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一种用于提高免疫分析灵敏度的微流控微粒子标记阻抗传感器阵列。

A microfluidic microparticle-labeled impedance sensor array for enhancing immunoassay sensitivity.

机构信息

Department of Mechanical Engineering, University of Utah, Salt Lake City, UT, USA.

出版信息

Analyst. 2021 May 21;146(10):3289-3298. doi: 10.1039/d0an02081h. Epub 2021 Apr 14.

Abstract

An impedimetric biosensor is used to measure electrical impedance changes in the presence of biomolecules from sinusoidal input voltages. In this paper, we present a new portable impedance-based biosensor platform to improve the sensitivity of immunoassays with microparticles as a label. Using a 2 × 4 interdigitated electrode array with a 10/10 μm electrode/gap and a miniaturized impedance analyzer, we performed immunoassays with microparticles by integrating a microfluidic channel to evaluate signal enhancement. First, to understand the material dependency of microparticles on the sensor array, magnetic, silica, and polystyrene microparticles were tested. Among these microparticles, magnetic microparticles presented a high signal enhancement with relevant stability from the sensor array. With the magnetic microparticles, we demonstrate a series of immunoassays to detect human tumor necrosis factor (TNF-α) and compare the level of signal enhancement by measuring the limit of detection (LOD). With the microparticles, we achieved over ten times improvement of LOD from sandwich immunoassays. By incorporating with sample preparation and flow manipulation systems, this impedance sensor array can be utilized for digital diagnostics for a real sample-in answer-out system.

摘要

一种基于阻抗的生物传感器用于测量生物分子存在时的正弦输入电压的阻抗变化。在本文中,我们提出了一种新的基于阻抗的便携式生物传感器平台,通过使用微粒作为标记来提高免疫分析的灵敏度。我们使用具有 10/10μm 电极/间隙的 2×4 叉指电极阵列和微型阻抗分析仪,通过集成微流道来评估信号增强,进行了微粒的免疫分析。首先,为了了解微粒对传感器阵列的材料依赖性,我们测试了磁性、二氧化硅和聚苯乙烯微粒。在这些微粒中,磁性微粒从传感器阵列呈现出高信号增强和相关稳定性。利用磁性微粒,我们展示了一系列用于检测人肿瘤坏死因子 (TNF-α) 的免疫分析,并通过测量检测限 (LOD) 来比较信号增强的程度。利用微粒,我们实现了夹心免疫分析的 LOD 提高了十倍以上。通过与样品制备和流动控制系统相结合,这种阻抗传感器阵列可以用于用于真正的样品进答案出系统的数字诊断。

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