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多刺激响应性共聚胶的平衡溶胀。

Equilibrium swelling of multi-stimuli-responsive copolymer gels.

机构信息

Department of Materials and Production, Aalborg University, Fibigerstraede 16, Aalborg 9220, Denmark.

Department of Materials and Production, Aalborg University, Fibigerstraede 16, Aalborg 9220, Denmark.

出版信息

J Mech Behav Biomed Mater. 2021 Sep;121:104623. doi: 10.1016/j.jmbbm.2021.104623. Epub 2021 Jun 2.

Abstract

Copolymer gels prepared by polymerization of thermo-responsive and anionic monomers demonstrate strong sensitivity to several triggers such as temperature, pH and ionic strength of aqueous solutions. For biomedical applications of these materials (as on-off switches in controlled drug delivery and release), fine tuning of their volume phase transition temperature (VPTT) and a sharp decay in degree of swelling upon transition from the swollen to the collapsed state are needed. These requirements are fulfilled under swelling of copolymer gels and microgels in water under acidic conditions, but are violated when tests are conducted under alkaline conditions or in aqueous solutions of salts with physiological salinity. A model is developed for equilibrium swelling of multi-stimuli-responsive copolymer gels in aqueous solutions with arbitrary pH and molar fractions of a monovalent salt. Unlike conventional approaches, the model accounts for secondary interactions between chains (hydrogen bonding) to describe the kinetics of aggregation of hydrophobic segments above VPTT. Material constants are determined by fitting experimental swelling diagrams on poly(N-isopropylacrylamide-co-sodium acrylate) gels with various molar fractions of ionic monomers. The effects of temperature, pH and molar fraction of salt on the equilibrium degree of swelling below and above VPTT are studied numerically.

摘要

由温敏性和阴离子单体聚合而成的共聚水凝胶对多种触发因素(如温度、pH 值和水溶液的离子强度)表现出很强的敏感性。对于这些材料的生物医学应用(如在控制药物释放的开/关开关中),需要精细调整其体积相转变温度(VPTT),并且在从溶胀状态转变为塌陷状态时,溶胀度急剧下降。在酸性条件下,共聚水凝胶和微凝胶的溶胀可以满足这些要求,但在碱性条件下或在具有生理盐度的盐的水溶液中进行测试时,这些要求就会被违反。本文建立了一个模型,用于描述在任意 pH 值和单价盐摩尔分数的水溶液中多刺激响应共聚水凝胶的平衡溶胀。与传统方法不同,该模型考虑了链之间的二次相互作用(氢键),以描述 VPTT 以上疏水段的聚集动力学。通过拟合具有不同离子单体摩尔分数的聚(N-异丙基丙烯酰胺-共-丙烯酸钠)凝胶的实验溶胀图,确定了材料常数。数值研究了温度、pH 值和盐摩尔分数对 VPTT 上下平衡溶胀度的影响。

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