Department of Clinical Sciences, Cummings School of Veterinary Medicine, Tufts University, Massachusetts, USA.
Sci Rep. 2019 Aug 23;9(1):12295. doi: 10.1038/s41598-019-48181-6.
Growing interest in extracellular vesicles (EV) has necessitated development of protocols to improve EV characterization as a precursor for myriad downstream investigations. Identifying expression of EV surface epitopes can aid in determining EV enrichment and allow for comparisons of sample phenotypes. This study was designed to test a rigorous method of indirect fluorescent immunolabeling of single EV with subsequent evaluation using nanoparticle tracking analysis (NTA) to simultaneously determine EV concentration, particle size distribution, and surface immunophenotype. In this study, EV were isolated from canine and human cell cultures for immunolabeling and characterized using NTA, transmission electron microscopy, and Western blotting. Indirect fluorescent immunolabeling utilizing quantum dots (Qd) resulted in reproducible detection of individual fluorescently labeled EV using NTA. Methods were proposed to evaluate the success of immunolabeling based on paired particle detection in NTA light scatter and fluorescent modes. Bead-assisted depletion and size-exclusion chromatography improved specificity of Qd labeling. The described method for indirect immunolabeling of EV and single vesicle detection using NTA offers an improved method for estimating the fraction of EV that express a specific epitope, while approximating population size distribution and concentration.
对外泌体(EV)的兴趣日益浓厚,这就需要开发改进 EV 特征描述的方案,为众多下游研究提供依据。鉴定 EV 表面表位的表达情况有助于确定 EV 的富集程度,并允许对样本表型进行比较。本研究旨在测试一种严格的方法,即用间接荧光免疫标记单个 EV,然后使用纳米颗粒跟踪分析(NTA)进行后续评估,同时确定 EV 浓度、颗粒大小分布和表面免疫表型。在这项研究中,从犬和人细胞培养物中分离 EV 进行免疫标记,并使用 NTA、透射电子显微镜和 Western blot 进行表征。利用量子点(Qd)进行间接荧光免疫标记,可通过 NTA 实现对单个荧光标记 EV 的可重复检测。提出了基于 NTA 光散射和荧光模式中配对粒子检测来评估免疫标记成功的方法。珠子辅助耗尽和尺寸排阻色谱法提高了 Qd 标记的特异性。本文描述了一种使用 NTA 间接免疫标记 EV 和单个囊泡检测的方法,为估计表达特定表位的 EV 分数提供了一种改进的方法,同时还可以近似群体大小分布和浓度。