University of Maryland School of Medicine, Center for Fluorescence Spectroscopy, Department of Bioch, United States.
University of Maryland School of Medicine, Department of Obstetrics, Gynecology and Reproductive Sci, United States.
J Biomed Opt. 2018 May;23(5):1-9. doi: 10.1117/1.JBO.23.5.057005.
Accurate and reliable monitoring of blood glucose is needed for the treatment of diabetes, which has many challenges, including lack of patient compliance. Measuring tear glucose is an alternative to traditional finger-stick tests used to track blood sugar levels, but glucose sensing using tears has yet to be achieved. We report a methodology for possible tear glucose monitoring using glucose-sensitive silicone hydrogel (SiHG) contact lenses, the primary type of lenses available in today's market. Initially, we assessed the interpenetrating polymer network, with nearly pure silicone and water regions, existing in the SiHGs using a polarity-sensitive probe Prodan. We then synthesized a glucose-sensitive fluorophore Quin-C18 with a hydrophobic side chain for localization of probe at the interfacial region. Using our glucose-sensing contact lens, we were able to measure varying concentrations of glucose in an in-vitro system. The Quin-C18 strongly bound to the lenses with insignificant leaching even after multiple rinses. The lenses displayed a similar response to glucose after three months of storage in water. This study demonstrates that it may be possible to develop a contact lens for continuous glucose monitoring in the near term, using our concept of fluorophore binding at the silicone-water interface.
准确可靠的血糖监测对于糖尿病的治疗至关重要,但面临着许多挑战,包括患者配合度低。测量泪液葡萄糖是一种替代传统指尖血糖检测的方法,用于跟踪血糖水平,但目前尚未实现利用泪液进行葡萄糖传感。我们报告了一种使用葡萄糖敏感的硅水凝胶(SiHG)隐形眼镜(目前市场上主要的隐形眼镜类型)进行可能的泪液葡萄糖监测的方法。最初,我们使用极性敏感探针 Prodan 评估了 SiHG 中存在的几乎纯硅胶和水区域的互穿聚合物网络。然后,我们合成了一种带有疏水侧链的葡萄糖敏感荧光染料 Quin-C18,用于将探针定位在界面区域。使用我们的葡萄糖感应隐形眼镜,我们能够在体外系统中测量不同浓度的葡萄糖。Quin-C18 与隐形眼镜强烈结合,即使经过多次冲洗也没有明显的浸出。在水中储存三个月后,隐形眼镜对葡萄糖的反应相似。这项研究表明,使用我们在硅胶-水界面处荧光染料结合的概念,近期内可能开发出一种用于连续葡萄糖监测的隐形眼镜。