Chen Yuxian, Xiao Haoyu, Fan Qiaolin, Tu Weilong, Zhang Shiqi, Li Xiao, Hu Tao
School of Mechanical Engineering, Jiangsu Key Laboratory for Design and Manufacture of Micro-Nano Biomedical Instruments, Southeast University, Nanjing 211189, China.
ACS Appl Mater Interfaces. 2024 Oct 16;16(41):55155-55165. doi: 10.1021/acsami.4c13013. Epub 2024 Oct 4.
The development of noninvasive glucose sensors capable of continuous monitoring without restricting user mobility is crucial, particularly for managing diabetes, which demands consistent and long-term observation. Traditional sensors often face challenges with accuracy and stability that curtail their practical applications. To address these issues, we have innovatively applied a three-dimensional porous aerogel composed of TiCT MXene and reduced graphene oxide (MX-rGO) in electrochemical sensing. It significantly reduces the electron-transfer distance between the enzyme's redox center and the electrode surface while firmly anchoring the enzyme layer to effectively prevent any leakage. Another pivotal advancement in our study is the integration of the sensor with a real-time adaptive calibration mechanism tailored specifically for analyzing sweat glucose. This sensor not only measures glucose levels but also dynamically monitors and adjusts to pH fluctuations in sweat. Such capabilities ensure the precise delivery of physiological data during physical activities, providing strong support for personalized health management.
开发能够在不限制用户活动的情况下进行连续监测的无创葡萄糖传感器至关重要,特别是对于糖尿病管理而言,因为糖尿病需要持续且长期的观察。传统传感器在准确性和稳定性方面常常面临挑战,这限制了它们的实际应用。为了解决这些问题,我们创新性地将由TiCT MXene和还原氧化石墨烯(MX-rGO)组成的三维多孔气凝胶应用于电化学传感。它显著缩短了酶的氧化还原中心与电极表面之间的电子转移距离,同时牢固地锚定酶层,有效防止任何泄漏。我们研究中的另一项关键进展是将传感器与专门为分析汗液葡萄糖量身定制的实时自适应校准机制相结合。这种传感器不仅能测量葡萄糖水平,还能动态监测并适应汗液中的pH值波动。这些功能确保在体育活动期间精确传递生理数据,为个性化健康管理提供有力支持。