Department of Bioengineering, The University of Texas at Dallas, Richardson, Texas, 75080, USA.
EnLiSense LLC, 1813 Audubon Pond Way, Allen, Texas, 75013, USA.
Sci Rep. 2017 May 16;7(1):1950. doi: 10.1038/s41598-017-02133-0.
Successful commercialization of wearable diagnostic sensors necessitates stability in detection of analytes over prolonged and continuous exposure to sweat. Challenges are primarily in ensuring target disease specific small analytes (i.e. metabolites, proteins, etc.) stability in complex sweat buffer with varying pH levels and composition over time. We present a facile approach to address these challenges using RTILs with antibody functionalized sensors on nanoporous, flexible polymer membranes. Temporal studies were performed using both infrared spectroscopic, dynamic light scattering, and impedimetric spectroscopy to demonstrate stability in detection of analytes, Interleukin-6 (IL-6) and Cortisol, from human sweat in RTILs. Temporal stability in sensor performance was performed as follows: (a) detection of target analytes after 0, 24, 48, 96, and 168 hours post-antibody sensor functionalization; and (b) continuous detection of target analytes post-antibody sensor functionalization. Limit of detection of IL-6 in human sweat was 0.2 pg/mL for 0-24 hours and 2 pg/mL for 24-48 hours post-antibody sensor functionalization. Continuous detection of IL-6 over 0.2-200 pg/mL in human sweat was demonstrated for a period of 10 hours post-antibody sensor functionalization. Furthermore, combinatorial detection of IL-6 and Cortisol in human sweat was established with minimal cross-talk for 0-48 hours post-antibody sensor functionalization.
可穿戴诊断传感器的成功商业化需要在长时间连续暴露于汗液中对分析物进行稳定检测。主要挑战在于确保目标疾病特异性小分析物(例如代谢物、蛋白质等)在复杂的汗液缓冲液中保持稳定,同时缓冲液的 pH 值和成分随时间变化。我们提出了一种使用 RTIL 并结合抗体功能化传感器在纳米多孔、柔性聚合物膜上的简便方法来应对这些挑战。我们使用红外光谱、动态光散射和阻抗光谱进行了时间研究,以证明在 RTIL 中检测分析物(白细胞介素 6 (IL-6) 和皮质醇)的稳定性。传感器性能的时间稳定性如下进行:(a) 在抗体传感器功能化后 0、24、48、96 和 168 小时检测目标分析物;和 (b) 在抗体传感器功能化后连续检测目标分析物。人汗中 IL-6 的检测限在抗体传感器功能化后 0-24 小时为 0.2 pg/mL,24-48 小时为 2 pg/mL。在抗体传感器功能化后 10 小时内,可连续检测人汗中的 IL-6 浓度在 0.2-200 pg/mL 之间。此外,在抗体传感器功能化后 0-48 小时内,建立了人汗中 IL-6 和皮质醇的组合检测,具有最小的交叉干扰。