Department of Nanostructured Metal-polymer Catalysist, Institute Catalysis and Inorganic Chemistry, Azerbaijan National Academy of Sciences, H. Javid ave. 113, AZ1143, Azerbaijan; Department of Prevention of Sand and Water Appearance, Oil-gas Research and Design Institute, The State Oil Company of the Azerbaijan Republic, H. Zardabi ave. 88, AZ1012 Baku, Azerbaijan.
Int J Biol Macromol. 2021 Jul 31;183:1676-1696. doi: 10.1016/j.ijbiomac.2021.05.059. Epub 2021 May 17.
The review article is dedicated to a comprehensive study of the chemical bond formed during the immobilization of the proteolytic enzyme pancreatic trypsin in chitosan-based polymer matrixes and its derivatives. The main focus of the study is to describe the chemical bond that causes immobilization between chitosan based carriers and trypsin. Because the nature of the chemical bond between the carrier and trypsin is a key factor in determining the area of application of the conjugate. It has been found out that after the chemical nature of functional groups, their degree of ionization, the structure of the chemical cross-linking, the medium pH and ionic strength of chitosan are modified, the mechanism of trypsin immobilization is affected. As a result, the attraction enzyme to the matrix occurs due to polar covalent and hydrogen bonds, as well as electrostatic, hydrophobic, Van der Waals forces. The collected research works on the immobilization of trypsin on chitosan-based carriers have been systematized in the paper and shown schematically in subsystems according to the type of chemical interaction. It has been shown that the immobilization of trypsin on chitosan based matrixes occur more often due to the covalent and hydrogen bonds between the protein and the carrier.
这篇综述文章致力于全面研究在壳聚糖基聚合物基质及其衍生物中固定蛋白水解酶胰蛋白酶时形成的化学键。研究的主要重点是描述导致壳聚糖载体与胰蛋白酶之间固定的化学键。因为载体和胰蛋白酶之间的化学键的性质是决定缀合物应用领域的关键因素。已经发现,在功能基团的化学性质、其离解度、化学交联的结构、壳聚糖的介质 pH 值和离子强度被修改后,胰蛋白酶固定化的机制受到影响。结果,由于极性共价和氢键以及静电、疏水、范德华力,酶被吸引到基质上。本文对壳聚糖载体上固定化胰蛋白酶的研究工作进行了系统整理,并根据化学相互作用的类型示意性地表示在子系统中。已经表明,由于蛋白质和载体之间的共价键和氢键,胰蛋白酶更经常地固定在壳聚糖基基质上。