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基于可拉伸惯性微流控的可尺寸调节癌细胞分离。

Size-tuneable isolation of cancer cells using stretchable inertial microfluidics.

机构信息

Queensland Micro- and Nanotechnology Centre, Griffith University, Nathan, Queensland 4111, Australia.

出版信息

Lab Chip. 2021 May 18;21(10):2008-2018. doi: 10.1039/d1lc00082a.

Abstract

Inertial microfluidics is a simple, low cost, efficient size-based separation technique which is being widely investigated for rare-cell isolation and detection. Due to the fixed geometrical dimensions of the current rigid inertial microfluidic systems, most of them are only capable of isolating and separating cells with certain types and sizes. Herein, we report the design, fabrication, and validation of a stretchable inertial microfluidic device with a tuneable separation threshold that can be used for heterogenous mixtures of particles and cells. Stretchability allows for the fine-tuning of the critical sorting size, resulting in a high separation resolution that makes the separation of cells with small size differences possible. We validated the tunability of the separation threshold by stretching the length of a microchannel to separate the particle sizes of interest. We also evaluated the focusing efficiency, flow behaviour, and the positions of cancer cells and white blood cells (WBCs) in an elongated channel, separately. In addition, the performance of the device was verified by isolating cancer cells from WBCs which revealed a high recovery rate and purity. The stretchable chip showed promising results in the separation of cells with comparable sizes. Further validation of the chip using whole blood spiked with cancer cells delivered a 98.6% recovery rate with 90% purity. Elongating a stretchable microfluidic chip enables onsite modification of the dimensions of a microchannel leading to a precise tunability of the separation threshold as well as a high separation resolution.

摘要

惯性微流控是一种简单、低成本、高效率的基于尺寸的分离技术,广泛应用于稀有细胞的分离和检测。由于目前刚性惯性微流控系统的固定几何尺寸,它们大多数只能分离和分离特定类型和大小的细胞。本文报道了一种可拉伸惯性微流控器件的设计、制造和验证,该器件具有可调谐的分离阈值,可用于颗粒和细胞的异质混合物。可拉伸性允许精细调整临界分选尺寸,从而实现高分离分辨率,使具有微小尺寸差异的细胞分离成为可能。我们通过拉伸微通道的长度来验证分离阈值的可调性,以分离出感兴趣的颗粒尺寸。我们还分别评估了在伸长通道中的聚焦效率、流动行为以及癌细胞和白细胞(WBC)的位置。此外,通过从 WBC 中分离癌细胞来验证器件的性能,结果显示出高回收率和纯度。该可拉伸芯片在分离具有可比尺寸的细胞方面显示出良好的效果。进一步使用含有癌细胞的全血对芯片进行验证,结果显示回收率为 98.6%,纯度为 90%。拉伸微流控芯片可以实现在线修改微通道的尺寸,从而实现精确的分离阈值可调性和高分离分辨率。

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