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首页> 外文期刊>Frontiers in Cell and Developmental Biology >Mechanistic and Therapeutic Implications of Extracellular Vesicles as a Potential Link Between Covid-19 and Cardiovascular Disease Manifestations
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Mechanistic and Therapeutic Implications of Extracellular Vesicles as a Potential Link Between Covid-19 and Cardiovascular Disease Manifestations

机译:细胞外囊泡的机械和治疗含义作为Covid-19和心血管疾病表现的潜在联系

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Extracellular vesicles (EVs), which are cell released double layered membrane particles, have been found in every circulating body fluid, and provide a tool for conveying diverse information between cells, influencing both physiological and pathological conditions. Viruses can hijack the EVs secretory pathway to exit infected cells and use EVs endocytic routes to enter uninfected cells, suggesting that EVs and viruses can share common cell entry and biogenesis mechanisms. SARS-CoV-2 is responsible of the coronavirus disease 2019 (Covid-19), which may be accompanied by severe multi-organ manifestations. EVs may contribute to virus spreading via transfer of virus docking receptors such as CD9 and ACE2. Covid-19 is known to affect the renin angiotensin system (RAS), and could promote secretion of harmful EVs. In this scenario EVs might be linked to cardiovascular manifestations of the Covid-19 disease through unbalance in RAS. In contrast EVs derived from mesenchymal stem cells or cardiosphere derived cells, may promote cardiovascular function due to their beneficial effect on angiogenesis, fibrosis, contractility and immuno-modulation. In this article we assessed the potential impact of EVs in cardiovascular manifestations of Covid-19 and highlight potential strategies to control the extracellular signaling for future therapies.
机译:在每个循环体液中发现了一种细胞释放的双层膜颗粒的细胞外囊泡(EVS),并提供用于在细胞之间传送各种信息的工具,影响生理和病理条件。病毒可以劫持EVS分泌途径以退出受感染的细胞,并使用EVS内吞路线进入未感染的细胞,表明EVS和病毒可以共享常见的细胞进入和生物发生机制。 SARS-COV-2负责2019年冠状病毒疾病(Covid-19),其可能伴有严重的多器官表现。 EVS可能通过转移病毒对接受体如CD9和ACE2来促进病毒扩散。已知Covid-19影响肾素血管紧张素系统(RAS),并可以促进有害电源的分泌。在这种情况下,EVS可能与Covid-19疾病的心血管表现联系到RAS中的不平衡。相比之下,由于其对血管生成,纤维化,收缩性和免疫调节的有益作用,可能促进心血管功能的EV。在本文中,我们评估了EVS在Covid-19的心血管表现中的潜在影响,并突出了控制未来疗法的细胞外信号的潜在策略。

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