EaStCHEM, School of Chemistry, University of Edinburgh, Joseph Black Building, West Mains Road, Edinburgh, EH9 3FJ, UK.
School of Engineering, Institute for Integrated Micro and Nano Systems, University of Edinburgh, Scottish Microelectronics Centre, The King's Buildings, Edinburgh, EH9 3FF, UK.
Biosens Bioelectron. 2022 Feb 1;197:113728. doi: 10.1016/j.bios.2021.113728. Epub 2021 Nov 1.
The development of robust implantable sensors is important in the successful advancement of personalised medicine as they have the potential to provide in situ real-time data regarding the status of health and disease and the effectiveness of treatment. Tissue pH is a key physiological parameter and herein, we report the design, fabrication, functionalisation, encapsulation and protection of a miniaturised, self-contained, electrochemical pH sensor system and characterisation of sensor performance. Notably for the first time in this environment the pH sensor was based on a methylene blue redox reporter which showed remarkable robustness, accuracy and sensitivity. This was achieved by encapsulation of a self-assembled monolayer containing methylene blue entrapped within a Nafion layer. Another powerful feature was the incorporation, within the same implanted device, of a fabricated on-chip Ag/AgCl reference electrode - vital in any electrochemical sensor, but often ignored. When utilised in vivo, the sensor allowed accurate tracking of externally induced pH changes within a naturally occurring ovine lung cancer model, and correlated well with single point laboratory measurements made on extracted arterial blood, whilst enabling in vivo time-dependent measurements. The sensors functioned robustly whilst implanted, and maintained in vitro function once extracted and together, these results demonstrate proof-of-concept of the ability to sense real-time intratumoral tissue pH changes in vivo.
开发稳健的植入式传感器对于推进个性化医疗非常重要,因为它们有可能提供有关健康和疾病状态以及治疗效果的实时原位数据。组织 pH 值是一个关键的生理参数,在此我们报告了一种小型化、自包含的电化学 pH 传感器系统的设计、制造、功能化、封装和保护,以及传感器性能的表征。值得注意的是,在这种环境下,pH 传感器首次基于亚甲蓝氧化还原报告分子,其具有显著的稳健性、准确性和灵敏度。这是通过封装包含亚甲蓝的自组装单层来实现的,该亚甲蓝被包裹在一层 Nafion 中。另一个强大的功能是在同一植入设备中包含了一个内置的片上 Ag/AgCl 参比电极——这在任何电化学传感器中都是至关重要的,但通常被忽略。当在体内使用时,该传感器可以准确地跟踪自然发生的绵羊肺癌模型中外部诱导的 pH 值变化,并与从动脉血液中提取的单点实验室测量结果很好地相关,同时还能够进行体内时间依赖性测量。传感器在植入时稳健地工作,并在提取后保持体外功能。这些结果共同证明了在体内实时感知肿瘤内组织 pH 值变化的能力的概念验证。