化学
细胞外小泡
微流控
混合器
纳米颗粒
磁性纳米粒子
纳米技术
移液管
胞外囊泡
实验室晶片
微流控芯片
液体活检
表面张力
色谱法
微泡
生物化学
细胞生物学
癌症
量子力学
基因
物理化学
物理
小RNA
内科学
医学
生物
材料科学
作者
Xiaoniu Guo,Fei Hu,Yong Zhang,Shuhao Zhao,Yong Wan,Bingqing Wang,Niancai Peng
标识
DOI:10.1021/acs.analchem.4c00795
摘要
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.
科研通智能强力驱动
Strongly Powered by AbleSci AI