a School of Chemical Sciences , Mahatma Gandhi University , Kottayam , India.
b Department of Chemistry , St. Berchmans College , Changanacherry , India.
Artif Cells Nanomed Biotechnol. 2018 Dec;46(8):1830-1837. doi: 10.1080/21691401.2017.1394871. Epub 2017 Nov 13.
The morphology of the polymer network - porous/less porous - plays predominant role in the amidase activities of the polymer catalysts in the hydrolytic reactions of amino acid p-nitroanilides. Polymers with the imprints of stable phosphonate analogue of the intermediate of hydrolytic reactions were synthesized as enzyme mimics. Molecular imprinting was carried out in thermodynamically stable porogen dimethyl sulphoxide and unstable porogen chloroform, to investigate the morphological effects of polymers on catalytic amidolysis. It was found that the medium of polymerization has vital influence in the amidase activities of the enzyme mimics. The morphological studies of the polymer catalysts were carried out by scanning electron microscopy and Bruner-Emmett-Teller analysis. The morphology of the polymer catalysts and their amidase activities are found to be dependent on the composition of reaction medium. The polymer catalyst prepared in dimethyl sulphoxide is observed to be efficient in 1:9 acetonitrile (ACN)-Tris HCl buffer and that prepared in chloroform is noticed to be stereo specifically and shape-selectively effective in 9:1 ACN-Tris HCl buffer. The solvent memory effect in catalytic amidolysis was investigated using the polymer prepared in acetonitrile.
聚合物网络的形态 - 多孔/少孔 - 在聚合物催化剂的酰胺酶活性中起着主要作用,这些聚合物催化剂在氨基酸对硝基苯胺的水解反应中起作用。合成了具有水解反应中间产物稳定膦酸酯类似物印迹的聚合物作为酶模拟物。在热力学稳定的致孔剂二甲基亚砜和不稳定的致孔剂氯仿中进行分子印迹,以研究聚合物对催化氨解的形态影响。结果发现,聚合介质对酶模拟物的酰胺酶活性有重要影响。通过扫描电子显微镜和 Bruner-Emmett-Teller 分析对聚合物催化剂的形态进行了研究。发现聚合物催化剂的形态及其酰胺酶活性取决于反应介质的组成。在二甲基亚砜中制备的聚合物催化剂在 1:9 的乙腈(ACN)-Tris HCl 缓冲液中表现出高效,而在氯仿中制备的聚合物催化剂在 9:1 的 ACN-Tris HCl 缓冲液中表现出立体选择性和形状选择性有效。使用在乙腈中制备的聚合物研究了催化氨解中的溶剂记忆效应。