首页> 美国卫生研究院文献>Sensors (Basel Switzerland) >Electrical Detection of C-Reactive Protein Using a Single Free-Standing Thermally Controlled Piezoresistive Microcantilever for Highly Reproducible and Accurate Measurements
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Electrical Detection of C-Reactive Protein Using a Single Free-Standing Thermally Controlled Piezoresistive Microcantilever for Highly Reproducible and Accurate Measurements

机译:使用单个自由站立的热控制的压阻微悬臂梁对C反应蛋白进行电检测可实现高重复性和准确的测量

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摘要

This study demonstrates a novel method for electrical detection of C-reactive protein (CRP) as a means of identifying an infection in the body, or as a cardiovascular disease risk assay. The method uses a single free-standing, thermally controlled piezoresistive microcantilever biosensor. In a commonly used sensing arrangement of conventional dual cantilevers in the Wheatstone bridge circuit, reference and gold-coated sensing cantilevers that inherently have heterogeneous surface materials and different multilayer structures may yield independent responses to the liquid environmental changes of chemical substances, flow field and temperature, leading to unwanted signal disturbance for biosensing targets. In this study, the single free-standing microcantilever for biosensing applications is employed to resolve the dual-beam problem of individual responses in chemical solutions and, in a thermally controlled system, to maintain its sensor performance due to the sensitive temperature effect. With this type of single temperature-controlled microcantilever sensor, the electrical detection of various CRP concentrations from 1 μg/mL to 200 μg/mL was performed, which covers the clinically relevant range. Induced surface stresses were measured at between 0.25 N/m and 3.4 N/m with high reproducibility. Moreover, the binding affinity (KD) of CRP and anti-CRP interaction was found to be 18.83 ± 2.99 μg/mL, which agreed with results in previous reported studies. This biosensing technique thus proves valuable in detecting inflammation, and in cardiovascular disease risk assays.
机译:这项研究证明了一种电检测C反应蛋白(CRP)的新方法,可作为识别体内感染或心血管疾病风险测定的一种方法。该方法使用一个独立的,热控制的压阻微悬臂生物传感器。在惠斯通电桥电路中常规双悬臂梁的常用传感装置中,固有具有异质表面材料和不同多层结构的参考和镀金传感悬臂梁可对化学物质,流场和温度的液体环境变化产生独立的响应,导致生物传感目标受到不必要的信号干扰。在这项研究中,用于生物传感应用的单个独立式微悬臂梁用于解决化学溶液中单个响应的双光束问题,并且在热控制系统中,由于敏感的温度效应而保持其传感器性能。使用这种类型的单温控微悬臂梁传感器,可以对1 Cg / mL至200 Cg / mL范围内的各种CRP浓度进行电检测,涵盖了临床相关范围。测得的诱导表面应力在0.25 N / m和3.4 N / m之间,并且具有很高的重现性。此外,发现CRP和抗CRP相互作用的结合亲和力(KD)为18.83±2.99μg/ mL,与先前报道的研究结果一致。因此,这种生物传感技术被证明对检测炎症和心血管疾病风险分析具有重要意义。

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