Progress in Microfluidics‐Based Exosome Separation and Detection Technologies for Diagnostic Applications

微流控 纳米技术 微流控芯片 外体 材料科学 计算生物学 计算机科学 生物 微泡 生物化学 基因 小RNA
作者
Shujing Lin,Zixian Yu,Di Chen,Zhigang Wang,Jianmin Miao,Qichao Li,Daoyuan Zhang,Jie Song,Daxiang Cui
出处
期刊:Small [Wiley]
卷期号:16 (9): e1903916-e1903916 被引量:328
标识
DOI:10.1002/smll.201903916
摘要

Abstract Exosomes are secreted by most cell types and circulate in body fluids. Recent studies have revealed that exosomes play a significant role in intercellular communication and are closely associated with the pathogenesis of disease. Therefore, exosomes are considered promising biomarkers for disease diagnosis. However, exosomes are always mixed with other components of body fluids. Consequently, separation methods for exosomes that allow high‐purity and high‐throughput separation with a high recovery rate and detection techniques for exosomes that are rapid, highly sensitive, highly specific, and have a low detection limit are indispensable for diagnostic applications. For decades, many exosome separation and detection techniques have been developed to achieve the aforementioned goals. However, in most cases, these two techniques are performed separately, which increases operation complexity, time consumption, and cost. The emergence of microfluidics offers a promising way to integrate exosome separation and detection functions into a single chip. Herein, an overview of conventional and microfluidics‐based techniques for exosome separation and detection is presented. Moreover, the advantages and drawbacks of these techniques are compared.
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