School of Mechanical Engineering, and Jiangsu Key Laboratory for Design and Manufacture of Micro-Nano Biomedical Instruments , Southeast University , Nanjing , 211189 , China.
School of Mechatronic Engineering , China University of Mining and Technology , Xuzhou , 221116 , China.
Anal Chem. 2019 Aug 6;91(15):10328-10334. doi: 10.1021/acs.analchem.9b02863. Epub 2019 Jul 26.
We report here a novel two-stage i-DLD sorter through coupling inertial microfluidics with deterministic lateral displacement (DLD), allowing for precise, continuous, and size-based cell separation. The first stage spiral inertial microfluidic sorter is responsible for removing the overwhelming majority of background blood cells at a high-throughput manner. The precise and flow-rate insensitive DLD sorter with triangular posts serves as the second stage sorter which further removes the residual blood cells for obtaining high-purity tumor cells. After demonstrating the conceptual design, we characterize the performances of our two-stage i-DLD sorter for the separation of differently sized particles and cells. The characterization results show that a 100% complete separation of 15 and 7 μm particles was achieved, whereas a separation efficiency of over 99.9% and a target sample purity of 93.59% was realized for the separation of differently sized cells. Finally, we successfully apply our sorter for the separation of rare tumor cells from the diluted whole blood or WBCs at good performances. Our two-stage i-DLD sorter offers numerous advantages of label- and external field-free operation, high-efficiency and high-reliability separation, and high-throughput processing without clogging, and is promising as a potential tool for precise cell separation in low-resource settings.
我们在这里报告了一种新颖的两阶段 i-DLD 分选器,通过将惯性微流控与确定性侧向位移(DLD)相结合,实现了精确、连续、基于尺寸的细胞分离。第一阶段螺旋惯性微流分选器负责以高通量方式去除绝大多数背景血细胞。具有三角形柱的精确且流量不敏感的 DLD 分选器作为第二阶段分选器,进一步去除残留的血细胞,以获得高纯度的肿瘤细胞。在演示了概念设计之后,我们对我们的两阶段 i-DLD 分选器用于分离不同尺寸的颗粒和细胞的性能进行了表征。表征结果表明,15 和 7 μm 颗粒的完全分离率达到了 100%,而不同尺寸细胞的分离效率超过 99.9%,目标样品纯度达到了 93.59%。最后,我们成功地应用我们的分选器从稀释的全血或白细胞中分离出稀有肿瘤细胞,性能良好。我们的两阶段 i-DLD 分选器具有无标记和无外部场操作、高效可靠的分离、高通量处理且不会堵塞等诸多优点,有望成为在资源有限环境下进行精确细胞分离的一种有前途的工具。