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用于单细胞并行分离和成像的离心式微流控捕获装置

Centrifugal Microfluidics Traps for Parallel Isolation and Imaging of Single Cells.

作者信息

Snider Adam, Pirozzi Ileana, Tripathi Anubhav

机构信息

Center for Biomedical Engineering, School of Engineering, Brown University, Providence, RI 02912, USA.

出版信息

Micromachines (Basel). 2020 Jan 29;11(2):149. doi: 10.3390/mi11020149.

Abstract

Analysis at the single cell level has becoming an increasingly important procedure to diagnose cancer tissue biopsies. These tissue samples are often heterogeneous and consist of 1000-15,000 cells. We study the use of centrifugal microfluidics to isolate single cells into micro chambers. We describe the optimization of our microfluidics flow device, characterize its performance using both polystyrene beads as a cell analogue and MCF-7 breast cancer cells, and discuss potential applications for the device. Our results show rapid isolation of ~2000 single cell aliquots in ~20 min. We were able to occupy 65% of available chambers with singly occupied cancer cells, and observed capture efficiencies as high as 80% using input samples ranging from 2000 to 15,000 cells in 20 min. We believe our device is a valuable research tool that addresses the unmet need for massively parallel single cell level analysis of cell populations.

摘要

单细胞水平分析已成为诊断癌症组织活检中越来越重要的程序。这些组织样本通常具有异质性,由1000 - 15000个细胞组成。我们研究了使用离心微流控技术将单个细胞分离到微腔室中。我们描述了微流控流动装置的优化,使用聚苯乙烯珠作为细胞类似物和MCF - 7乳腺癌细胞来表征其性能,并讨论了该装置的潜在应用。我们的结果表明,在约20分钟内可快速分离出约2000个单细胞等分试样。我们能够使65%的可用腔室被单个占据的癌细胞占据,并且在20分钟内使用2000至15000个细胞的输入样本观察到捕获效率高达80%。我们相信我们的装置是一种有价值的研究工具,满足了对细胞群体进行大规模平行单细胞水平分析这一未满足的需求。

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