分子印迹聚合物
化学
茶碱
黄嘌呤
表面等离子共振
分子印迹
聚合物
咖啡因
色谱法
检出限
水溶液
分析化学(期刊)
有机化学
选择性
纳米技术
材料科学
酶
医学
催化作用
纳米颗粒
内分泌学
作者
Edward P. C. Lai,Ania Fafara,Victoria A. VanderNoot,Mari Kono,Brandee Polsky
摘要
A sensor system based on the optical phenomenon of surface plasmon resonance (SPR), which employs either photothermal deflection spectroscopy (PDS) or a photodiode array (PDA) for detection, was developed to use molecularly imprinted (MI) polymethacrylic acid - ethylene glycol dimethacrylates (PMAA-EDMA) as the sensing element. The MI polymers were first processed by Soxhlet extraction to remove the print molecules (theophylline, caffeine, and xanthine), yielding the specific anti-polymers. Each anti-polymer was layered over a silver film to serve as the analysis surface for the molecularly imprinted sorbent assay (MIA) of one target drug. This surface was exposed for 60 min to an aqueous standard drug solution, dried in air, and the uptake of the print molecule into the anti-polymer was monitored by shifts in the SPR angle θ r (and hence the SPR-PDS signal measured at constant θ ). The linear dynamic range of the MIA was found to extend up to 6 mg/mL, with a concentration detection limit estimated at 0.4 mg/mL for theophylline in aqueous solution. A cross-reactivity study of the anti-theophylline and anti-caffeine polymers, using eight other drugs structurally similar to theophylline and caffeine, showed none or very slight shifts in θ r . This implies that the anti-polymers were selective only for their original print molecules and had no affinity for the other drug molecules. Similar molecular recognition characteristics were observed for the anti-xanthine polymer.Key words: surface plasmon resonance, molecular imprinting, theophylline, caffeine, xanthine, sensor.
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