Department of Chemistry, College of Staten Island, and The Graduate Center, The City University of New York, Staten Island, NY 10314, USA.
Biomaterials. 2012 Oct;33(29):7115-25. doi: 10.1016/j.biomaterials.2012.06.031. Epub 2012 Jul 15.
We design a class of imprinted hybrid microgels that can optically monitor glucose levels with high sensitivity and selectivity in complex media at physiological pH, acting like a "glucose-indicator". Such imprinted hybrid microgels were made of Ag nanoparticles (NPs) in situ immobilized in molecularly imprinted glucose-responsive polymeric microgel templates containing phenylboronic acids in such a way that the Ag NPs were confined in the immediate vicinity to each other, thus enabling their efficient plasmon coupling. The glucose-responsive gel-actuated tunable plasmon coupling effects among the Ag NPs immobilized inside the microgels were investigated in both phosphate buffer solution and artificial tear fluid. The visually evident color shift from yellow to red of the hybrid microgel dispersion in response to a glucose concentration change from 0 to 20.0 mm allows one to see the glucose levels without instrumental aid. The surface plasmon resonance (SPR) response of the imprinted hybrid microgels at appropriate loading amount of Ag NPs is free of the significant interferences from the major non-glucose constituents, enabling the optical glucose sensing in artificial tear fluids with the achieved root-mean-squared error of predication (RMSEC) as low as 13.7 μM (~0.2 mg/dL) over a clinically relevant glucose concentration range of 0.1-20 mm (1.8-360 mg/dL). The highly versatile imprinted hybrid microgels could potentially be used for continuous glucose monitoring in clinical diagnostic and bioprocess applications.
我们设计了一类印迹杂化微凝胶,它可以在生理 pH 值的复杂介质中以高灵敏度和选择性光学监测葡萄糖水平,充当“葡萄糖指示剂”。这种印迹杂化微凝胶是由原位固定在含有苯硼酸的分子印迹葡萄糖响应聚合物微凝胶模板中的 Ag 纳米颗粒 (NPs) 制成的,使得 Ag NPs 彼此紧密相邻,从而能够实现有效的等离子体耦合。研究了在磷酸盐缓冲溶液和人工泪液中,固定在微凝胶内部的 Ag NPs 之间的葡萄糖响应凝胶驱动的可调谐等离子体耦合效应。杂化微凝胶分散体对葡萄糖浓度从 0 到 20.0mm 的变化表现出从黄色到红色的明显颜色变化,无需仪器辅助即可看到葡萄糖水平。在适当的 Ag NPs 负载量下,印迹杂化微凝胶的表面等离子体共振 (SPR) 响应不受主要非葡萄糖成分的显著干扰,使光学葡萄糖传感能够在人工泪液中进行,在临床相关的 0.1-20mm(1.8-360mg/dL)葡萄糖浓度范围内实现预测均方根误差 (RMSEC) 低至 13.7μM(约 0.2mg/dL)。这种多功能的印迹杂化微凝胶有望用于临床诊断和生物过程应用中的连续葡萄糖监测。