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一种新型的多重微珠平台突出了细胞外囊泡的多样性。

A novel multiplex bead-based platform highlights the diversity of extracellular vesicles.

机构信息

Miltenyi Biotec GmbH, Bergisch Gladbach, Germany.

Cologne Excellence Cluster on Cellular Stress Responses in Aging-Associated Diseases (CECAD), Cologne, Germany.

出版信息

J Extracell Vesicles. 2016 Feb 19;5:29975. doi: 10.3402/jev.v5.29975. eCollection 2016.

Abstract

The surface protein composition of extracellular vesicles (EVs) is related to the originating cell and may play a role in vesicle function. Knowledge of the protein content of individual EVs is still limited because of the technical challenges to analyse small vesicles. Here, we introduce a novel multiplex bead-based platform to investigate up to 39 different surface markers in one sample. The combination of capture antibody beads with fluorescently labelled detection antibodies allows the analysis of EVs that carry surface markers recognized by both antibodies. This new method enables an easy screening of surface markers on populations of EVs. By combining different capture and detection antibodies, additional information on relative expression levels and potential vesicle subpopulations is gained. We also established a protocol to visualize individual EVs by stimulated emission depletion (STED) microscopy. Thereby, markers on single EVs can be detected by fluorophore-conjugated antibodies. We used the multiplex platform and STED microscopy to show for the first time that NK cell-derived EVs and platelet-derived EVs are devoid of CD9 or CD81, respectively, and that EVs isolated from activated B cells comprise different EV subpopulations. We speculate that, according to our STED data, tetraspanins might not be homogenously distributed but may mostly appear as clusters on EV subpopulations. Finally, we demonstrate that EV mixtures can be separated by magnetic beads and analysed subsequently with the multiplex platform. Both the multiplex bead-based platform and STED microscopy revealed subpopulations of EVs that have been indistinguishable by most analysis tools used so far. We expect that an in-depth view on EV heterogeneity will contribute to our understanding of different EVs and functions.

摘要

细胞外囊泡 (EVs) 的表面蛋白组成与起源细胞有关,可能在囊泡功能中发挥作用。由于分析小囊泡存在技术挑战,个体 EV 中的蛋白质含量知识仍然有限。在这里,我们引入了一种新的基于多重珠的平台,可以在一个样本中分析多达 39 种不同的表面标记物。捕获抗体珠与荧光标记检测抗体的结合允许分析携带两种抗体都识别的表面标记物的 EV。这种新方法可以轻松筛选 EV 群体上的表面标记物。通过组合不同的捕获和检测抗体,可以获得有关相对表达水平和潜在囊泡亚群的更多信息。我们还建立了一种通过受激发射损耗 (STED) 显微镜可视化单个 EV 的方案。通过荧光标记的抗体,可以检测到单个 EV 上的标记物。我们使用多重平台和 STED 显微镜首次表明 NK 细胞衍生的 EV 和血小板衍生的 EV 分别缺乏 CD9 或 CD81,并且从活化的 B 细胞中分离的 EV 包含不同的 EV 亚群。我们推测,根据我们的 STED 数据,四跨膜蛋白可能不会均匀分布,而是可能主要出现在 EV 亚群上的簇中。最后,我们证明可以通过磁珠分离 EV 混合物,然后使用多重平台进行分析。多重珠基平台和 STED 显微镜都揭示了迄今为止大多数分析工具无法区分的 EV 亚群。我们预计对 EV 异质性的深入了解将有助于我们理解不同的 EV 和功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f40f/4762227/e2e5a3341ccc/JEV-5-29975-g001.jpg

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