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通过不对称流场流分离技术鉴定不同的纳米颗粒和细胞外囊泡亚群。

Identification of distinct nanoparticles and subsets of extracellular vesicles by asymmetric flow field-flow fractionation.

机构信息

Children's Cancer and Blood Foundation Laboratories, Departments of Pediatrics, and Cell and Developmental Biology, Drukier Institute for Children's Health, Meyer Cancer Center, Weill Cornell Medicine, New York, NY, USA.

i3S - Instituto de Investigação e Inovação em Saúde, Universidade do Porto, Porto, Portugal.

出版信息

Nat Cell Biol. 2018 Mar;20(3):332-343. doi: 10.1038/s41556-018-0040-4. Epub 2018 Feb 19.

Abstract

The heterogeneity of exosomal populations has hindered our understanding of their biogenesis, molecular composition, biodistribution and functions. By employing asymmetric flow field-flow fractionation (AF4), we identified two exosome subpopulations (large exosome vesicles, Exo-L, 90-120 nm; small exosome vesicles, Exo-S, 60-80 nm) and discovered an abundant population of non-membranous nanoparticles termed 'exomeres' (~35 nm). Exomere proteomic profiling revealed an enrichment in metabolic enzymes and hypoxia, microtubule and coagulation proteins as well as specific pathways, such as glycolysis and mTOR signalling. Exo-S and Exo-L contained proteins involved in endosomal function and secretion pathways, and mitotic spindle and IL-2/STAT5 signalling pathways, respectively. Exo-S, Exo-L and exomeres each had unique N-glycosylation, protein, lipid, DNA and RNA profiles and biophysical properties. These three nanoparticle subsets demonstrated diverse organ biodistribution patterns, suggesting distinct biological functions. This study demonstrates that AF4 can serve as an improved analytical tool for isolating extracellular vesicles and addressing the complexities of heterogeneous nanoparticle subpopulations.

摘要

外泌体群体的异质性阻碍了我们对其生物发生、分子组成、生物分布和功能的理解。通过采用不对称流场流分离(AF4),我们鉴定出两种外泌体亚群(大外泌体囊泡,Exo-L,90-120nm;小外泌体囊泡,Exo-S,60-80nm),并发现了一种丰富的非膜纳米颗粒群体,称为“外泌体(exomeres)”(~35nm)。外泌体(exomeres)蛋白组学分析显示,代谢酶和缺氧、微管和凝血蛋白以及特定途径(如糖酵解和 mTOR 信号通路)丰富。Exo-S 和 Exo-L 分别包含参与内体功能和分泌途径以及有丝分裂纺锤体和 IL-2/STAT5 信号通路的蛋白质。Exo-S、Exo-L 和 exomeres 各自具有独特的 N-糖基化、蛋白质、脂质、DNA 和 RNA 特征和生物物理特性。这三种纳米颗粒亚群表现出不同的器官生物分布模式,表明具有不同的生物学功能。本研究表明,AF4 可以作为一种改进的分析工具,用于分离细胞外囊泡并解决异质纳米颗粒亚群的复杂性。

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Current knowledge on exosome biogenesis and release.外泌体生物发生和释放的最新知识。
Cell Mol Life Sci. 2018 Jan;75(2):193-208. doi: 10.1007/s00018-017-2595-9. Epub 2017 Jul 21.
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Glycosylation in cancer: mechanisms and clinical implications.癌症中的糖基化:机制与临床意义。
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