Laboratory of Chemical Biology, Department of Biomedical Engineering, Eindhoven University of Technology, P.O Box 513, 5600 MB Eindhoven, The Netherlands.
Institute for Complex Molecular Systems, Eindhoven University of Technology, P.O Box 513, 5600 MB Eindhoven, The Netherlands.
Anal Chem. 2023 Jun 13;95(23):8922-8931. doi: 10.1021/acs.analchem.3c00745. Epub 2023 May 30.
Immunoassays show great potential for the detection of low levels of cytokines, due to their high sensitivity and excellent specificity. There is a particular demand for biosensors that enable both high-throughput screening and continuous monitoring of clinically relevant cytokines such as interleukin-6 (IL-6) and tumor necrosis factor-α (TNFα). To this end, we here introduce a novel bioluminescent immunoassay based on the ratiometric plug-and-play immunodiagnostics (RAPPID) platform, with an improved intrinsic signal-to-background and an >80-fold increase in the luminescent signal. The new dRAPPID assay, comprising a dimeric protein G adapter connected via a semiflexible linker, was applied to detect the secretion of IL-6 by breast carcinoma cells upon TNFα stimulation and the production of low concentrations of IL-6 (∼18 pM) in an endotoxin-stimulated human 3D muscle tissue model. Moreover, we integrated the dRAPPID assay in a newly developed microfluidic device for the simultaneous and continuous monitoring of changes in IL-6 and TNFα in the low-nanomolar range. The luminescence-based read-out and the homogeneous nature of the dRAPPID platform allowed for detection with a simple measurement setup, consisting of a digital camera and a light-sealed box. This permits the usage of the continuous dRAPPID monitoring chip at the point of need, without the requirement for complex or expensive detection techniques.
免疫分析在检测低水平细胞因子方面具有很大的潜力,因为它们具有很高的灵敏度和出色的特异性。人们特别需要生物传感器,能够进行高通量筛选和连续监测临床相关细胞因子,如白细胞介素-6 (IL-6) 和肿瘤坏死因子-α (TNFα)。为此,我们在这里引入了一种基于比率型即插即用免疫诊断 (RAPPID) 平台的新型生物发光免疫分析,该平台具有改进的固有信号与背景比和 >80 倍的发光信号增强。新的 dRAPPID 检测法由通过半柔性接头连接的二聚体蛋白 G 接头组成,用于检测 TNFα 刺激乳腺癌细胞分泌 IL-6 以及内毒素刺激的人 3D 肌肉组织模型中低浓度 IL-6(∼18 pM)的产生。此外,我们将 dRAPPID 检测法集成到一种新开发的微流控设备中,用于同时连续监测低纳摩尔范围内 IL-6 和 TNFα 的变化。基于发光的读出和 dRAPPID 平台的均相性质允许使用简单的测量设置进行检测,该设置由数字相机和密封光盒组成。这使得可以在需要的地方使用连续的 dRAPPID 监测芯片,而无需复杂或昂贵的检测技术。