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壳聚糖在有机酸溶液中的降解动力学。

The Kinetics of Chitosan Degradation in Organic Acid Solutions.

机构信息

Institute of Textile Materials and Polymer Composites, Lodz University of Technology, Zeromskiego 116, 90-924 Łódź, Poland.

Łukasiewicz Research Network-Institute Biopolymers and Chemical Fibres 19/27 M, Skłodowskiej-Curie Street, 90-570 Łódź, Poland.

出版信息

Mar Drugs. 2021 Apr 22;19(5):236. doi: 10.3390/md19050236.

Abstract

This paper presents a comparative study on chitosan degradation in organic acid solutions according to their different dissociation characteristics. More precisely, the aim of the study was to determine the kinetics of the degradation process depending on the different acid dissociation constants (pKa values). The scientists involved in chitosan to date have focused mainly on acetic acid solutions. Solutions of lactic, acetic, malic, and formic acids in concentrations of 3% wt. were used in this research. The progress of degradation was determined based on the intrinsic viscosity measurement, GPC/SEC chromatographic analysis, and their correlation. Changes in the viscosity parameters were performed at a temperature of 20 °C ± 1 °C and a timeframe of up to 168 h (7 days). The chemical structure and DDA of the initial chitosan were analyzed using 1H-NMR spectroscopy analysis. The results of this study can be considered of high importance for the purpose of electrospinning, production of micro- and nano-capsules for drug delivery, and other types of processing. Understanding the influence of the dissociation constant of the solvent on the kinetics of chitosan degradation will allow the selection of an appropriate medium, ensuring an effective and stable spinning process, in which the occurrence of polymer degradation is unfavorable.

摘要

本文根据不同的离解特性对壳聚糖在有机酸溶液中的降解进行了比较研究。更确切地说,本研究的目的是根据不同的酸离解常数(pKa 值)确定降解过程的动力学。迄今为止,研究壳聚糖的科学家主要集中在醋酸溶液上。本研究使用了浓度为 3%wt 的乳酸、醋酸、苹果酸和甲酸溶液。降解的进展是基于特性粘度测量、GPC/SEC 色谱分析及其相关性来确定的。在 20°C±1°C 的温度和长达 168 小时(7 天)的时间范围内进行粘度参数的变化。使用 1H-NMR 光谱分析对初始壳聚糖的化学结构和 DDA 进行了分析。本研究的结果对于静电纺丝、药物输送用微胶囊和纳米胶囊的生产以及其他类型的加工具有重要意义。了解溶剂离解常数对壳聚糖降解动力学的影响将有助于选择合适的介质,确保有效的和稳定的纺丝过程,其中聚合物降解的发生是不利的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/10e9/8145880/4538f4de63cb/marinedrugs-19-00236-sch001.jpg

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