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Automated Digital Microfluidic Platform for Magnetic-Particle-Based Immunoassays with Optimization by Design of Experiments

机译:通过实验设计优化的基于磁性颗粒的免疫分析的自动化数字微流控平台

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摘要

We introduce an automated digital microfluidic (DMF) platform capable of performing immunoassays from sample to analysis with minimal manual intervention. This platform features (a) a 90 Pogo pin interface for digital microfluidic control, (b) an integrated (and motorized) photomultiplier tube for chemiluminescent detection, and (c) a magnetic lens assembly which focuses magnetic fields into a narrow region on the surface of the DMF device, facilitating up to eight simultaneous digital microfluidic magnetic separations. The new platform was used to implement a three-level full factorial design of experiments (DOE) optimization for thyroid-stimulating hormone immunoassays, varying (1) the analyte concentration, (2) the sample incubation time, and (3) the sample volume, resulting in an optimized protocol that reduced the detection limit and sample incubation time by up to 5-fold and 2-fold, respectively, relative to those from previous work. To our knowledge, this is the first report of a DOE optimization for immunoassays in a microfluidic system of any format. We propose that this new platform paves the way for a benchtop tool that is useful for implementing immunoassays in near-patient settings, including community hospitals, physicians' offices, and small clinical laboratories.
机译:我们引入了一种自动化的数字微流控(DMF)平台,该平台能够以最少的人工干预执行从样品到分析的免疫测定。该平台具有(a)用于数字微流体控制的90 Pogo针接口,(b)用于化学发光检测的集成(电动)光电倍增管,以及(c)磁性透镜组件,该组件将磁场聚焦到表面的狭窄区域中DMF设备的功能,可同时进行多达八个数字微流体磁分离。该新平台用于对甲状腺刺激激素免疫测定法进行三级全因子实验设计(DOE)优化,从而改变(1)分析物浓度,(2)样品孵育时间和(3)样品量,从而产生了一种优化的方案,相对于以前的工作,该方案将检测限和样品孵育时间分别减少了多达5倍和2倍。据我们所知,这是针对任何形式的微流体系统中的免疫分析进行DOE优化的第一份报告。我们建议该新平台为台式工具铺平道路,该台式工具可用于在社区医院,医师办公室和小型临床实验室等附近患者环境中实施免疫测定。

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