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A Novel Microfluidic Device for Blood Plasma Filtration

机译:一种用于血液血浆过滤的新型微流体装置

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摘要

The use of whole blood and some biological specimens, such as urine, saliva, and seminal fluid are limited in clinical laboratory analysis due to the interference of proteins with other small molecules in the matrix and blood cells with optical detection methods. Previously, we developed a microfluidic device featuring an electrokinetic size and mobility trap (SMT) for on-chip extract, concentrate, and separate small molecules from a biological sample like whole blood. The device was used to on-chip filtrate the whole blood from the blood cells and plasma proteins and then on-chip extract and separate the aminoglycoside antibiotic drugs within 3 min. Herein, a novel microfluidic device featuring a nano-junction similar to those reported in the previous work formed by dielectric breakdown was developed for on-chip filtration and out-chip collection of blood plasma with a high extraction yield of 62% within less than 5 min. The filtered plasma was analyzed using our previous device to show the ability of this new device to remove blood cells and plasma proteins. The filtration device shows a high yield of plasma allowing it to detect a low concentration of analytes from the whole blood.
机译:由于蛋白质与具有光学检测方法中的其他小分子的其他小分子的干扰,使用全血和一些生物样本,例如尿液,唾液和精液,例如尿液,唾液和精液,例如临床实验室分析。以前,我们开发了一种微流体装置,具有用于片上提取物,浓缩物的电动尺寸和迁移率捕集器(SMT),并从生物样品中与全血的生物样品分离。该装置用于片上滤液从血细胞和血浆蛋白的全血,然后片上提取物并在3分钟内分离氨基糖苷抗生素药物。在此,具有与通过介电击穿的先前作品中报道的纳米结具有纳米交界处的新型微流体装置是用于片上过滤和血浆的片外血浆收集,其高萃取产率为62%在小于5分钟。使用先前的设备分析过滤的等离子体以显示该新装置去除血细胞和血浆蛋白的能力。过滤装置显示出高产等离子体,允许其检测来自全血的低浓度的分析物。

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