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用于临床诊断的细胞外囊泡:从整体测量到单囊泡分析

Extracellular Vesicles for Clinical Diagnostics: From Bulk Measurements to Single-Vesicle Analysis.

作者信息

Tran Hai Linh, Zheng Wenshu, Issadore David A, Im Hyungsoon, Cho Yoon-Kyoung, Zhang Yuanqing, Liu Dingbin, Liu Yang, Li Bo, Liu Fei, Wong David Tai Wai, Sun Jiashu, Qian Kun, He Mei, Wan Meihua, Zeng Yong, Cheng Ke, Huang Tony Jun, Chiu Daniel T, Lee Luke P, Zheng Lei, Godwin Andrew K, Kalluri Raghu, Soper Steven A, Hu Tony Y

机构信息

Center for Cellular and Molecular Diagnostics and Department of Biochemistry and Molecular Biology, Tulane University School of Medicine, New Orleans, Louisiana 70112, United States.

Department of Bioengineering, University of Pennsylvania, Philadelphia, Pennsylvania 19104, United States.

出版信息

ACS Nano. 2025 Aug 12;19(31):28021-28109. doi: 10.1021/acsnano.5c00706. Epub 2025 Jul 28.

Abstract

Extracellular vesicles (EVs) play a crucial role in intercellular communication, signaling pathways, and disease pathogenesis by transporting biomolecules such as DNA, RNA, proteins, and lipids derived from their cells of origin, and they have demonstrated substantial potential in clinical applications. Their clinical significance underscores the need for sensitive methods to fully harness their diagnostic potential. In this comprehensive review, we explore EV heterogeneity related to biogenesis, structure, content, origin, sample type, and function roles; the use of EVs as disease biomarkers; and the evolving landscape of EV measurement for clinical diagnostics, highlighting the progression from bulk measurement to single vesicle analysis. This review covers emerging technologies such as single-particle tracking microscopy, single-vesicle RNA sequencing, and various nanopore-, nanoplasmonic-, immuno-digital droplet-, microfluidic-, and nanomaterial-based techniques. Unlike traditional bulk analysis methods, these methods contribute uniquely to EV characterization. Techniques like droplet-based single EV-counting enzyme-linked immunosorbent assays (ELISA), proximity-dependent barcoding assays, and surface-enhanced Raman spectroscopy further enhance our ability to precisely identify biomarkers, detect diseases earlier, and significantly improve clinical outcomes. These innovations provide access to intricate molecular details that expand our understanding of EV composition, with profound diagnostic implications. This review also examines key research challenges in the field, including the complexities of sample analysis, technique sensitivity and specificity, the level of detail provided by analytical methods, and practical applications, and we identify directions for future research. This review underscores the value of advanced EV analysis methods, which contribute to deep insights into EV-mediated pathological diversity and enhanced clinical diagnostics.

摘要

细胞外囊泡(EVs)在细胞间通讯、信号通路和疾病发病机制中发挥着关键作用,它们通过运输源自其起源细胞的生物分子(如DNA、RNA、蛋白质和脂质)来实现这一点,并且在临床应用中已展现出巨大潜力。它们的临床意义凸显了采用灵敏方法以充分发挥其诊断潜力的必要性。在这篇全面综述中,我们探讨了与生物发生、结构、内容物、起源、样本类型及功能作用相关的EV异质性;EV作为疾病生物标志物的用途;以及用于临床诊断的EV检测技术的发展态势,重点介绍了从整体测量到单囊泡分析的进展。本综述涵盖了诸如单粒子追踪显微镜、单囊泡RNA测序以及各种基于纳米孔、纳米等离子体、免疫数字液滴、微流控和纳米材料的技术等新兴技术。与传统的整体分析方法不同,这些方法为EV的表征做出了独特贡献。基于液滴的单EV计数酶联免疫吸附测定(ELISA)、邻近依赖性条形码测定和表面增强拉曼光谱等技术进一步增强了我们精确识别生物标志物、更早检测疾病以及显著改善临床结果的能力。这些创新使我们能够获取复杂的分子细节,从而扩展了我们对EV组成的理解,具有深远的诊断意义。本综述还考察了该领域的关键研究挑战,包括样本分析的复杂性、技术的灵敏度和特异性、分析方法提供的细节程度以及实际应用,并确定了未来的研究方向。本综述强调了先进的EV分析方法的价值,这些方法有助于深入了解EV介导的病理多样性并加强临床诊断。

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