A microfluidic system for semicontinuous bead-based biosensing platforms

Hye Won Kim, Young Man Kim, Sung-Keun Yoo, S. Y. Yoon, Jong Hyun Lee, Sung Yang
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Abstract

Conventional bead-based micro immunoassays do not guarantee high reliability because of the working principle for the trapping methods which cause inconsistency in trapping of cytometric beads. This paper presents a new bead-based micro immunoassay system for multiple or semicontinuous assays with high reliability and accuracy using hole-patterned structures and double-cladding optical fibers. Trapping test showed selective trapping of beads and consistency of the number of the trapped beads over repeated tests. Immunoassay using IL-6 showed that the cytometric beads were trapped in ordered fashion and provided a detection limit on the order of pg/ml.
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半连续头部生物传感平台的微流控系统
由于捕获方法的工作原理导致捕获细胞计数珠的不一致性,传统的基于珠的微免疫测定不能保证高可靠性。本文介绍了一种新型的基于微球的微免疫分析系统,该系统采用孔图结构和双包层光纤,具有高可靠性和准确性,可用于多次或半连续检测。捕获试验表明,在重复试验中,捕获珠子的数量具有选择性和一致性。IL-6免疫分析显示,细胞珠被有序捕获,检测限为pg/ml。
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