Yan Sheng, Zhang Jun, Alici Gursel, Du Haiping, Zhu Yonggang, Li Weihua
School of Mechanical, Materials and Mechatronic Engineering, University of Wollongong, Wollongong, NSW 2522, Australia.
Lab Chip. 2014 Aug 21;14(16):2993-3003. doi: 10.1039/c4lc00343h. Epub 2014 Jun 18.
Plasma is a complex substance that contains proteins and circulating nucleic acids and viruses that can be utilised for clinical diagnostics, albeit a precise analysis depends on the plasma being totally free of cells. We proposed the use of a dielectrophoresis (DEP)-active hydrophoretic method to isolate plasma from blood in a high-throughput manner. This microfluidic device consists of anisotropic microstructures embedded on the top of the channel which generate lateral pressure gradients while interdigitised electrodes lay on the bottom of the channel which can push particles or cells into a higher level using a negative DEP force. Large and small particles or cells (3 μm and 10 μm particles, and red blood cells, white blood cells, and platelets) can be focused at the same time in our DEP-active hydrophoretic device at an appropriate flow rate and applied voltage. Based on this principle, all the blood cells were filtrated from whole blood and then the plasma was extracted with a purity of 94.2% and a yield of 16.5% at a flow rate of 10 μL min(-1). This solved the challenging problem caused by the relatively low throughput of the DEP based device. Our DEP-active hydrophoretic device is a flexible and tunable system that can control the lateral positions of particles by modulating the external voltages without redesigning and fabricating a new channel, and because it is easy to operate, it is easily compatible with other microfluidic platforms that are used for further detection.
血浆是一种复杂的物质,含有蛋白质、循环核酸和病毒,可用于临床诊断,不过精确的分析依赖于完全无细胞的血浆。我们提出使用一种介电电泳(DEP)活性电泳方法以高通量方式从血液中分离血浆。这种微流控装置由嵌入通道顶部的各向异性微结构组成,这些微结构会产生横向压力梯度,而叉指电极位于通道底部,可利用负DEP力将颗粒或细胞推向更高水平。在适当的流速和施加电压下,大小不同的颗粒或细胞(3μm和10μm的颗粒以及红细胞、白细胞和血小板)可在我们的DEP活性电泳装置中同时聚焦。基于此原理,全血中的所有血细胞都被过滤掉,然后以10μL min(-1)的流速提取出血浆,其纯度为94.2%,产率为16.5%。这解决了基于DEP的装置通量相对较低所带来的挑战性问题。我们的DEP活性电泳装置是一个灵活且可调谐的系统,无需重新设计和制造新通道,通过调节外部电压就能控制颗粒的横向位置,而且由于其易于操作,很容易与用于进一步检测的其他微流控平台兼容。