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A Centrifugal Microfluidic Platform to Measure Hemoglobin of Whole Blood

机译:一种离心的微流体平台,用于测量全血的血红蛋白

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Microfluidics has been becoming more and more popular over last two decades. The reason for this, is inherent features of microfluidics including low consumption of samples and reagents, high sensitivity, short analysis time, and low cost. As well as, centrifugal microfluidics as a subset of microfluidics has been able to prove itself as a helpful tool in analytic assays. The main application of centrifugal microfluidic devices is being used in point-of-care testing systems. Herein, we presented a microfluidic disc for measuring hemoglobin(Hb) concentration in the EDTA-anticoagulated venous blood using cyanmethemoglobin method. In this experiment, at first a hand-made standard solution was made and using it, a linear standard curve was plotted. In order to detect of Hb concentration, we designed two inlets, one mixing chamber, and a detection chamber. In our design, the blood and Drabkin's solution due to the displacement between primary and secondary mixing chambers were mixed well and all erythrocytes were lysed completely. As well as, we designed the detection chamber in a way that, it is filled with fluid using inertial force without any bubble trapping. Then, the absorbance of samples was read out with a high-resolution spectrometer. Finally, in order to prove the assay procedure, the hemoglobin concentration of 11 blood samples was quantified. The results were compared with hematology analyzer data. The quantified values had good linearity and also good conformity with hematology analyzer data. In this experiment, the maximum standard deviation and the required time were ± 0.51 and 68 seconds, respectively.
机译:在过去二十年中,微流体一直变得越来越受欢迎。这是其中的原因,是微流体的固有特征,包括低消耗样品和试剂,高灵敏度,分析时间和低成本。除此之外,作为微流体子集的离心微流体已经能够将其作为分析测定中的有用工具。离心微流体装置的主要应用用于护理点测试系统。在此,我们使用Cyanmethemoglobin方法介绍了用于测量EDTA-抗凝静脉血中的血红蛋白(HB)浓度的微流体盘。在该实验中,首先进行手工制作的标准溶液并使用它,绘制线性标准曲线。为了检测HB浓度,我们设计了两个入口,一个混合室和检测室。在我们的设计中,由于初级和二次混合室之间的位移而血液和DRABKIN的溶液混合良好,并且完全裂解所有红细胞。除了,我们以一种方式设计了检测室,在没有任何泡沫捕获的情况下使用惯性力填充流体。然后,用高分辨率光谱仪读出样品的吸光度。最后,为了证明测定程序,量化了11种血液样品的血红蛋白浓度。将结果与血液分析仪数据进行比较。量化值具有良好的线性,并且与血液学分析仪数据也良好符合。在该实验中,最大标准偏差和所需时间分别为±0.51和68秒。

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