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The fabrication of a photoresponsive molecularly imprinted polymer for the photoregulated uptake and release of caffeine

机译:光响应性分子印迹聚合物的制备,用于咖啡因的光调节摄取和释放

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A photoresponsive molecularly imprinted polymer (MIP) material is successfully fabricated from an azobenzene-based functional monomer, 4-[(4-methacryloyloxy)phenylazo]benzoic acid (MPABA), using caffeine as a molecular template. The transcis photoisomerization properties of MPABA are retained after incorporation into the rigid 3D crosslinked polymer matrix. Substrate affinity of the MIP receptor sites is photoswitchable. This can be attributed to the photoisomerization of azobenzene chromophores within the MIP receptors, resulting in the alteration of their geometry and the spatial arrangement of their binding functionalities. The favorable binding constant of the MIP receptors for caffeine is 5.48 x 10(4) M-1 in dimethylsulfoxide. The density of the caffeine-specific receptor sites in the MIP material is 0.95 mu mol (g MIP)(-1). Upon irradiation at 365 urn, 58.3% of receptor-bound caffeine is released from the MIP material. Subsequent irradiation at 440 nm causes 96.4% of the released caffeine to be rebound by the MIP material. This near-quantitative uptake of the released caffeine is evidence of the reversibility of the receptor-site configuration and substrate affinity during the photoswitching of the azobenzene chromophores. Although the photoregulated substrate release and uptake processes are generally repeatable, a gradual reduction in the extent of substrate release and rebinding is observed. This may be caused by the slow deformation of MIP receptors during the course of repetitive photoswitching. The results of this work demonstrate the potential of stimuli-responsive MIP materials as smart chemicals and as drug-delivery systems.
机译:使用咖啡因作为分子模板,成功地从基于偶氮苯的功能单体4-[((4-甲基丙烯酰氧基)苯基偶氮]苯甲酸(MPABA)制备了光响应分子印迹聚合物(MIP)材料。掺入刚性3D交联聚合物基质后,MPABA的反式光致异构化特性得以保留。 MIP受体位点的底物亲和力是可光开关的。这可以归因于MIP受体内偶氮苯生色团的光异构化,从而导致其几何形状的改变和其结合功能的空间排列。咖啡因的MIP受体的有利结合常数在二甲基亚砜中为5.48 x 10(4)M-1。 MIP材料中咖啡因特异性受体位点的密度为0.95μmol(g MIP)(-1)。在365 um照射后,从MIP材料中释放出58.3%的受体结合咖啡因。随后在440 nm处进行辐照会导致96.4%的释放咖啡因被MIP材料反弹。所释放的咖啡因的这种接近定量的吸收是在偶氮苯发色团的光转换过程中受体位点构型和底物亲和力的可逆性的证据。尽管光调节的底物释放和摄取过程通常是可重复的,但是观察到底物释放和重新结合的程度逐渐降低。这可能是由于在重复光开关过程中MIP受体的缓慢变形引起的。这项工作的结果证明了刺激反应性MIP材料作为智能化学品和药物输送系统的潜力。

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