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Systematic Methodological Evaluation of a Multiplex Bead-Based Flow Cytometry Assay for Detection of Extracellular Vesicle Surface Signatures

机译:基于多重珠的流式细胞术检测细胞外囊泡表面特征的系统方法学评估

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摘要

Extracellular vesicles (EVs) can be harvested from cell culture supernatants and from all body fluids. EVs can be conceptually classified based on their size and biogenesis as exosomes and microvesicles. Nowadays, it is however commonly accepted in the field that there is a much higher degree of heterogeneity within these two subgroups than previously thought. For instance, the surface marker profile of EVs is likely dependent on the cell source, the cell’s activation status, and multiple other parameters. Within recent years, several new methods and assays to study EV heterogeneity in terms of surface markers have been described; most of them are being based on flow cytometry. Unfortunately, such methods generally require dedicated instrumentation, are time-consuming and demand extensive operator expertise for sample preparation, acquisition, and data analysis. In this study, we have systematically evaluated and explored the use of a multiplex bead-based flow cytometric assay which is compatible with most standard flow cytometers and facilitates a robust semi-quantitative detection of 37 different potential EV surface markers in one sample simultaneously. First, assay variability, sample stability over time, and dynamic range were assessed together with the limitations of this assay in terms of EV input quantity required for detection of differently abundant surface markers. Next, the potential effects of EV origin, sample preparation, and quality of the EV sample on the assay were evaluated. The findings indicate that this multiplex bead-based assay is generally suitable to detect, quantify, and compare EV surface signatures in various sample types, including unprocessed cell culture supernatants, cell culture-derived EVs isolated by different methods, and biological fluids. Furthermore, the use and limitations of this assay to assess heterogeneities in EV surface signatures was explored by combining different sets of detection antibodies in EV samples derived from different cell lines and subsets of rare cells. Taken together, this validated multiplex bead-based flow cytometric assay allows robust, sensitive, and reproducible detection of EV surface marker expression in various sample types in a semi-quantitative way and will be highly valuable for many researchers in the EV field in different experimental contexts.
机译:可以从细胞培养上清液和所有体液中收获细胞外囊泡(EVs)。电动汽车可以根据其大小和生物发生在概念上分类为外来体和微泡。然而,如今,在该领域中普遍接受的是,这两个亚组中的异质性程度比以前认为的要高得多。例如,电动汽车的表面标记轮廓可能取决于电池来源,电池的激活状态以及其他多个参数。近年来,已经描述了几种新的方法和测定方法,以研究表面标志物的EV异质性。其中大多数是基于流式细胞仪。不幸的是,这样的方法通常需要专用的仪器,既费时又需要操作员在样品制备,采集和数据分析方面的专业知识。在这项研究中,我们已经系统地评估和探索了基于多重珠的流式细胞仪检测方法,该方法与大多数标准流式细胞仪兼容,并有助于同时对一个样品中的37种不同的潜在EV表面标记物进行强健的半定量检测。首先,根据检测不同丰富的表面标记所需的EV输入量,评估了测定方法的变异性,随时间变化的样品稳定性和动态范围以及该测定法的局限性。接下来,评估了EV来源,样品制备和EV样品质量对测定的潜在影响。研究结果表明,这种基于多重磁珠的测定方法通常适用于检测,量化和比较各种样品类型中的EV表面特征,包括未处理的细胞培养上清液,通过不同方法分离的细胞培养衍生的EV和生物液。此外,通过在源自不同细胞系和稀有细胞亚群的EV样品中组合不同组的检测抗体,探索了该测定法在评估EV表面特征异质性中的用途和局限性。总而言之,这种经过验证的基于多重磁珠的流式细胞术检测方法能够以半定量的方式对各种样品类型中的EV表面标志物表达进行稳健,灵敏且可重现的检测,对于不同实验领域的EV领域的许多研究人员而言将具有很高的价值上下文。

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