微泡
流式细胞术
细胞外小泡
荧光
小泡
胞外囊泡
化学
染色
纳米粒子跟踪分析
荧光显微镜
细胞生物学
小RNA
生物物理学
生物
分子生物学
生物化学
病理
膜
医学
基因
物理
量子力学
作者
Aizea Morales‐Kastresana,Bill Telford,Thomas Musich,Katherine McKinnon,Cassandra Clayborne,Zach Braig,Ari Rosner,Thorsten Demberg,Dionysios C. Watson,Tatiana Karpova,Gordon J. Freeman,Rosemarie H. DeKruyff,George N. Pavlakis,Masaki Terabe,Marjorie Robert-Guroff,Jay A. Berzofsky,Jennifer Jones
标识
DOI:10.1038/s41598-017-01731-2
摘要
Abstract Extracellular vesicles (EVs), including exosomes and microvesicles, are 30–800 nm vesicles that are released by most cell types, as biological packages for intercellular communication. Their importance in cancer and inflammation makes EVs and their cargo promising biomarkers of disease and cell-free therapeutic agents. Emerging high-resolution cytometric methods have created a pressing need for efficient fluorescent labeling procedures to visualize and detect EVs. Suitable labels must be bright enough for one EV to be detected without the generation of label-associated artifacts. To identify a strategy that robustly labels individual EVs, we used nanoFACS, a high-resolution flow cytometric method that utilizes light scattering and fluorescence parameters along with sample enumeration, to evaluate various labels. Specifically, we compared lipid-, protein-, and RNA-based staining methods and developed a robust EV staining strategy, with the amine-reactive fluorescent label, 5-(and-6)-Carboxyfluorescein Diacetate Succinimidyl Ester, and size exclusion chromatography to remove unconjugated label. By combining nanoFACS measurements of light scattering and fluorescence, we evaluated the sensitivity and specificity of EV labeling assays in a manner that has not been described for other EV detection methods. Efficient characterization of EVs by nanoFACS paves the way towards further study of EVs and their roles in health and disease.
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