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基于磁性纳米粒子的微流控平台,用于自动化高纯度细胞外囊泡的富集。

Magnetic Nanoparticle-Based Microfluidic Platform for Automated Enrichment of High-Purity Extracellular Vesicles.

机构信息

State Key Laboratory for Manufacturing Systems Engineering, Xi'an Jiaotong University, Xi'an 710054, Shaanxi, China.

Department of Geriatric Surgery, The First Affiliated Hospital of Xi'an Jiaotong University, Xi'an 710061, Shaanxi, China.

出版信息

Anal Chem. 2024 May 7;96(18):7212-7219. doi: 10.1021/acs.analchem.4c00795. Epub 2024 Apr 25.

Abstract

Extracellular vesicles (EVs) are available in various biological fluids and have highly heterogeneous sizes, origins, contents, and functions. Rapid enrichment of high-purity EVs remains crucial for enhancing research on EVs in tumors. In this work, we present a magnetic nanoparticle-based microfluidic platform (ExoCPR) for on-chip isolation, purification, and mild recovery of EVs from cell culture supernatant and plasma within 29 min. The ExoCPR chip integrates bubble-driven micromixers and immiscible filtration assisted by surface tension (IFAST) technology. The bubble-driven micromixer enhances the mixing between immunomagnetic beads and EVs, eliminating the need for manual pipetting or off-chip oscillatory incubation. The high-purity EVs were obtained after passing through the immiscible phase interface where hydrophilic or hydrophobic impurities nonspecifically bound to SIMI were removed. The ExoCPR chip had a capture efficiency of 75.8% and a release efficiency of 62.7% for model EVs. We also demonstrated the powerful performance of the ExoCPR in isolating EVs from biological samples (>90% purity). This chip was further employed in clinical plasma samples and showed that the number of GPC3-positive EVs isolated from hepatocellular carcinoma patients was significantly higher than that of healthy individuals. This ExoCPR chip may provide a promising tool for EV-based liquid biopsy and other fundamental research.

摘要

细胞外囊泡(EVs)存在于各种生物体液中,具有高度异质性的大小、起源、内容和功能。快速富集高纯度 EVs 对于增强肿瘤中 EVs 的研究仍然至关重要。在这项工作中,我们提出了一种基于磁性纳米颗粒的微流控平台(ExoCPR),用于在芯片上从细胞培养上清液和血浆中分离、纯化和温和回收 EVs,整个过程在 29 分钟内完成。ExoCPR 芯片集成了气泡驱动的微混合器和由表面张力辅助的不混溶过滤(IFAST)技术。气泡驱动的微混合器增强了免疫磁珠与 EVs 之间的混合,无需手动移液或在芯片外进行振荡孵育。高纯度 EVs 是在通过不混溶相界面后获得的,在该界面中,亲水性或疏水性杂质非特异性地与 SIMI 结合被去除。该 ExoCPR 芯片对模型 EVs 的捕获效率为 75.8%,释放效率为 62.7%。我们还证明了 ExoCPR 在从生物样本中分离 EVs 方面的强大性能(>90%纯度)。该芯片进一步应用于临床血浆样本,结果表明,从肝细胞癌患者中分离的 GPC3 阳性 EVs 数量明显高于健康个体。这种 ExoCPR 芯片可能为基于 EV 的液体活检和其他基础研究提供一种有前途的工具。

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