High-throughput and clogging-free microfluidic filtration platform for on-chip cell separation from undiluted whole blood
High-throughput and clogging-free microfluidic filtration platform for on-chip cell separation from undiluted whole blood
复制标题
高通量、无堵塞的微流体过滤平台,用于从未稀释的全血中进行片上细胞分离
DOI:
10.1063/1.4941985
复制
发表时间:
2016-01-01
期刊:
影响因子:
3.2
通讯作者:
Wang, Wenhui
中科院分区:
文献类型:
--
作者:
Cheng, Yinuo;Ye, Xiongying;Wang, Wenhui
Rapid separation of white blood cells from whole blood sample is often required for their subsequent analyses of functions and phenotypes, and many advances have been made in this field. However, most current microfiltration-based cell separation microfluidic chips still suffer from low-throughput and membrane clogging. This paper reports on a high-throughput and clogging-free microfluidic filtration platform, which features with an integrated bidirectional micropump and commercially available polycarbonate microporous membranes. The integrated bidirectional micropump enables the fluid to flush micropores back and forth, effectively avoiding membrane clogging. The microporous membrane allows red blood cells passing through high-density pores in a cross-flow mixed with dead-end filtration mode. All the separation processes, including blood and buffer loading, separation, and sample collection, are automatically controlled for easy operation and high throughput. Both microbead mixture and undiluted whole blood sample are separated by the platform effectively. In particular, for white blood cell separation, the chip recovered 72.1% white blood cells with an over 232-fold enrichment ratio at a throughput as high as 37.5 mu l/min. This high-throughput, clogging-free, and highly integrated platform holds great promise for point-of-care blood pretreatment, analysis, and diagnosis applications. (C) 2016 AIP Publishing LLC.