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用于细胞因子检测的电化学免疫传感器系统及其温度控制

Towards an Electrochemical Immunosensor System with Temperature Control for Cytokine Detection.

机构信息

Robert Bosch GmbH, Corporate Research, Robert-Bosch-Campus 1, D-71272 Renningen, Germany.

Department of Functional Materials, University of Bayreuth, Universitätsstraße 30, D-95440 Bayreuth, Germany.

出版信息

Sensors (Basel). 2018 Apr 24;18(5):1309. doi: 10.3390/s18051309.

Abstract

The cytokine interleukin-13 (IL-13) plays a major role in airway inflammation and is a target of new anti-asthmatic drugs. Hence, IL-13 determination could be interesting in assessing therapy success. Thus, in this work an electrochemical immunosensor for IL-13 was developed and integrated into a fluidic system with temperature control for read-out. Therefore, two sets of results are presented. First, the sensor was set up in sandwich format on single-walled carbon nanotube electrodes and was read out by applying the hydrogen peroxide⁻hydroquinone⁻horseradish peroxidase (HRP) system. Second, a fluidic system was built up with an integrated heating function realized by Peltier elements that allowed a temperature-controlled read-out of the immunosensor in order to study the influence of temperature on the amperometric read-out. The sensor was characterized at the temperature optimum of HRP at 30 °C and at 12 °C as a reference for lower performance. These results were compared to a measurement without temperature control. At the optimum operation temperature of 30 °C, the highest sensitivity (slope) was obtained compared to lower temperatures and a limit of detection of 5.4 ng/mL of IL-13 was calculated. Taken together, this approach is a first step towards an automated electrochemical immunosensor platform and shows the potential of a temperature-controlled read-out.

摘要

细胞因子白细胞介素-13(IL-13)在气道炎症中起主要作用,是新型抗哮喘药物的靶点。因此,IL-13 的测定可能有助于评估治疗效果。因此,本工作开发了一种用于 IL-13 的电化学免疫传感器,并将其集成到具有温度控制功能的流体系统中进行读出。因此,呈现了两组结果。首先,在单壁碳纳米管电极上以三明治格式构建传感器,并通过应用过氧化氢-对苯二酚-HRP(辣根过氧化物酶)系统进行读出。其次,建立了具有集成加热功能的流体系统,该系统由珀耳帖元件实现,允许对免疫传感器进行温度控制读出,以研究温度对安培读出的影响。在 HRP 的最佳温度 30°C 下和 12°C 下对传感器进行了表征,作为性能较低的参考。将这些结果与无温度控制的测量进行了比较。在最佳操作温度 30°C 下,与较低温度相比,获得了最高的灵敏度(斜率),并计算出 IL-13 的检出限为 5.4ng/mL。总的来说,这种方法是朝着自动化电化学免疫传感器平台迈出的第一步,并展示了温度控制读出的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7fe3/5982244/1ed53928c494/sensors-18-01309-g0A1.jpg

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