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定量荧光纳米颗粒追踪分析和纳米流式细胞术能够对单个细胞外囊泡进行高级表征。

Quantitative fluorescent nanoparticle tracking analysis and nano-flow cytometry enable advanced characterization of single extracellular vesicles.

作者信息

Mladenović Danilo, Brealey Joseph, Peacock Ben, Koort Kairi, Zarovni Nataša

机构信息

HansaBioMed Life Sciences OÜ Tallinn Estonia.

School of Natural Sciences and Health Tallinn University Tallinn Estonia.

出版信息

J Extracell Biol. 2025 Jan 8;4(1):e70031. doi: 10.1002/jex2.70031. eCollection 2025 Jan.

Abstract

Current state-of-the-art tools for analysing extracellular vesicles (EVs) offer either highly sensitive but unidimensional bulk measurements of EV components, or high-resolution multiparametric single-particle analyses which lack standardization and appropriate reference materials. This limits the accuracy of the assessment of marker abundance and overall marker distribution amongst individual EVs, and finally, the understanding of true EV heterogeneity. In this study, we aimed to define the standardized operating procedures and reference material for fluorescent characterization of EVs with two commonly used EV analytical platforms-nanoparticle tracking analysis (NTA) and nano-flow cytometry (nFCM). We achieved quantitative fluorescence analyses on ZetaView NTA and NanoAnalyzer nFCM instruments, by utilizing yellow-green FluoSpheres (FS) with assigned ERF (equivalent reference fluorophore) values. This standardization technique allowed for fluorescent EV signal to be expressed in ERF units (indicative of bound fluorescent antibodies per EV), thus enabling measurement of target protein marker abundance on individual EVs, and in the whole EV population. The NTA's and nFCM's limits of detection (LoD) were evaluated at 21 and 9 Alexa Fluor 488 (AF488) molecules, respectively. To complement the limited quantification of markers expressed in a few copies per single EV, in-line bulk fluorescence measurements with a plate reader were performed. This provided absolute marker quantification and more insightful analyses of EV heterogeneity and marker stoichiometry. The standardization method outlined in this work unlocks the full analytical potential of NTA and nFCM, enabling cross-platform data comparison. At the same time, it highlights some of the technical challenges and considerations and thus contributes to the ongoing efforts towards the development of EV analytical tools.

摘要

当前用于分析细胞外囊泡(EV)的先进工具,要么提供对EV成分的高灵敏度但一维的整体测量,要么提供缺乏标准化和合适参考材料的高分辨率多参数单颗粒分析。这限制了评估单个EV中标志物丰度和整体标志物分布的准确性,最终也限制了对真正EV异质性的理解。在本研究中,我们旨在为使用两种常用的EV分析平台——纳米颗粒跟踪分析(NTA)和纳米流式细胞术(nFCM)对EV进行荧光表征定义标准化操作程序和参考材料。我们通过使用具有指定等效参考荧光团(ERF)值的黄绿色荧光微球(FS),在ZetaView NTA和NanoAnalyzer nFCM仪器上实现了定量荧光分析。这种标准化技术使荧光EV信号能够以ERF单位表示(指示每个EV结合的荧光抗体),从而能够测量单个EV以及整个EV群体中靶蛋白标志物的丰度。NTA和nFCM的检测限(LoD)分别评估为21个和9个Alexa Fluor 488(AF488)分子。为了补充对每个单个EV中以少量拷贝数表达的标志物的有限定量,使用酶标仪进行了在线整体荧光测量。这提供了绝对的标志物定量以及对EV异质性和标志物化学计量更有洞察力的分析。本工作中概述的标准化方法释放了NTA和nFCM的全部分析潜力,实现了跨平台数据比较。同时,它突出了一些技术挑战和注意事项,从而有助于正在进行的EV分析工具开发工作。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7d69/11707551/2eefe64915fb/JEX2-4-e70031-g005.jpg

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