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Microfluidic Chip based Hematoanalyzer Using Polyelectrolytic Gel Electrodes

机译:基于聚流凝胶电极的微流控芯片血细胞分析仪

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We reports on a novel microfluidic chip with polyelectrolytic gel electrodes (PGEs) used to rapidly count the number of red blood cells in diluted whole blood. The number and amplitude of dc impedance peaks provide the information about the number and size of red blood cells, respectively. This system features a low-voltage dc detection method and non-contact condition between cells and metal electrodes. The performance of this PGEs-based system was evaluated in three steps. First, in order to observe the size-only dependence of the impedance signal, three different sizes of fluorescent microbeads were used in the experiment. Second, the cell counting performance was evaluated by using 7.2 μm fluorescent microbeads, similar in size to red blood cells, in various concentrations and comparing the results with an animal hematoanalyzer. Finally, in human blood sample tests, intravenously collected whole blood was just diluted in a phosphate buffered saline without centrifuge or other pretreatments. The PGEs-based system produced almost identical numbers of red blood cells in over 800-fold diluted samples to the results from a commercialized human hematoanalyzer.
机译:我们报告了一种新型的带有聚电解质凝胶电极(PGE)的微流控芯片,该芯片可快速计算稀释的全血中的红细胞数量。直流阻抗峰值的数量和幅度分别提供有关红细胞数量和大小的信息。该系统具有低压直流检测方法以及电池与金属电极之间的非接触状态。该基于PGE的系统的性能分三个步骤进行了评估。首先,为了观察阻抗信号的大小依赖性,在实验中使用了三种不同大小的荧光微珠。其次,通过使用各种浓度的7.2μm荧光微珠(大小类似于红细胞)评估细胞计数性能,并将结果与​​动物血液分析仪进行比较。最后,在人体血液样本测试中,静脉内收集的全血仅用磷酸盐缓冲盐水稀释,无需离心或其他预处理。基于PGE的系统在800倍稀释样品中产生的红细胞数量几乎与商业化人体血液分析仪的结果相同。

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