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一种用于快速捕获和检测纳米囊泡的电动驱动微芯片。

An Electrokinetically-Driven Microchip for Rapid Entrapment and Detection of Nanovesicles.

作者信息

Shi Leilei, Esfandiari Leyla

机构信息

Department of Electrical Engineering and Computer Science, College of Engineering and Applied Sciences, University of Cincinnati, Cincinnati, OH 45221, USA.

Department of Biomedical Engineering, College of Engineering and Applied Sciences, University of Cincinnati, Cincinnati, OH 45221, USA.

出版信息

Micromachines (Basel). 2020 Dec 24;12(1):11. doi: 10.3390/mi12010011.

Abstract

Electrical Impedance Spectroscopy (EIS) has been widely used as a label-free and rapid characterization method for the analysis of cells in clinical research. However, the related work on exosomes (40-150 nm) and the particles of similar size has not yet been reported. In this study, we developed a new Lab-on-a-Chip (LOC) device to rapidly entrap a cluster of sub-micron particles, including polystyrene beads, liposomes, and small extracellular vesicles (exosomes), utilizing an insulator-based dielectrophoresis (iDEP) scheme followed by measuring their impedance utilizing an integrated electrical impedance sensor. This technique provides a label-free, fast, and non-invasive tool for the detection of bionanoparticles based on their unique dielectric properties. In the future, this device could potentially be applied to the characterization of pathogenic exosomes and viruses of similar size, and thus, be evolved as a powerful tool for early disease diagnosis and prognosis.

摘要

电阻抗光谱(EIS)作为一种用于临床研究中细胞分析的无标记快速表征方法已被广泛应用。然而,关于外泌体(40 - 150纳米)及类似大小颗粒的相关研究尚未见报道。在本研究中,我们开发了一种新型的芯片实验室(LOC)设备,利用基于绝缘体的介电电泳(iDEP)方案快速捕获包括聚苯乙烯珠、脂质体和小细胞外囊泡(外泌体)在内的亚微米颗粒簇,随后利用集成电阻抗传感器测量它们的阻抗。该技术基于生物纳米颗粒独特的介电特性,为其检测提供了一种无标记、快速且非侵入性的工具。未来,该设备有可能应用于致病性外泌体及类似大小病毒的表征,从而发展成为疾病早期诊断和预后评估的有力工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3375/7823576/c90f7c56c522/micromachines-12-00011-g001.jpg

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