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通过原子力和荧光显微镜联合对单个纳米级细胞外囊泡进行多参数分析:其分子和生物物理特征的相关性和异质性。

Multiparametric Profiling of Single Nanoscale Extracellular Vesicles by Combined Atomic Force and Fluorescence Microscopy: Correlation and Heterogeneity in Their Molecular and Biophysical Features.

机构信息

Department of Applied Physics, School of Engineering Sciences, KTH Royal Institute of Technology, Stockholm, 10691, Sweden.

Department of Electrical Engineering, The Ångström Laboratory, Uppsala University, Uppsala, 75121, Sweden.

出版信息

Small. 2021 Apr;17(14):e2008155. doi: 10.1002/smll.202008155. Epub 2021 Mar 7.

Abstract

Being a key player in intercellular communications, nanoscale extracellular vesicles (EVs) offer unique opportunities for both diagnostics and therapeutics. However, their cellular origin and functional identity remain elusive due to the high heterogeneity in their molecular and physical features. Here, for the first time, multiple EV parameters involving membrane protein composition, size and mechanical properties on single small EVs (sEVs) are simultaneously studied by combined fluorescence and atomic force microscopy. Furthermore, their correlation and heterogeneity in different cellular sources are investigated. The study, performed on sEVs derived from human embryonic kidney 293, cord blood mesenchymal stromal and human acute monocytic leukemia cell lines, identifies both common and cell line-specific sEV subpopulations bearing distinct distributions of the common tetraspanins (CD9, CD63, and CD81) and biophysical properties. Although the tetraspanin abundances of individual sEVs are independent of their sizes, the expression levels of CD9 and CD63 are strongly correlated. A sEV population co-expressing all the three tetraspanins in relatively high abundance, however, having average diameters of <100 nm and relatively low Young moduli, is also found in all cell lines. Such a multiparametric approach is expected to provide new insights regarding EV biology and functions, potentially deciphering unsolved questions in this field.

摘要

作为细胞间通讯的关键参与者,纳米级细胞外囊泡 (EV) 为诊断和治疗提供了独特的机会。然而,由于其分子和物理特征的高度异质性,它们的细胞起源和功能仍难以捉摸。在这里,首次通过荧光和原子力显微镜结合,同时研究了涉及单个小细胞外囊泡 (sEV) 膜蛋白组成、大小和力学特性的多个 EV 参数。此外,还研究了它们在不同细胞来源中的相关性和异质性。该研究在人胚肾 293 细胞、脐血间充质基质细胞和人急性单核白血病细胞系衍生的 sEV 上进行,鉴定了具有不同常见四跨膜蛋白 (CD9、CD63 和 CD81) 和生物物理特性分布的共同和细胞系特异性 sEV 亚群。尽管单个 sEV 的四跨膜蛋白丰度与其大小无关,但 CD9 和 CD63 的表达水平呈强相关性。然而,在所有细胞系中也发现了一个同时表达所有三种四跨膜蛋白且相对丰度较高、平均直径<100nm 且杨氏模量相对较低的 sEV 群体。这种多参数方法有望为 EV 生物学和功能提供新的见解,可能为该领域的未解问题提供答案。

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