La Jolla Bioengineering Institute, La Jolla, California, 92037.
Scintillon Institute, San Diego, California, 92121.
Cytometry A. 2016 Feb;89(2):196-206. doi: 10.1002/cyto.a.22787. Epub 2015 Oct 20.
Extracellular vesicles (EVs) are attracting attention as vehicles for inter-cellular signaling that may have value as diagnostic or therapeutic targets. EVs are released by many cell types and by different mechanisms, resulting in phenotypic heterogeneity that makes them a challenge to study. Flow cytometry is a popular tool for characterizing heterogeneous mixtures of particles such as cell types within blood, but the small size of EVs makes them difficult to measure using conventional flow cytometry. To address this limitation, a high sensitivity flow cytometer was constructed and EV measurement approaches that allowed them to enumerate and estimate the size of individual EVs, as well as measure the presence of surface markers to identify phenotypic subsets of EVs. Several fluorescent membrane probes were evaluated and it was found that the voltage sensing dye di-8-ANEPPS could produce vesicle fluorescence in proportion to vesicle surface area, allowing for accurate measurements of EV number and size. Fluorescence-labeled annexin V and anti-CD61 antibody was used to measure the abundance of these surface markers on EVs in rat plasma. It was shown that treatment of platelet rich plasma with calcium ionophore resulted in an increase in the fraction of annexin V and CD61-positive EVs. Vesicle flow cytometry using fluorescence-based detection of EVs has the potential to realize the potential of cell-derived membrane vesicles as functional biomarkers for a variety of applications.
细胞外囊泡 (EVs) 作为细胞间信号传递的载体引起了人们的关注,它们可能具有作为诊断或治疗靶点的价值。EVs 由许多细胞类型以不同的机制释放,导致表型异质性,这使得它们难以研究。流式细胞术是一种用于分析血液中细胞类型等混合粒子的常用工具,但 EVs 的体积小,使得它们难以使用传统的流式细胞术进行测量。为了解决这个限制,构建了一种高灵敏度流式细胞仪,并开发了 EV 测量方法,这些方法允许对单个 EV 的大小进行计数和估计,以及测量表面标志物的存在以鉴定 EV 的表型亚群。评估了几种荧光膜探针,发现电压敏感染料 di-8-ANEPPS 可以根据囊泡表面积产生囊泡荧光,从而可以准确测量 EV 的数量和大小。荧光标记的 annexin V 和抗 CD61 抗体用于测量大鼠血浆中这些表面标志物在 EV 上的丰度。结果表明,用钙离子载体处理富含血小板的血浆会导致 annexin V 和 CD61 阳性 EV 的比例增加。使用基于荧光的 EV 检测的囊泡流式细胞术有可能实现细胞衍生的膜囊泡作为各种应用的功能性生物标志物的潜力。