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通过微流控技术增强细胞外囊泡分析

Enhancing Analysis of Extracellular Vesicles by Microfluidics.

作者信息

Sun Jiayu, Li Zongbo, Chen Yonghui, Chang Yue, Yang Mengsu, Zhong Wenwan

机构信息

Department of Biomedical Sciences, and Tung Biomedical Sciences Centre, City University of Hong Kong, 83 Tat Chee Avenue, Kowloon, Hong Kong SAR 999077, P. R. China.

Department of Precision Diagnostic and Therapeutic Technology, City University of Hong Kong Shenzhen Futian Research Institute, Shenzhen 518057, P. R. China.

出版信息

Anal Chem. 2025 Apr 8;97(13):6922-6937. doi: 10.1021/acs.analchem.4c07016. Epub 2025 Mar 25.

Abstract

Extracellular vesicles (EVs) play crucial roles in intercellular communication and hold great promise as biomarkers for noninvasive disease diagnosis. Intensive research efforts have been devoted to discovering the EV subpopulations responsible for specific functions or with enhanced effectiveness as disease markers, through extensive EV purification and content analysis. However, their high heterogeneity in size and cargo composition poses significant challenges for reaching such goals. Isolation methods like ultracentrifugation and size-exclusion chromatography, as well as content analysis approaches like polymerase chain reaction and enzyme-linked immunosorbent assay, have made significant contributions to improving our understanding of EV biology. Nonetheless, these methods face limitations in isolation efficiency, EV purity, and detection sensitivity and specificity due to issues like large sample consumption, unsatisfactory purity, and insufficient resolution in EV subtyping. Microfluidic technology presents promising solutions to these challenges, leveraging their intrinsic capabilities in precise flow and external energy field manipulation, sample compartmentalization, and signal enhancement at the micro- and nanoscale. Hence, this review summarizes the recent developments in microfluidics-enabled EV analysis, paying special attention to the unique microfluidic features exploited. Strategies such as viscoelastic and inertial flow, fluid mixing, and external-field-assisted approaches in improving EV purification, as well as compartmentalization and micro/nanostructures for enhancing EV detection, are examined. Furthermore, the current limitations and potential future directions are discussed to inspire advancements in this rapidly developing field.

摘要

细胞外囊泡(EVs)在细胞间通讯中发挥着关键作用,作为非侵入性疾病诊断的生物标志物具有巨大潜力。通过广泛的EV纯化和内容分析,人们投入了大量研究精力来发现负责特定功能或作为疾病标志物具有更高有效性的EV亚群。然而,它们在大小和货物组成上的高度异质性给实现这些目标带来了重大挑战。诸如超速离心和尺寸排阻色谱等分离方法,以及诸如聚合酶链反应和酶联免疫吸附测定等内容分析方法,都为增进我们对EV生物学的理解做出了重大贡献。尽管如此,由于诸如大量样本消耗、纯度不尽人意以及EV亚型分辨率不足等问题,这些方法在分离效率、EV纯度以及检测灵敏度和特异性方面面临局限性。微流控技术为这些挑战提供了有前景的解决方案,利用其在精确流动和外部能量场操纵、样本分隔以及微纳尺度信号增强方面的固有能力。因此,本综述总结了基于微流控的EV分析的最新进展,特别关注所利用的独特微流控特征。研究了诸如粘弹性和惯性流、流体混合以及外部场辅助方法等在改善EV纯化方面的策略,以及用于增强EV检测的分隔和微/纳米结构。此外,还讨论了当前的局限性和潜在的未来方向,以激发这一快速发展领域的进步。

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