Department of Biomedical Engineering, School of Life Science, Beijing Institute of Technology, Beijing, China.
Faculty of Medicine, Imperial College London, South Kensington Campus, London, UK.
Cytometry A. 2021 Nov;99(11):1107-1113. doi: 10.1002/cyto.a.24487. Epub 2021 Aug 9.
Despite the wide use of cytometry for white blood cell classification, the performance of traditional cytometers in point-of-care testing remains to be improved. Microfluidic techniques have been shown with considerable potentials in the development of portable devices. Here we present a prototype of microfluidic cytometer which integrates a three-dimensional hydrodynamic focusing system and an on-chip optical system to count and classify white blood cells. By adjusting the flow speed of sheath flow and sample flow, the blood cells can be horizontally and vertically focused in the center of microchannel. Optical fibers and on-chip microlens are embedded for the excitation and detection of single-cell. The microfluidic chip was validated by classifying white blood cells from clinical blood samples.
尽管流式细胞术已被广泛用于白细胞分类,但传统流式细胞仪在即时检测中的性能仍有待提高。微流控技术在便携式设备的开发方面显示出了相当大的潜力。本文介绍了一种微流控细胞仪的原型,该仪器集成了三维流体力聚焦系统和片上光学系统,用于对白细胞进行计数和分类。通过调整鞘流和样品流的流速,可以将血细胞水平和垂直聚焦在微通道的中心。嵌入光纤和片上微透镜用于单细胞的激发和检测。通过对临床血液样本中的白细胞进行分类,验证了微流控芯片的性能。