School of Mechanical Engineering and Jiangsu Key Laboratory for Design and Manufacture of Micro-Nano Biomedical Instruments, Southeast University, Nanjing 211189, China.
Anal Chem. 2020 May 5;92(9):6770-6776. doi: 10.1021/acs.analchem.0c01006. Epub 2020 Apr 24.
We reporte a three-stage spiral channel device for achieving high-fold and high-throughput passive volume reduction through coupling inertial microfluidics with cross-flow filtration. To understand the device physics and optimize the structure, the effects of critical channel design on particle dynamics and volume reduction performance were explored. Then the principle of volume reduction was used for concentrating cells from large-volume fluids, and the concentration performance of differently sized particles/cells in the determined device was quantitatively characterized over wide flow rates. The results indicated that our device could achieve high-efficiency cell concentration at a high throughput of over 4 mL/min. Finally, we successfully applied our device for the enrichment of rare tumor cells after being separated from the blood or peritoneal fluid and the extremely high fold concentration of white blood cells from the large-volume fluid. Using a serial concentration, an ultrahigh concentration fold of approximately 1100 could be achieved. Our device offers numerous advantages, such as high-processing throughput, high concentration fold, simple channel design, and low-cost fabrication. Thus, it holds the potential to be used as a sample concentration tool for disposable use in low-resource settings.
我们报告了一种三阶段螺旋通道装置,通过将惯性微流控与错流过滤相结合,实现高倍和高通量的被动体积减少。为了了解设备的物理特性并优化结构,我们探讨了关键通道设计对颗粒动力学和体积减少性能的影响。然后,我们利用体积减少的原理从大体积流体中浓缩细胞,并在确定的装置中定量表征不同大小的颗粒/细胞在宽流速范围内的浓缩性能。结果表明,我们的装置可以在超过 4 mL/min 的高通量下实现高效率的细胞浓缩。最后,我们成功地将我们的设备应用于从血液或腹腔液中分离出的稀有肿瘤细胞的富集,以及从大体积流体中提取高倍浓缩的白细胞。通过串联浓缩,可以实现约 1100 倍的超高浓缩倍数。我们的装置具有高通量处理、高浓缩倍数、简单的通道设计和低成本制造等优点。因此,它有可能成为一种用于在资源有限环境中一次性使用的样品浓缩工具。