School of Biological and Chemical Sciences, Queen Mary University of London, Mile end road, London E1 4NS, UK.
J Mol Recognit. 2012 Jun;25(6):352-60. doi: 10.1002/jmr.2180.
The interactions between the template and the functional monomer are a key to the formation of cavities in the imprinted nanogels with high molecular recognition properties. Nanogels with enzyme-like activity for the Kemp elimination have been synthesized using 4-vinylpyridine as the functional monomer and indole as the template. The weak hydrogen bond interaction in the complex is shown to be able to induce very distinctive features in the cavities of the imprinted nanogels. The percentage of initiator used in the polymerisation, ranging from 1% to 3%, although it does not have a substantial effect on the catalytic rate, reduces considerably the imprinting efficiency. The alteration of the template/monomer ratio is also investigated, and the data show that there is considerable loss of imprinting efficiency. In terms of substrate selectivity, a number of experiments have been performed using 5-Cl-benzisoxazole as substrate analogue, as well as 5-nitro-indole as template analogue for the preparation of a different set of nanogels. All the kinetic data demonstrate that the chemical structure of the template is key to the molecular recognition properties of the imprinted nanogels that are closely tailored and able to differentiate among small structural changes.
模板与功能单体之间的相互作用是形成具有高分子识别特性的印迹纳米凝胶空腔的关键。使用 4-乙烯基吡啶作为功能单体和吲哚作为模板,合成了具有 Kemp 消除酶样活性的纳米凝胶。复合物中的弱氢键相互作用被证明能够在印迹纳米凝胶的空腔中诱导非常独特的特征。聚合中使用的引发剂的百分比从 1%到 3%,尽管它对催化速率没有实质性的影响,但会大大降低印迹效率。还研究了模板/单体比的改变,数据表明印迹效率有相当大的损失。在底物选择性方面,使用 5-Cl-苯并恶唑作为底物类似物以及 5-硝基吲哚作为模板类似物进行了多项实验,以制备不同的纳米凝胶。所有动力学数据表明,模板的化学结构是印迹纳米凝胶分子识别特性的关键,这些纳米凝胶是经过精心设计的,能够区分微小的结构变化。