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离心式微流控平台上的新型检测腔设计,用于测量全血中的血红蛋白。

A New Detection Chamber Design on Centrifugal Microfluidic Platform to Measure Hemoglobin of Whole Blood.

机构信息

Department of Chemical and Petroleum Engineering, Sharif University of Technology, Tehran, Iran.

Department of Electrical Engineering and Information Technology, Iranian Research Organization for Science and Technology, Tehran, Iran.

出版信息

SLAS Technol. 2021 Aug;26(4):392-398. doi: 10.1177/2472630320985456. Epub 2021 Mar 1.

Abstract

Undoubtedly, microfluidics has been a focal point of interdisciplinary science during the last two decades, resulting in many developments in this area. Centrifugal microfluidic platforms have good potential for use in point-of-care devices because they take advantage of some intrinsic forces, most notably centrifugal force, which obviates the need to any external driving forces. Herein, we introduce a newly designed detection chamber for use on microfluidic discs that can be employed as an absorbance readout step in cases where the final solution has a very low viscosity and surface tension. In such situations, our chamber easily eliminates the air bubbles from the final solution without any interruption. One microfluidic disc for measuring the hemoglobin concentration was designed and constructed to verify the correct functioning of this detection chamber. This disc measured the hemoglobin concentration of the blood samples via the HiCN method. Then, the hemoglobin concentration of 11 blood samples was quantified and compared with the clinic's data using the hemoglobin measurement disc, which included four hemoglobin measurement sets, and each set contained two inlets for the blood sample and the reagent, one two-part mixing chamber, and one bubble-free detection chamber. The measured values of the disc had good linearity and conformity compared with the clinic's data, and there were no air bubbles in the detection step. In this study, the standard deviation and the turnaround time were ± 0.51 g/dL and 68 s, respectively.

摘要

毫无疑问,在过去的二十年中,微流控技术一直是交叉学科科学的焦点,这导致了该领域的许多发展。离心微流控平台在即时检测设备中有很好的应用潜力,因为它们利用了一些固有力,尤其是离心力,这就不需要任何外部驱动力。在这里,我们介绍了一种新设计的检测室,用于微流控盘,可以作为最终溶液具有非常低的粘度和表面张力的吸光度读出步骤。在这种情况下,我们的腔室可以轻松地将气泡从最终溶液中排出,而不会造成任何干扰。设计并构建了一个用于测量血红蛋白浓度的微流控盘,以验证这个检测室的正确功能。该圆盘通过 HiCN 方法测量了血液样本的血红蛋白浓度。然后,使用血红蛋白测量盘对 11 个血液样本的血红蛋白浓度进行了定量,并与临床数据进行了比较,血红蛋白测量盘包括四个血红蛋白测量组件,每个组件都有两个血液样本和试剂入口、一个两部分混合室和一个无气泡检测室。与临床数据相比,该圆盘的测量值具有良好的线性和一致性,并且在检测步骤中没有气泡。在这项研究中,标准偏差和周转时间分别为±0.51 g/dL 和 68 s。

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