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Optimisation of imaging flow cytometry for the analysis of single extracellular vesicles by using fluorescence-tagged vesicles as biological reference material

机译:用荧光标记囊泡作为生物参考材料分析单个细胞外囊的成像流式细胞术的优化

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摘要

Extracellular vesicles (EVs) mediate targeted cellular interactions in normal and pathophysiological conditions and are increasingly recognised as potential biomarkers, therapeutic agents and drug delivery vehicles. Based on their size and biogenesis, EVs are classified as exosomes, microvesicles and apoptotic bodies. Due to overlapping size ranges and the lack of specific markers, these classes cannot yet be distinguished experimentally. Currently, it is a major challenge in the field to define robust and sensitive technological platforms being suitable to resolve EV heterogeneity, especially for small EVs (sEVs) with diameters below 200 nm, i.e. smaller microvesicles and exosomes. Most conventional flow cytometers are not suitable for the detection of particles being smaller than 300 nm, and the poor availability of defined reference materials hampers the validation of sEV analysis protocols. Following initial reports that imaging flow cytometry (IFCM) can be used for the characterisation of larger EVs, we aimed to investigate its usability for the characterisation of sEVs. This study set out to identify optimal sample preparation and instrument settings that would demonstrate the utility of this technology for the detection of single sEVs. By using CD63eGFP-labelled sEVs as a biological reference material, we were able to define and optimise IFCM acquisition and analysis parameters on an Amnis ImageStreamX MkII instrument for the detection of single sEVs. In addition, using antibody-labelling approaches, we show that IFCM facilitates robust detection of different EV and sEV subpopulations in isolated EVs, as well as unprocessed EV-containing samples. Our results indicate that fluorescently labelled sEVs as biological reference material are highly useful for the optimisation of fluorescence-based methods for sEV analysis. Finally, we propose that IFCM will help to significantly increase our ability to assess EV heterogeneity in a rigorous and reproducible manner, and facilitate the identification of specific subsets of sEVs as useful biomarkers in various diseases.
机译:细胞外囊泡(EVS)介导正常和病理生理病症的靶向细胞相互作用,越来越被认为是潜在的生物标志物,治疗剂和药物递送载体。基于其大小和生物发生,EVS被分类为外泌体,微泡和凋亡体。由于重叠的大小范围和缺乏特定标记,因此这些课程尚不能实验地区分。目前,该领域的主要挑战是定义鲁棒和敏感的技术平台,适合解决EV异质性,特别是对于直径低于200nm的小型EVS(SEV),即较小的微颗粒和外来体。大多数常规流式细胞计不适合于检测小于300nm的颗粒,并且定义的参考材料的可用性较差地妨碍了SEV分析协议的验证。在初始报告之后,成像流式细胞术(IFCM)可用于较大的EVS的表征,我们旨在研究其用于表征SED的可用性。本研究旨在识别最佳样品准备和仪器设置,以证明该技术的效用用于检测单个SED。通过使用CD63GEGFP标记的SED作为生物参考资料,我们能够在AMNIS ImageStreamX MKII仪器上定义和优化IFCM采集和分析参数,用于检测单个SEV。此外,使用抗体标记方法,我们表明IFCM促进了孤立的EV中的不同EV和SEV亚群的鲁棒检测,以及未加工的含EV的样品。我们的结果表明,作为生物参考材料的荧光标记的SED对于优化基于荧光的SEV分析的方法非常有用。最后,我们建议,IFCM将有助于显着提高我们以严谨性和可重复的方式评估EV异质性的能力,并促进SED的特定子集作为各种疾病中的有用生物标志物。

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