改进在可控酶解条件下获得低分子量壳聚糖的技术

Z. Muradyan, A. I. Albulov, R. Rogov
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摘要

相关性。注释。本文介绍了改进壳聚糖酶解生产技术以获得其低分子衍生物的实验数据。实验研究是在以 K.I. Skryabin 命名的莫斯科国立兽医和生物技术学院(MVA)疾病诊断、治疗、产科和动物繁殖系以及全俄生物工业研究和技术研究所的条件下进行的。从帝王蟹壳中提取的酸溶性壳聚糖(MM 700 kDa,SDA 85%)、琥珀酸壳聚糖(MM 330 kDa,SZ 75.2%)、低分子食品壳聚糖(盐酸盐)(MM 50 kDa)被用作获得壳聚糖新改性的原料,即生物进步有限责任公司生产的凝胶壳聚糖(2%醋酸中的2%溶液)。实验结果选择了用酶水解法获得低分子壳聚糖的技术参数。在中试工业系列 II 中观察到壳聚糖动态粘度的最大降幅(29.3 倍),在中试工业系列 I 和 III 中观察到壳聚糖动态粘度的最大降幅(分别为 6.9 倍和 10.6 倍)。在中试系列 II 中,通过酶水解壳聚糖,可以将分子量从 700 kDa 降至 24 kDa,而在系列 I 和 III 中,则分别降至 102 kDa 和 66 kDa。在研究成果的基础上,开发了一种通过酶水解获得低分子量壳聚糖衍生物的技术方案,并对其进行了试验,提出了用于工业的技术条件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improving the technology for obtaining of low molecular weight chitosan under conditions of controlled enzymatic cleavage
Relevance. Annotation. Experimental data on improving the production technology of regulated enzymatic cleavage of chitosan to obtain its low-molecular derivatives are presented. Experimental studies were carried out in the conditions of the Department of Disease Diagnostics, Therapy, Obstetrics and Animal Reproduction of the Moscow State Academy of Veterinary Medicine and Biotechnology — MVA named after K.I. Skryabin and on the basis of the All-Russian Research and Technological Institute of the Biological Industry.Methods. Acid-soluble chitosan from king crab shell (MM 700 kDa, SDA 85%), chitosan succinate (MM 330 kDa, SZ 75.2%), low-molecular food chitosan (hydrochloride) (MM 50 kDa) were used as raw materials for obtaining new modifications of chitosan, gel chitosan (2% solution in 2% acetic acid) manufactured by Bioprogress LLC.Results. As a result of the experiment, the technological parameters of obtaining low-molecular chitosan by enzymatic hydrolysis were selected. The greatest decrease in the dynamic viscosity of chitosan was reliably observed in the pilot-industrial series II (by 29.3 times), and the pilot-industrial series I and III — by 6.9 and 10.6 times, respectively. As a result of enzymatic hydrolysis of chitosan in the pilot series II, it was possible to reduce the molecular weight from 700 to 24 kDa, and in series I and III — to 102 and 66 kDa. Based on the research results, a technological scheme for obtaining low-molecular-weight chitosan derivatives by enzymatic hydrolysis has been developed, tested and proposed for industrial use, technical conditions have been developed.
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