Dai Yang, Cui Yibo, Li Jinwen, Li Piwu, Huang Xiaowen
State Key Laboratory of Biobased Material and Green Papermaking, College of Bioengineering, Qilu University of Technology (Shandong Academy of Sciences), Jinan, Shandong 250353, China.
APL Bioeng. 2025 Sep 9;9(3):031502. doi: 10.1063/5.0273892. eCollection 2025 Sep.
Extracellular vesicles (EVs), secreted by most living cells, encapsulate a diverse array of bioactive molecules from their parent cells, including proteins and nucleic acids. Recent studies underscore the potential of EVs as advanced biomarkers for the early diagnosis of a variety of clinical diseases. Nevertheless, traditional platforms for EVs separation and detection platforms working alone often involve multiple pieces of equipment and complex, multi-step protocols. This extends processing time and the likelihood of bioanalyte loss and cross-contamination, thereby impeding further EVs research. To date, few studies have effectively combined EVs separation, detection, and analysis functions into a single platform. Integrated microfluidic platforms present a compelling solution by enabling seamless progression from sample to result. These platforms can efficiently combine various separation and detection techniques, simplifying complex workflows and facilitating both efficient EVs separation and high-sensitivity detection. This review concentrates on integrated microfluidic platforms for EVs separation and detection, specifically examining whether the separation and detection units are fully integrated. Recent studies underscore the potential of EVs as promising biomarkers for early-stage diagnosis of diseases, including cancer and neurodegenerative disorders. Recent advances in EVs separation and analysis enable overcoming key translational barriers, accelerating their routine adoption in clinical diagnostics.
细胞外囊泡(EVs)由大多数活细胞分泌,包裹着来自其母细胞的多种生物活性分子,包括蛋白质和核酸。最近的研究强调了EVs作为多种临床疾病早期诊断的先进生物标志物的潜力。然而,传统的EVs分离平台和单独的检测平台通常涉及多台设备以及复杂的多步骤方案。这延长了处理时间,增加了生物分析物损失和交叉污染的可能性,从而阻碍了对EVs的进一步研究。迄今为止,很少有研究将EVs的分离、检测和分析功能有效地整合到一个单一平台中。集成微流控平台通过实现从样品到结果的无缝流程,提供了一个引人注目的解决方案。这些平台可以有效地结合各种分离和检测技术,简化复杂的工作流程,促进EVs的高效分离和高灵敏度检测。这篇综述集中讨论用于EVs分离和检测的集成微流控平台,特别考察分离和检测单元是否完全集成。最近的研究强调了EVs作为包括癌症和神经退行性疾病在内的疾病早期诊断的有前景的生物标志物的潜力。EVs分离和分析的最新进展能够克服关键的转化障碍,加速其在临床诊断中的常规应用。