Yamaguchi Masaki, Katagata Hiroki, Tezuka Yuki, Niwa Daisuke, Shetty Vivek
Biomedical Engineering & Robotics Laboratory, Graduate School of Engineering, Iwate University, 4-3-5 Ueda, Morioka 020-8551, Japan.
Nano Bionics R&D Center, Research and Development Headquarters, Rohm Co., Ltd., 21 Saiin Mizosaki-cho, Ukyo-ku, Kyoto 615-8585, Japan.
Sens Biosensing Res. 2014 Aug;1:15-20. doi: 10.1016/j.sbsr.2014.07.001. Epub 2014 Jul 9.
Point-of-care measurement of the stress hormone cortisol will greatly facilitate the timely diagnosis and management of stress-related disorders. We describe an automated salivary cortisol immunosensor, incorporating centrifugal fluid valves and a disposable disc-chip that allows for truncated reporting of cortisol levels (<15 min). The performance characteristics of the immunosensor are optimized through select blocking agents to prevent the non-specific adsorption of proteins; immunoglobulin G (IgG) polymer for the pad and milk protein for the reservoirs and the flow channels. Incorporated centrifugal fluid valves allow for rapid and repeat washings to remove impurities from the saliva samples. An optical reader and laptop computer automate the immunoassay processes and provide easily accessible digital readouts of salivary cortisol measurements. Linear regression analysis of the calibration curve for the cortisol immunosensor showed 0.92 of coefficient of multiple determination, , and 38.7% of coefficient of variation, CV, for a range of salivary cortisol concentrations between 0.4 and 11.3 ng/mL. The receiver operating characteristic (ROC) curve analysis of human saliva samples indicate potential utility for discriminating stress disorders and underscore potential application of the biosensor in stress disorders. The performance of our salivary cortisol immunosensor approaches laboratory based tests and allows noninvasive, quantitative, and automated analysis of human salivary cortisol levels with reporting times compatible with point-of-care applications.
即时检测应激激素皮质醇将极大地促进与应激相关疾病的及时诊断和管理。我们描述了一种自动化唾液皮质醇免疫传感器,它集成了离心流体阀和一次性盘式芯片,能够在短时间内(<15分钟)报告皮质醇水平。通过选择封闭剂来优化免疫传感器的性能特征,以防止蛋白质的非特异性吸附;用于垫片的免疫球蛋白G(IgG)聚合物以及用于储液器和流动通道的乳蛋白。内置的离心流体阀可实现快速重复冲洗,以去除唾液样本中的杂质。光学读取器和笔记本电脑可使免疫分析过程自动化,并提供易于获取的唾液皮质醇测量数字读数。皮质醇免疫传感器校准曲线的线性回归分析显示,在0.4至11.3 ng/mL的唾液皮质醇浓度范围内,多重决定系数为0.92,变异系数CV为38.7%。对人类唾液样本的受试者工作特征(ROC)曲线分析表明,该传感器在区分应激障碍方面具有潜在用途,并强调了该生物传感器在应激障碍中的潜在应用。我们的唾液皮质醇免疫传感器的性能接近基于实验室的测试,能够对人类唾液皮质醇水平进行无创、定量和自动化分析,报告时间与即时检测应用相兼容。