Shin Syuan-Jia, Lo Pei-Chen, Wu Yen-Ting, Shao Huai-Hsaun, Li Dai-Jin, Weng Yung-Cheng, Chen You-Yin, Liu Ta-Chung
Department of Biomedical Engineering, National Yang Ming Chiao Tung University, 155 Lin-Ong St., Taipei, Taiwan 11221, ROC.
ACS Sens. 2024 Dec 27;9(12):6520-6530. doi: 10.1021/acssensors.4c01921. Epub 2024 Dec 5.
Diabetes mellitus is a metabolic disorder that affects millions of individuals worldwide. Continuous glucose monitoring (CGM) offers a prevalent method for continuously monitoring interstitial glucose levels instead of traditional self-monitoring of blood glucose (BG), eliminating the need for finger pricking and providing only discrete data. However, challenges in accuracy persist in CGM, including substantial noise interference and tissue fluid erosion, as well as the pH fluctuations in the localized ISF microenvironment during acute inflammation periods. Herein, we reported a facile atmospheric plasma-induced grafting technique to surface functionalize a zwitterionic brush coating on the sensor, with the aim to adjust the sensor's microenvironmental chemistry. The zwitterionic brush-coated CGM (Z-coated CGM) could regulate pH values with a good glucose response in the pH range from 6.2 to 7.6 and a prolonged sensor life over the uncoated sensor. We evaluated the rat practice that the Z-coated CGM consistently outperformed the uncoated in tracking BG fluctuations, with higher correlation coefficients and significant noise reduction for both non-recalibration and recalibration. This technology holds substantial implications for subcutaneous embedded glucose monitors and facilitates CGMs in achieving independence from routine BG fingerstick calibrations.
糖尿病是一种影响全球数百万人的代谢紊乱疾病。连续血糖监测(CGM)提供了一种普遍的方法来持续监测组织间液葡萄糖水平,而非传统的自我血糖监测(BG),无需手指采血,且仅提供离散数据。然而,CGM在准确性方面仍存在挑战,包括大量噪声干扰、组织液侵蚀,以及急性炎症期局部组织间液微环境中的pH波动。在此,我们报道了一种简便的常压等离子体诱导接枝技术,用于在传感器表面功能化两性离子刷涂层,旨在调节传感器的微环境化学性质。两性离子刷涂层CGM(Z涂层CGM)能够在pH值6.2至7.6范围内调节pH值,并具有良好的葡萄糖响应,且与未涂层传感器相比,传感器寿命得以延长。我们评估了大鼠实验,结果表明Z涂层CGM在跟踪BG波动方面始终优于未涂层的CGM,在非重新校准和重新校准时均具有更高的相关系数和显著的噪声降低。这项技术对皮下植入式葡萄糖监测器具有重要意义,并有助于CGM实现无需常规BG指尖校准。