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基于直流电绝缘子的红细胞介电泳特性分析:ABO-Rh 人类血型鉴定。

Direct current insulator-based dielectrophoretic characterization of erythrocytes: ABO-Rh human blood typing.

机构信息

Voiland School of Chemical Engineering and Bioengineering, Washington State University, Pullman, WA, USA.

出版信息

Electrophoresis. 2011 Sep;32(18):2530-40. doi: 10.1002/elps.201100089. Epub 2011 Aug 26.

Abstract

A microfluidic platform developed for quantifying the dependence of erythrocyte (red blood cell, RBC) responses by ABO-Rh blood type via direct current insulator dielectrophoresis (DC-iDEP) is presented. The PDMS DC-iDEP device utilized a 400 x 170 μm² rectangular insulating obstacle embedded in a 1.46-cm long, 200-μm wide inlet channel to create spatial non-uniformities in direct current (DC) electric field density realized by separation into four outlet channels. The DC-iDEP flow behaviors were investigated for all eight blood types (A+, A-, B+, B-, AB+, AB-, O+, O-) in the human ABO-Rh blood typing system. Three independent donors of each blood type, same donor reproducibility, different conductivity buffers (0.52-9.1 mS/cm), and DC electric fields (17.1-68.5 V/cm) were tested to investigate separation dependencies. The data analysis was conducted from image intensity profiles across inlet and outlet channels in the device. Individual channel fractions suggest that the dielectrophoretic force experienced by the cells is dependent on erythrocyte antigen expression. Two different statistical analysis methods were conducted to determine how distinguishable a single blood type was from the others. Results indicate that channel fraction distributions differ by ABO-Rh blood types suggesting that antigens present on the erythrocyte membrane polarize differently in DC-iDEP fields. Under optimized conductivity and field conditions, certain blind blood samples could be sorted with low misclassification rates.

摘要

本文介绍了一种用于通过直流介电泳(DC-iDEP)量化 ABO-Rh 血型红细胞(红血球,RBC)反应的依赖性的微流控平台。该 PDMS DC-iDEP 设备利用嵌入在 1.46 厘米长、200 微米宽的入口通道中的 400 x 170 微米²矩形绝缘障碍物,通过分离成四个出口通道,在直流(DC)电场密度中产生空间不均匀性。在人类 ABO-Rh 血型系统中,对所有八种血型(A+、A-、B+、B-、AB+、AB-、O+、O-)进行了 DC-iDEP 流动行为研究。每个血型有三个独立的供体,相同供体的可重复性,不同的电导率缓冲液(0.52-9.1 mS/cm)和 DC 电场(17.1-68.5 V/cm)进行了测试,以研究分离的依赖性。数据分析是从设备入口和出口通道的图像强度分布进行的。个体通道分数表明,细胞所经历的介电泳力取决于红细胞抗原的表达。进行了两种不同的统计分析方法来确定单个血型与其他血型的可区分程度。结果表明,通道分数分布因 ABO-Rh 血型而异,表明红细胞膜上存在的抗原在 DC-iDEP 场中极化方式不同。在优化的电导率和场条件下,某些盲血样本可以以低错误分类率进行分类。

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