
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Exosome-Mimetic Nanovesicles from Hepatocytes promote hepatocyte proliferation in vitro and liver regeneration in vivo

机译:来自肝细胞的外泌体纳米粒子促进体外体外肝细胞增殖和肝脏再生

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摘要

The liver has great regenerative capacity after functional mass loss caused by injury or disease. Many studies have shown that primary hepatocyte-derived exosomes, which can deliver biological information between cells, promote the regenerative process of the liver. However, the yield of exosomes is very limited. Recent studies have demonstrated that exosome-mimetic nanovesicles (NVs) can be prepared from cells with almost 100 times the production yield compared with exosomes. Thus, this study investigated the therapeutic capacity of exosome-mimetic NVs from primary hepatocytes in liver regeneration. Exosome-mimetic NVs were prepared by serial extrusions of cells through polycarbonate membranes, and the yield of these NVs was more than 100 times that of exosomes. The data indicated that the NVs could promote hepatocyte proliferation and liver regeneration by significantly enhancing the content of sphingosine kinase 2 in recipient cells. To the best of our knowledge, this is the first time that exosome-mimetic NVs from primary hepatocytes have been prepared, and these NVs have components similar to exosomes from primary hepatocytes and, in some respects, biofunctions similar to exosomes. Strategies inspired by this study may lead to substitution of exosomes with exosome-mimetic NVs for biofunctional purposes, including utilization in tissue repair and regeneration.
机译:肝脏损伤或疾病造成的功能性质量损失后具有很大的再生能力。许多研究表明,初级肝细胞衍生的外泌体,可以在细胞之间提供生物学信息,促进肝脏的再生过程。然而,外来物质的产量非常有限。最近的研究表明,与外泌体相比,外渗纳米粒子(NVS)可以由产率的几乎100倍的细胞制备。因此,本研究研究了肝再生中原发性肝细胞外渗NVS的治疗能力。通过聚碳酸酯膜连续挤出细胞的细胞挤出制备外泌体模拟NVS,并且这些NV的产率大于外泌体的100倍。数据表明,通过显着增强受体细胞中鞘氨酸激酶2的含量,NVS可以促进肝细胞增殖和肝脏再生。据我们所知,这是第一次制备来自原发性肝细胞的外出细胞体积的NVS,并且这些NVS具有与原发性肝细胞的外泌体相似的组分,并且在一些方面,在某些方面,类似于外泌体的生物粥。灵感来自该研究的策略可能导致外泌体与外泌体模拟NVS用于生物功能目的,包括用于组织修复和再生的利用。

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