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Dean流耦合弹性惯性聚焦加速外泌体纯化以促进单囊泡分析

Dean-Flow-Coupled Elasto-Inertial Focusing Accelerates Exosome Purification to Facilitate Single Vesicle Profiling.

作者信息

Bai Jun-Jie, Zhang Xuan, Wei Xing, Wang Yu, Du Cheng, Wang Ze-Jun, Chen Ming-Li, Wang Jian-Hua

机构信息

Research Center for Analytical Sciences, Department of Chemistry, College of Sciences, Northeastern University, Shenyang, Liaoning110819, P. R. China.

Department of Oncology, General Hospital of Northern Theater Command, Shenyang, Liaoning110819, P. R. China.

出版信息

Anal Chem. 2023 Jan 31;95(4):2523-2531. doi: 10.1021/acs.analchem.2c04898. Epub 2023 Jan 19.

Abstract

Exosomes are recognized as noteworthy biomarkers playing unprecedented roles in intercellular communication and disease diagnosis and treatment. It is a prerequisite to obtain high-purity exosomes for the comprehension of exosome biochemistry and further illustration of their functionality/mechanisms. However, the isolation of nanoscale exosomes from endogenous proteins is particularly challenging for small-volume biological samples. Herein, a Dean-flow-coupled elasto-inertial microfluidic chip (DEIC) was developed. It consists of a spiral microchannel with dimensional confined concave structures and facilitates elasto-inertial separation of exosomes with lower protein contaminants from cell culture medium and human serum. The presence of 0.15% (w/v) poly-(oxyethylene) controls the elastic lift force acting on suspended nanoscale particles and makes it feasible for field-free purification of integrity exosomes with a 70.6% recovery and a 91.4% removal rate for proteins. As a proof of concept, the technique demonstrated the individual-vesicle-level biomarker (EpCAM and PD-L1) profiling in combination with simultaneous aptamer-mediated analysis to disclose the sensibility for immune response. Overall, DEIC enables the collection of high-purity exosomes and exhibits potential in integration with downstream analyses of exosomes.

摘要

外泌体被认为是值得关注的生物标志物,在细胞间通讯以及疾病诊断和治疗中发挥着前所未有的作用。获取高纯度外泌体是理解外泌体生物化学并进一步阐明其功能/机制的先决条件。然而,从小体积生物样品中分离纳米级外泌体与内源性蛋白质是一项特别具有挑战性的任务。在此,开发了一种Dean流耦合弹性惯性微流控芯片(DEIC)。它由具有尺寸受限凹形结构的螺旋微通道组成,有助于从细胞培养基和人血清中弹性惯性分离出蛋白质污染物较少的外泌体。0.15%(w/v)的聚(氧乙烯)的存在控制了作用于悬浮纳米级颗粒的弹性升力,使得无场纯化完整外泌体成为可能,回收率为70.6%,蛋白质去除率为91.4%。作为概念验证,该技术结合同时进行的适体介导分析展示了个体囊泡水平的生物标志物(EpCAM和PD-L1)分析,以揭示免疫反应的敏感性。总体而言,DEIC能够收集高纯度外泌体,并在与外泌体下游分析整合方面展现出潜力。

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