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微流控芯片装置用于单细胞捕获和分析。

Lab-on-chip device for single cell trapping and analysis.

机构信息

Biomedical Engineering Department, Florida International University, Miami, FL, USA.

出版信息

Biomed Microdevices. 2014 Feb;16(1):35-41. doi: 10.1007/s10544-013-9803-7.

Abstract

Traditional cell assay gives us an average result of multiple cells and it is assumed that the resultant is the outcome of all cells in population. However, single cell studies have revealed that individual cells of same type may differ dramatically and these differences may have important role to play in cells functionality. Such information can be obscured in only studying cell population experimental approach. To uncover biological principles and ultimately to improve the detection and treatment of disease, new approaches are highly required to single cell analysis. We propose to fabricate a lab on chip device to study high throughput single cell nanotoxicity analysis. The chip incorporates independently addressable active microwell electrodes for cell manipulation and analysis. We employed positive-dielectrophoresis approach to quickly and efficiently capture single cells in each wells with having control over individual microwells. We examined change in impedance properties to verify cell capture in microwell and its health and present a novel model of single cell assay for nanotoxicity, and drug testing.

摘要

传统的细胞检测方法给出了多个细胞的平均值,并且假定结果是群体中所有细胞的结果。然而,单细胞研究表明,同一类型的单个细胞可能有很大的差异,这些差异可能在细胞功能中发挥重要作用。在仅研究细胞群体实验方法的情况下,这些信息可能会被掩盖。为了揭示生物学原理,并最终提高疾病的检测和治疗水平,非常需要采用新的方法来进行单细胞分析。我们提出制造一种芯片实验室设备,以研究高通量单细胞纳米毒性分析。该芯片包含可独立寻址的有源微井电极,用于细胞操作和分析。我们采用正介电泳方法,通过对每个微井中的单个细胞进行快速、高效的捕获,并对单个微井进行控制。我们检查了阻抗特性的变化,以验证微井中细胞的捕获及其健康状况,并提出了一种用于纳米毒性和药物测试的单细胞检测新模型。

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