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本文引用的文献

1
Cellular stress conditions are reflected in the protein and RNA content of endothelial cell-derived exosomes.细胞应激状态反映在血管内皮细胞来源的外泌体的蛋白质和 RNA 含量中。
J Extracell Vesicles. 2012 Apr 16;1. doi: 10.3402/jev.v1i0.18396. eCollection 2012.
2
CD4(+) T cell activation promotes the differential release of distinct populations of nanosized vesicles.CD4(+) T 细胞的激活促进了不同纳米囊泡群体的差异化释放。
J Extracell Vesicles. 2012 Apr 16;1. doi: 10.3402/jev.v1i0.18364. eCollection 2012.
3
ExoCarta as a resource for exosomal research.ExoCarta 作为外泌体研究的资源。
J Extracell Vesicles. 2012 Apr 16;1. doi: 10.3402/jev.v1i0.18374. eCollection 2012.
4
Characterization of mRNA and microRNA in human mast cell-derived exosomes and their transfer to other mast cells and blood CD34 progenitor cells.鉴定人 mast 细胞来源的 exosomes 中的 mRNA 和 microRNA 及其向其他 mast 细胞和血液 CD34 祖细胞的转移。
J Extracell Vesicles. 2012 Apr 16;1. doi: 10.3402/jev.v1i0.18389. eCollection 2012.
5
Diverse subpopulations of vesicles secreted by different intracellular mechanisms are present in exosome preparations obtained by differential ultracentrifugation.通过差速离心获得的外泌体制剂中存在不同细胞内机制分泌的多种囊泡亚群。
J Extracell Vesicles. 2012 Apr 16;1. doi: 10.3402/jev.v1i0.18397. eCollection 2012.
6
Stable cell fate changes in marrow cells induced by lung-derived microvesicles.肺源微囊泡诱导骨髓细胞中稳定的细胞命运改变。
J Extracell Vesicles. 2012 Apr 16;1. doi: 10.3402/jev.v1i0.18163. eCollection 2012.
7
The tumor suppressor PTEN is exported in exosomes and has phosphatase activity in recipient cells.抑癌基因 PTEN 可通过外泌体被输出,并在靶细胞中发挥磷酸酶活性。
Sci Signal. 2012 Sep 25;5(243):ra70. doi: 10.1126/scisignal.2003084.
8
Profiling of microRNAs in exosomes released from PC-3 prostate cancer cells.PC-3前列腺癌细胞释放的外泌体中微小RNA的分析
Biochim Biophys Acta. 2012 Nov-Dec;1819(11-12):1154-63. doi: 10.1016/j.bbagrm.2012.08.016. Epub 2012 Sep 8.
9
Small RNA deep sequencing reveals a distinct miRNA signature released in exosomes from prion-infected neuronal cells.小 RNA 深度测序揭示了朊病毒感染神经元细胞释放的外泌体中独特的 miRNA 特征。
Nucleic Acids Res. 2012 Nov;40(21):10937-49. doi: 10.1093/nar/gks832. Epub 2012 Sep 10.
10
Calcium regulation of vascular smooth muscle cell-derived matrix vesicles.钙对血管平滑肌细胞来源的基质小泡的调节作用。
Trends Cardiovasc Med. 2012 Jul;22(5):133-7. doi: 10.1016/j.tcm.2012.07.009. Epub 2012 Aug 16.

国际细胞外囊泡学会:2012 年 4 月 17 日至 21 日第一届年会:ISEV-2012。

International Society for Extracellular Vesicles: first annual meeting, April 17-21, 2012: ISEV-2012.

机构信息

Department of Medicine and Cell Biology, Leon H. Charney Division of Cardiology, New York University School of Medicine, New York, USA.

Department of Molecular Cell Biology, Johannes Gutenberg University Mainz, Mainz, Germany.

出版信息

J Extracell Vesicles. 2012 Dec 28;1:19995. doi: 10.3402/jev.v1i0.19995. eCollection 2012.

DOI:10.3402/jev.v1i0.19995
PMID:26082071
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3760652/
Abstract

Extracellular micro- and nano-scale membrane vesicles produced by different cells are recognised as an essential entity of physiological fluids in a variety of organisms and function as mediators of intercellular communication employed for the regulation of multiple systemic and local processes. In the last decade, an exponential amount of experimental work was dedicated to exploring the biogenesis and secretion mechanisms, physiological and pathological functions and potential applications of the extracellular vesicles (EVs). Noteworthy is the large heterogeneity of in vitro and in vivo models applied, technical approaches developed in these studies and the diversity of designations assigned to different or similar types of EVs. Hence, there is a clear necessity for a uniform nomenclature and standardisation of methods to isolate and characterise these vesicles. In April 2012, the first meeting of the International Society for Extracellular Vesicles (ISEV) took place bringing together this exponentially grown scientific community. The University of Gothenburg (Krefting Research Centre) together with the Interim Board of the Society created in September 2011 (Jan Lötvall, Clotilde Théry, Xandra Breakefield, Marca Wauben, Yong Song Gho, Lawrence Rajendran, Graça Raposo, Douglas Taylor, Margareta Sjöstrand and Esbjörn Telemo) organised this fantastic event that counted 488 registered and contributing participants. This meeting report provides a retrospective summary of the broad spectrum of ISEV-2012 sessions. Again, we emphasise novel findings, discussions and decisions met by the community during the meeting.

摘要

不同细胞产生的细胞外微观和纳米尺度膜囊泡被认为是多种生物体生理液体中的一种基本实体,作为细胞间通讯的介质,用于调节多种全身和局部过程。在过去的十年中,大量的实验工作致力于探索细胞外囊泡(EVs)的生物发生和分泌机制、生理和病理功能以及潜在应用。值得注意的是,应用的体外和体内模型、这些研究中开发的技术方法以及不同或相似类型 EVs 的命名多样性存在很大的异质性。因此,需要对这些囊泡进行统一的命名和方法标准化,以进行分离和特征鉴定。2012 年 4 月,国际细胞外囊泡学会(ISEV)的第一次会议召开,将这个呈指数增长的科学界聚集在一起。哥德堡大学(Krefting 研究中心)与 2011 年 9 月成立的学会临时理事会(Jan Lötvall、Clotilde Théry、Xandra Breakefield、Marca Wauben、Yong Song Gho、Lawrence Rajendran、Graça Raposo、Douglas Taylor、Margareta Sjöstrand 和 Esbjörn Telemo)一起组织了这个精彩的活动,有 488 名注册参与者和贡献者。本会议报告回顾了 ISEV-2012 会议的广泛内容。我们再次强调了会议期间社区提出的新发现、讨论和决定。