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An Emerging Fluorescence-Based Technique for Quantification and Protein Profiling of Extracellular Vesicles

机译:基于荧光基于细胞外囊泡的量化和蛋白质分析的新兴荧光技术

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摘要

Robust and well-established techniques for the quantification and characterization of extracellular vesicles (EVs) are a crucial need for the utilization of EVs as potential diagnostic and therapeutic tools. Current bulk analysis techniques such as proteomics and Western blot suffer from low resolution in the detection of small changes in target marker expression levels, exemplified by the heterogeneity of EVs. Microscopy-based techniques can provide valuable information from individual EVs; however, they are time-consuming and statistically less powerful than other techniques. Flow cytometry has been successfully employed for the quantification and characterization of individual EVs within larger populations. However, traditional flow cytometry is not highly suited for the examination of smaller, submicron particles. Here we demonstrate the accurate and precise quantification of nanoparticles such as EVs using the Virus Counter 3100 (VC3100) platform, a fluorescence-based technique that uses the principles of flow cytometry with critical enhancements to enable the effective detection of smaller particles. This approach can detect nanoparticles precisely with no evidence of inaccurate concentration measurement from masking effects associated with traditional nanoparticle tracking analysis (NTA). Fluorescently labeled EVs from different sources were successfully quantified using the VC3100 without a postlabeling washing step. Moreover, protein profiling and characterization of individual EVs were achieved and have been shown to determine the expression level of target protein markers.
机译:用于量化和表征细胞外囊泡(EVS)的稳健和良好的技术是对利用EVS作为潜在的诊断和治疗工具的关键需求。当前批量分析技术,如蛋白质组学和蛋白质印迹,在检测到靶标记表达水平的小变化中患有低分辨率,例如EVS的异质性。基于显微镜的技术可以提供各个EVS的有价值的信息;然而,它们比其他技术耗时和统计上的强大。已经成功地用于在较大种群内的单个EV的量化和表征流式细胞仪。然而,传统的流式细胞术不适合对较小的亚微米粒子的检查。在这里,我们证明了使用病毒计数器3100(VC3100)平台(VC3100)平台的纳米颗粒(例如EVS)的准确和精确定量,该技术使用流式细胞仪的原理具有关键增强,以便能够有效地检测较小的颗粒。这种方法可以精确地检测纳米颗粒,没有证据表明与传统纳米粒子跟踪分析(NTA)相关的掩蔽效应不准确的浓度测量。使用VC3100没有后标带的洗涤步骤,成功地量化了来自不同来源的荧光标记的EV。此外,实现了个体EVS的蛋白质分析和表征,并已显示确定靶蛋白标记物的表达水平。

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