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Rapid Multianalyte Microfluidic Homogeneous Immunoassay on Electrokinetically Driven Beads

机译:电动驱动珠子上快速多角形微流体均匀免疫测定

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摘要

The simplicity of homogeneous immunoassays makes them suitable for diagnostics of acute conditions. Indeed, the absence of washing steps reduces the binding reaction duration and favors a rapid and compact device, a critical asset for patients experiencing life-threatening diseases. In order to maximize analytical performance, standard systems employed in clinical laboratories rely largely on the use of high surface-to-volume ratio suspended moieties, such as microbeads, which provide at the same time a fast and efficient collection of analytes from the sample and controlled aggregation of collected material for improved readout. Here, we introduce an integrated microfluidic system that can perform analyte detection on antibody-decorated beads and their accumulation in confined regions within 15 min. We employed the system to the concomitant analysis of clinical concentrations of Neutrophil Gelatinase-Associated Lipocalin (NGAL) and Cystatin C in serum, two acute kidney injury (AKI) biomarkers. To this end, high-aspect-ratio, three-dimensional electrodes were integrated within a microfluidic channel to impart a controlled trajectory to antibody-decorated microbeads through the application of dielectrophoretic (DEP) forces. Beads were efficiently retained against the fluid flow of reagents, granting an efficient on-chip analyte-to-bead binding. Electrokinetic forces specific to the beads’ size were generated in the same channel, leading differently decorated beads to different readout regions of the chip. Therefore, this microfluidic multianalyte immunoassay was demonstrated as a powerful tool for the rapid detection of acute life-threatening conditions.
机译:均匀免疫测定的简单性使其适用于急性条件的诊断。实际上,没有洗涤步骤的情况会降低结合反应持续时间,并利用危及生命疾病的患者的临界资产,这是一种快速和紧凑的装置。为了最大限度地提高分析性能,临床实验室中使用的标准系统依赖于使用高面积体积比悬浮部分,例如微珠,同时提供来自样品的快速和有效地收集分析物的分析物收集材料的控制聚集,以改善读出。在这里,我们介绍了一种集成的微流体系统,可以对抗体装饰珠子进行分析物检测,并在15分钟内在限制区域中的积累。我们使用该系统伴随着血清中性粒细胞凝胶酶相关脂素(NGAL)和胱抑素C的临床浓度分析,两个急性肾损伤(AKI)生物标志物。为此,高纵横比,三维电极在微流体通道内整合到微流体通道内,通过施加介电泳(DEP)力来赋予抗体装饰的微珠的控制轨迹。珠粒被高效地保留试剂的流体流动,授予有效的片上分析物到珠子结合。特异于珠子尺寸的电动力在相同的通道中产生,导致芯片的不同读出区域的不同装饰的珠子。因此,这种微流体多层茂物质免疫测定被证实为快速检测急性生命的危及条件的强大工具。

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