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细胞外囊泡的高通量表面表位免疫亲和分离及下游分析

High-throughput surface epitope immunoaffinity isolation of extracellular vesicles and downstream analysis.

作者信息

Khanabdali Ramin, Mandrekar Michelle, Grygiel Rick, Vo Phuoc-An, Palma Carlos, Nikseresht Sara, Barton Siena, Shojaee Mozhgan, Bhuiyan Sadman, Asari Kartini, Belzer Susan, Ansari Khairul, Coward Jermaine I, Perrin Lewis, Hooper John, Guanzon Dominic, Lai Andrew, Salomon Carlos, Kershner Kevin, Newton Christine, Horejsh Douglas, Rice Gregory

机构信息

INOVIQ Ltd., Notting Hill, VIC 3168, Australia.

Promega Corporation, Madison, WI 53711, United States.

出版信息

Biol Methods Protoc. 2024 May 17;9(1):bpae032. doi: 10.1093/biomethods/bpae032. eCollection 2024.

Abstract

Extracellular vesicles (EVs), including exosomes, have significant potential for diagnostic and therapeutic applications. The lack of standardized methods for efficient and high-throughput isolation and analysis of EVs, however, has limited their widespread use in clinical practice. Surface epitope immunoaffinity (SEI) isolation utilizes affinity ligands, including antibodies, aptamers, or lectins, that target specific surface proteins present on EVs. Paramagnetic bead-SEI isolation represents a fit-for-purpose solution for the reproducible, high-throughput isolation of EVs from biofluids and downstream analysis of RNA, protein, and lipid biomarkers that is compatible with clinical laboratory workflows. This study evaluates a new SEI isolation method for enriching subpopulations of EVs. EVs were isolated from human plasma using a bead-based SEI method designed for on-bead and downstream analysis of EV-associated RNA and protein biomarkers. Western blot analysis confirmed the presence of EV markers in the captured nanoparticles. Mass spectrometry analysis of the SEI lysate identified over 1500 proteins, with the top 100 including known EV-associated proteins. microRNA (miRNA) sequencing followed by RT-qPCR analysis identified EV-associated miRNA transcripts. Using SEI, EVs were isolated using automated high-throughput particle moving instruments, demonstrating equal or higher protein and miRNA yield and recovery compared to manual processing. SEI is a rapid, efficient, and high-throughput method for isolating enriched populations of EVs; effectively reducing contamination and enabling the isolation of a specific subpopulation of EVs. In this study, high-throughput EV isolation and RNA extraction have been successfully implemented. This technology holds great promise for advancing the field of EV research and facilitating their application for biomarker discovery and clinical research.

摘要

细胞外囊泡(EVs),包括外泌体,在诊断和治疗应用方面具有巨大潜力。然而,缺乏用于高效、高通量分离和分析EVs的标准化方法,限制了它们在临床实践中的广泛应用。表面表位免疫亲和(SEI)分离利用亲和配体,包括抗体、适体或凝集素,来靶向EVs上存在的特定表面蛋白。顺磁珠-SEI分离是一种适用于从生物流体中可重复、高通量分离EVs以及对RNA、蛋白质和脂质生物标志物进行下游分析的解决方案,它与临床实验室工作流程兼容。本研究评估了一种用于富集EVs亚群的新型SEI分离方法。使用基于磁珠的SEI方法从人血浆中分离EVs,该方法设计用于对与EV相关的RNA和蛋白质生物标志物进行磁珠上及下游分析。蛋白质印迹分析证实了捕获的纳米颗粒中存在EV标志物。对SEI裂解物进行质谱分析鉴定出超过1500种蛋白质,其中排名前100的包括已知的与EV相关的蛋白质。通过微RNA(miRNA)测序随后进行RT-qPCR分析鉴定出与EV相关的miRNA转录本。使用SEI,通过自动化高通量颗粒移动仪器分离EVs,与手动处理相比,显示出同等或更高的蛋白质和miRNA产量及回收率。SEI是一种快速、高效且高通量的方法,用于分离富集的EVs群体;有效减少污染并能够分离特定的EVs亚群。在本研究中,已成功实现了高通量EV分离和RNA提取。这项技术在推进EV研究领域以及促进其在生物标志物发现和临床研究中的应用方面具有巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3e02/11272960/fc1e8241efa2/bpae032f1.jpg

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