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首页> 外文期刊>Journal of Extracellular Vesicles >Moving beyond size and phosphatidylserine exposure: evidence for a diversity of apoptotic cell-derived extracellular vesicles in vitro
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Moving beyond size and phosphatidylserine exposure: evidence for a diversity of apoptotic cell-derived extracellular vesicles in vitro

机译:超越大小和磷脂酰丝氨酸的暴露:凋亡细胞衍生的细胞外囊泡多样性的证据体外

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摘要

ABSTRACT Apoptosis is a form of programmed cell death that occurs throughout life as part of normal development as well as pathologic processes including chronic inflammation and infection. Although the death of a cell is often considered as the only biological outcome of a cell committed to apoptosis, it is becoming increasingly clear that the dying cell can actively communicate with other cells via soluble factors as well as membrane-bound extracellular vesicles (EVs) to regulate processes including cell clearance, immunity and tissue repair. Compared to EVs generated from viable cells such as exosomes and microvesicles, apoptotic cell-derived EVs (ApoEVs) are less well defined and the basic criteria for ApoEV characterization have not been established in the field. In this study, we will examine the current understanding of ApoEVs, in particular, the ApoEV subtype called apoptotic bodies (ApoBDs). We described that a subset of ApoBDs can be larger than 5 μm and smaller than 1 μm based on flow cytometry and live time-lapse microscopy analysis, respectively. We also described that a subset of ApoBDs can expose a relatively low level of phosphatidylserine on its surface based on annexin A5 staining. Furthermore, we characterized the presence of caspase-cleaved proteins (in particular plasma membrane-associated or cytoplasmic proteins) in samples enriched in ApoBDs. Lastly, using a combination of biochemical-, live imaging- and flow cytometry-based approaches, we characterized the progressive lysis of ApoBDs. Taken together, these results extended our understanding of ApoBDs.
机译:摘要细胞凋亡是程序性细胞死亡的一种形式,在整个生命过程中都会发生,是正常发育以及包括慢性炎症和感染在内的病理过程的一部分。尽管通常认为细胞死亡是导致细胞凋亡的唯一生物学结果,但是越来越清楚的是,即将死亡的细胞可以通过可溶性因子以及膜结合的细胞外囊泡(EVs)与其他细胞主动通讯。调节细胞清除,免疫和组织修复等过程。与从诸如外泌体和微泡之类的活细胞产生的电动汽车相比,凋亡性细胞衍生电动汽车(ApoEV)的定义不太明确,并且尚未在该领域建立表征ApoEV的基本标准。在这项研究中,我们将检查对ApoEV的当前了解,尤其是称为凋亡小体(ApoBDs)的ApoEV亚型。我们描述了分别基于流式细胞术和实时延时显微镜分析,ApoBDs的子集可以大于5μm和小于1μm。我们还描述了基于膜联蛋白A5染色,ApoBDs的一个子集可以在其表面上暴露相对较低水平的磷脂酰丝氨酸。此外,我们表征了富含ApoBDs的样品中caspase裂解蛋白(特别是质膜相关蛋白或细胞质蛋白)的存在。最后,结合使用基于生化,实时成像和流式细胞仪的方法,我们表征了ApoBD的逐步裂解。综上所述,这些结果扩展了我们对ApoBD的理解。

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