Holmes David, Pettigrew David, Reccius Christian H, Gwyer James D, van Berkel Cees, Holloway Judith, Davies Donna E, Morgan Hywel
School of Electronics and Computing Science, University of Southampton, Highfield, Southampton, SO17 1BJ, UK.
Lab Chip. 2009 Oct 21;9(20):2881-9. doi: 10.1039/b910053a. Epub 2009 Aug 7.
Miniature high speed label-free cell analysis systems have yet to be developed, but have the potential to deliver fast, inexpensive and simple full blood cell analysis systems that could be used routinely in clinical practice. We demonstrate a microfluidic single cell impedance cytometer that performs a white blood cell differential count. The device consists of a microfluidic chip with micro-electrodes that measure the impedance of single cells at two frequencies. Human blood, treated with saponin/formic acid to lyse erythrocytes, flows through the device and a complete blood count is performed in a few minutes. Verification of cell dielectric parameters was performed by simultaneously measuring fluorescence from CD antibody-conjugated cells. This enabled direct correlation of impedance signals from individual cells with phenotype. Tests with patient samples showed 95% correlation against commercial (optical/Coulter) blood analysis equipment, demonstrating the potential clinical utility of the impedance microcytometer for a point-of-care blood analysis system.
微型高速无标记细胞分析系统尚未开发出来,但有潜力提供快速、廉价且简单的全血细胞分析系统,可在临床实践中常规使用。我们展示了一种能进行白细胞分类计数的微流控单细胞阻抗细胞仪。该设备由一个带有微电极的微流控芯片组成,这些微电极在两个频率下测量单个细胞的阻抗。用皂苷/甲酸处理以裂解红细胞的人体血液流经该设备,几分钟内即可完成全血细胞计数。通过同时测量与CD抗体偶联细胞的荧光来验证细胞介电参数。这使得单个细胞的阻抗信号与表型能够直接关联。对患者样本的测试表明,与商业(光学/库尔特)血液分析设备的相关性为95%,证明了阻抗微细胞仪在即时护理血液分析系统中的潜在临床应用价值。