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Isomeric glucose recognition using molecularly imprinted polymer hydrogels

机译:使用分子印迹聚合物水凝胶的异构葡萄糖识别

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The goal of this research is to produce molecular imprinted polymers (MIPs), which selectively bind glucose over other sugars. MIP hydrogels against glucose exhibited binding capacities in excess of 0.6 grams of glucose per gram of dry gel in a 100% DI H_2O glucose solution, as well as in a 50-50% glucose-fructose solution mixture. Equilibrium binding capacities of fructose were lower than those observed with respect to glucose, indicating an isomeric preference for the binding of glucose over fructose. Although it is expected that imprinted cavities will be distorted due to the swelling of the hydrogel in water, our experiments show that even the swollen gels exhibit remarkable glucose recognition. This synthetic and characterization methodology for MIPs might thus offer exciting avenues for novel biomimetic recognition and isomeric separation techniques.
机译:该研究的目的是生产分子印迹聚合物(MIPS),其在其他糖中选择性地结合葡萄糖。对葡萄糖的MIP水凝胶表现出超过100%DI H_2O葡萄糖溶液中每克干凝胶的0.6克葡萄糖的结合容量,以及50-50%葡萄糖 - 果糖溶液混合物中。果糖的平衡结合能力低于相对于葡萄糖观察的那些,表明葡萄糖在果糖上结合的异构偏好。虽然预期由于水凝胶在水中的溶胀,但我们的实验表明,即使肿胀的凝胶也表现出显着葡萄糖识别,虽然是由于水凝胶的肿胀扭曲。因此,这种用于MIP的合成和表征方法可以为新的生物摩擦识别和异构分离技术提供令人兴奋的途径。

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