Physicochemical characteristics of chitosan molecules: Modeling and experiments.

Advances in colloid and interface science Pub Date : 2025-03-01 Epub Date: 2024-12-18 DOI:10.1016/j.cis.2024.103383
Aneta Michna, Dawid Lupa, Wojciech Płaziński, Piotr Batys, Zbigniew Adamczyk
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Abstract

Chitosan, a biocompatible polysaccharide, finds a wide range of applications, inter alia as an antimicrobial agent, stabilizer of food products, cosmetics, and in the targeted delivery of drugs and stem cells. This work represents a comprehensive review of the properties of chitosan molecule and its aqueous solutions uniquely combining theoretical modeling and experimental results. The emphasis is on physicochemical aspects which were sparsely considered in previous reviews. Accordingly, in the first part, the explicit solvent molecular dynamics (MD) modeling results characterizing the conformations of chitosan molecule, the contour length, the chain diameter and the density are discussed. These MD data are used to calculate several parameters for larger chitosan molecules using a hybrid approach based on continuous hydrodynamics. The dependencies of hydrodynamic diameter, frictional ratio, radius of gyration, and intrinsic viscosity on the molar mass of molecules are presented and discussed. These theoretical predictions, comprising useful analytical solutions, are used to interpret and rationalize the extensive experimental data acquired by advanced experimental techniques. In the final part, the molecule charge, acid-base, and electrokinetic properties, comprising the electrophoretic mobility and the zeta potential, are reviewed. Future research directions are defined and discussed.

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壳聚糖分子的物理化学特性:建模与实验。
壳聚糖是一种具有生物相容性的多糖,有着广泛的应用,尤其是作为抗菌剂、食品、化妆品的稳定剂,以及药物和干细胞的靶向递送。本文结合理论建模和实验结果,对壳聚糖分子及其水溶液的性质进行了全面的综述。重点是物理化学方面,这在以前的评论中很少考虑。因此,第一部分讨论了表征壳聚糖分子构象、轮廓长度、链径和密度的显式溶剂分子动力学(MD)建模结果。利用基于连续流体力学的混合方法,将这些MD数据用于计算较大壳聚糖分子的几个参数。给出并讨论了流体动力直径、摩擦比、旋转半径和特性粘度与分子摩尔质量的关系。这些理论预测,包括有用的分析解决方案,用于解释和合理化通过先进的实验技术获得的大量实验数据。在最后一部分,回顾了分子的电荷、酸碱和电动力学性质,包括电泳迁移率和zeta电位。对未来的研究方向进行了界定和讨论。
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