Department of Chemistry, Capital Normal University, Beijing 100048, China.
Anal Chem. 2021 Jan 19;93(2):1043-1049. doi: 10.1021/acs.analchem.0c03938. Epub 2020 Dec 9.
Diabetes is a metabolic syndrome associated with hyperglycemia, hypertension, atherosclerosis, and endothelial dysfunction. Applying the mechanical stretch on cells to simulate blood circulation while monitoring the cell glucose metabolism in a high-glucose environment is important for better comprehension of the underlying mechanisms of atherosclerosis caused by diabetes. Herein, we developed a facile strategy integrating zeolitic imidazolate framework-8-encapsulated glucose oxidase (GOx@ZIF-8) and an gold (Au) stretchable electrode (Au SE) to construct a flexible and stretchable glucose sensor (GOx@ZIF-8/Au SE) for investigating the glucose metabolism mechanism of stretched endothelial cells in hyperglycemia. The encapsulation of GOx with ZIF-8 prevents the aggregation and detachment of GOx from the sensing interface and endows the biosensor with high stability. Additionally, the Au SE with inherent stretchability can act as an integrated platform for mechanical stimulation as well as for transient signal sensing during the mechanotransduction process. Moreover, this flexible and stretchable glucose sensor is successfully used for monitoring the glucose metabolism of mechanically stimulated cells in hyperglycemia, and it was found for the first time that the glucose utilization ability of cells under static conditions is higher than that in the stretched state. This facile and straightforward method paves a promising route for designing a stable enzyme-based stretchable biosensor for detecting the underlying mechanisms of atherosclerosis caused by diabetes.
糖尿病是一种与高血糖、高血压、动脉粥样硬化和内皮功能障碍相关的代谢综合征。在高糖环境下,对细胞施加机械拉伸以模拟血液循环,同时监测细胞葡萄糖代谢,对于更好地理解糖尿病引起的动脉粥样硬化的潜在机制非常重要。在此,我们开发了一种简便的策略,将封装葡萄糖氧化酶(GOx@ZIF-8)的沸石咪唑酯骨架-8(ZIF-8)和金(Au)可拉伸电极(Au SE)集成在一起,构建了一种用于研究高糖环境下拉伸内皮细胞葡萄糖代谢机制的柔性可拉伸葡萄糖传感器(GOx@ZIF-8/Au SE)。ZIF-8 封装的 GOx 可防止 GOx 从传感界面聚集和脱落,并赋予生物传感器高稳定性。此外,具有内在可拉伸性的 Au SE 可以用作机械刺激的集成平台,以及在机械转导过程中的瞬态信号传感。此外,该柔性可拉伸葡萄糖传感器成功地用于监测高糖环境下机械刺激细胞的葡萄糖代谢,并且首次发现静态条件下细胞的葡萄糖利用能力高于拉伸状态下的葡萄糖利用能力。这种简单直接的方法为设计用于检测糖尿病引起的动脉粥样硬化潜在机制的基于酶的稳定可拉伸生物传感器铺平了道路。