Department of Computer Sciences and Microsystem Technology, University of Applied Sciences Kaiserslautern, Amerikastrasse 1, 66482, Zweibruecken, Germany.
Institute of Medical Genetics and Applied Genomics, Eberhard-Karls University Tuebingen, Calwerstraße 7, 72076, Tübingen, Germany.
Anal Bioanal Chem. 2020 Oct;412(25):6777-6788. doi: 10.1007/s00216-020-02820-4. Epub 2020 Jul 28.
Rapid and frequent screening of cytokines as immunomodulation agents is necessary for precise interventions in severe pathophysiological conditions. In addition to high-sensitivity detection of such analytes in complex biological fluids such as blood, saliva, and cell culture medium samples, it is also crucial to work out miniaturized bioanalytical platforms with potential for high-density integration enabling screening of multiple analytes. In this work, we show a compact, point-of-care-ready bioanalytical platform for screening of cytokines such as interleukin-4 (IL-4) and interleukin-2 (IL-2) based on one-dimensional ion-sensitive field-effect transistors arrays (nanoISFETs) of silicon fabricated at wafer-scale via nanoimprint lithography. The nanoISFETs biofunctionalized with receptor proteins alpha IL-4 and alpha IL-2 were deployed for screening cytokine secretion in mouse T helper cell differentiation culture media, respectively. Our nanoISFETs showed robust sensor signals for specific molecular binding and can be readily deployed for real-time screening of cytokines. Quantitative analyses of the nanoISFET-based bioanalytical platform was carried out for IL-4 concentrations ranging from 25 fg/mL (1.92 fM) to 2.5 μg/mL (192 nM), showing a limit of detection down to 3-5 fM, which was found to be in agreement with ELISA results in determining IL-4 concentrations directly in complex cell culture media. Graphical abstract.
快速且频繁地筛选细胞因子作为免疫调节剂对于在严重病理生理条件下进行精确干预是必要的。除了在血液、唾液和细胞培养液等复杂生物流体中对这些分析物进行高灵敏度检测外,还需要开发具有高密度集成潜力的微型化生物分析平台,以便能够筛选多种分析物。在这项工作中,我们展示了一种基于硅制造的一维离子敏感场效应晶体管阵列(nanoISFET)的紧凑型、即时护理准备生物分析平台,用于筛选细胞因子,如白细胞介素-4(IL-4)和白细胞介素-2(IL-2)。通过纳米压印光刻在晶圆级制造的 nanoISFET 被生物功能化,分别用于筛选小鼠 T 辅助细胞分化培养物中的细胞因子分泌。我们的 nanoISFET 对特异性分子结合表现出稳健的传感器信号,可方便地用于实时筛选细胞因子。对基于 nanoISFET 的生物分析平台进行了 IL-4 浓度范围为 25 fg/mL(1.92 fM)至 2.5 μg/mL(192 nM)的定量分析,检测限低至 3-5 fM,这与在复杂细胞培养物中直接测定 IL-4 浓度的 ELISA 结果一致。