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从常规到微流控:细胞外囊泡分离和个体特征分析的进展。

From Conventional to Microfluidic: Progress in Extracellular Vesicle Separation and Individual Characterization.

机构信息

School of Electronic Information and Electrical Engineering, Shanghai Jiao Tong University, Shanghai, 200240, P. R. China.

Department of Chemical Engineering and Russell Berrie Nanotechnology Institute, Technion-Israel Institute of Technology, Haifa, 3200003, Israel.

出版信息

Adv Healthc Mater. 2023 Mar;12(8):e2202437. doi: 10.1002/adhm.202202437. Epub 2023 Jan 10.

Abstract

Extracellular vesicles (EVs) are nanoscale membrane vesicles, which contain a wide variety of cargo such as proteins, miRNAs, and lipids. A growing body of evidence suggests that EVs are promising biomarkers for disease diagnosis and therapeutic strategies. Although the excellent clinical value, their use in personalized healthcare practice is not yet feasible due to their highly heterogeneous nature. Taking the difficulty of isolation and the small size of EVs into account, the characterization of EVs at a single-particle level is both imperative and challenging. In a bid to address this critical point, more research has been directed into a microfluidic platform because of its inherent advantages in sensitivity, specificity, and throughput. This review discusses the biogenesis and heterogeneity of EVs and takes a broad view of state-of-the-art advances in microfluidics-based EV research, including not only EV separation, but also the single EV characterization of biophysical detection and biochemical analysis. To highlight the advantages of microfluidic techniques, conventional technologies are included for comparison. The current status of artificial intelligence (AI) for single EV characterization is then presented. Furthermore, the challenges and prospects of microfluidics and its combination with AI applications in single EV characterization are also discussed. In the foreseeable future, recent breakthroughs in microfluidic platforms are expected to pave the way for single EV analysis and improve applications for precision medicine.

摘要

细胞外囊泡 (EVs) 是纳米级膜囊泡,其中包含多种货物,如蛋白质、miRNAs 和脂质。越来越多的证据表明,EVs 是疾病诊断和治疗策略有前途的生物标志物。尽管具有出色的临床价值,但由于其高度异质性,它们在个性化医疗实践中的应用尚不可行。考虑到分离的难度和 EVs 的小尺寸,在单颗粒水平上对 EVs 进行特征描述既势在必行,又极具挑战性。为了解决这一关键问题,更多的研究集中在微流控平台上,因为它在灵敏度、特异性和通量方面具有固有优势。本文综述了 EVs 的生物发生和异质性,并广泛讨论了基于微流控的 EV 研究的最新进展,包括不仅 EV 的分离,还包括生物物理检测和生化分析的单个 EV 特征描述。为了突出微流控技术的优势,还包括了传统技术进行比较。然后介绍了人工智能 (AI) 在单个 EV 特征描述中的应用现状。此外,还讨论了微流控及其与人工智能应用相结合在单个 EV 特征描述中的挑战和前景。在可预见的未来,微流控平台的最新突破有望为单个 EV 分析铺平道路,并改善精准医学的应用。

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