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Multiparametric Analysis of Circulating Exosomes and Other Small Extracellular Vesicles by Advanced Imaging Flow Cytometry

机译:先进的成像流式细胞仪对循环外泌体和其他小细胞外囊泡进行多参数分析

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摘要

Extracellular vesicles (EVs) are responsible for a multitude of physiological functions, including immunomodulation. A heterogenous mixture of small EV (sEV) subsets, including putative exosomes, is derived when commonly used “exosome” isolation techniques are employed. Subset diversity relates in part to their different intracellular origins, and can be associated with distinct functional properties. Recent progress in the EV field has enabled the categorization of such subsets based on their surface composition. For the first time, we combine such emerging subset-specific markers with advanced imaging flow cytometry (iFCM) to perform high-throughput, multiparametric, vesicle-by-vesicle characterization, and functional assessment of specific small EV subsets, and exosomes in particular. The approach allows researchers to address three important applications. First, it is known that different isolation techniques result in the divergent recovery of particular vesicle subsets. Taking three commonly used “exosome” isolation techniques as test cases (ultracentrifugation, size-exclusion chromatography, and polymer-based precipitation), the capacity for convenient and accurate isolate compositional analysis by iFCM is demonstrated. The approach was able to corroborate and to quantify the known skewing of subtype recovery among different isolation approaches. Second, exosomes are a particularly widely studied EV subset. Applying exosome-specific markers to samples collected from an optimal clinical transplantation model, we verify the capacity for iFCM to detect exosomes in circulation, to establish their tissue of origin, and to provide insights as to their functional immunological potential. Finally, we describe a technique for establishing whether the transfer of a molecule of interest to a target cell is exosomally mediated. In so doing, we highlight the approach’s utility in assessing the functional impact of circulating exosomes and in identifying their targets. In conclusion, we set out a new methodological approach by which small extracellular vesicle subsets, exosomes in particular, can be conveniently and comprehensively investigated, thereby offering novel phenotypic and functional insights.
机译:细胞外囊泡(EVs)负责多种生理功能,包括免疫调节。当采用常用的“外来体”分离技术时,会衍生出小的EV(sEV)子集(包括推定的外来体)的异质混合物。亚集多样性部分地与其不同的细胞内起源有关,并且可以与不同的功能特性相关。电动汽车领域的最新进展已使这些子集可以基于其表面成分进行分类。我们首次将这种新兴的亚组特异性标志物与先进的成像流式细胞仪(iFCM)结合使用,以进行高通量,多参数,逐泡表征,并对特定的小型EV亚群(特别是外泌体)进行功能评估。该方法使研究人员可以解决三个重要的应用。首先,已知不同的分离技术导致特定囊泡亚群的不同恢复。以三种常用的“外来体”分离技术为测试案例(超速离心,尺寸排阻色谱法和基于聚合物的沉淀法),证明了通过iFCM进行便捷,准确的分离物成分分析的能力。该方法能够证实和量化不同隔离方法之间已知的亚型恢复偏斜。第二,外来体是一个特别广泛研究的EV子集。将外泌体特异性标记物应用于从最佳临床移植模型收集的样品中,我们验证了iFCM检测循环中的外泌体,建立其起源组织并提供有关其功能免疫学潜力的见解的能力。最后,我们描述了一种用于确定目标分子是否转移到靶细胞的技术。通过这样做,我们强调了该方法在评估循环外泌体的功能影响和确定其靶标方面的效用。总之,我们提出了一种新的方法论方法,通过该方法学,可以方便而全面地研究细胞外小囊泡亚群,尤其是外泌体,从而提供新颖的表型和功能见解。

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