Department of Engineering and Technology of Polymers, Faculty of Chemistry, Wroclaw University of Science and Technology, Wybrzeże Wyspiańskiego 42, Wroclaw 50-370, Poland; Łukasiewicz Research Network - PORT Polish Center for Technology Development, Stabłowicka 147, Wroclaw 54-066, Poland.
Platform for Unique Models Application (PUMA), Department of Pharmaceutical Microbiology and Parasitology, Wroclaw Medical University, Borowska 211, 50-534 Wrocław, Poland.
Carbohydr Polym. 2024 Nov 1;343:122463. doi: 10.1016/j.carbpol.2024.122463. Epub 2024 Jul 4.
This article presents a method for producing hydrogel dressings using high methylated pectin from apples or citrus, doped with the antiseptic agent, octenidine dihydrochloride. Octenidine was incorporated in-situ during the polymer crosslinking. The pectins were characterized by their varying molecular weight characteristics, monosaccharide composition, and degree of esterification (DE). The study assessed the feasibility of producing biologically active hydrogels with pectin and delved into how the polymer's characteristics affect the properties of the resulting dressings. The structure evaluation of hydrogel materials showed interactions between individual components of the system and their dependence on the type of used pectin. Both the antimicrobial properties and cytotoxicity of the dressings were evaluated. The results suggest that the primary determinants of the functional attributes of the hydrogels are the molecular weight characteristics and the DE of the pectin. As these values rise, there is an increase in polymer-polymer interactions, overshadowing polymer-additive interactions. This intensification strengthens the mechanical and thermal stability of the hydrogels and enhances the release of active components into the surrounding environment. Biological evaluations demonstrated the ability of octenidine to be released from the dressings and effectively inhibit the growth of microbial pathogens.
本文提出了一种使用苹果或柑橘中的高甲基化果胶制备水凝胶敷料的方法,该方法掺杂了防腐剂——双氯己定。双氯己定在聚合物交联过程中就地掺入。果胶的特征在于其分子量特性、单糖组成和酯化度(DE)的不同。本研究评估了使用果胶生产具有生物活性的水凝胶的可行性,并探讨了聚合物特性如何影响所得敷料的性能。水凝胶材料的结构评估表明,系统中各个成分之间存在相互作用,并且依赖于所使用的果胶类型。敷料的抗菌性能和细胞毒性都得到了评估。结果表明,水凝胶功能属性的主要决定因素是果胶的分子量特征和 DE。随着这些值的增加,聚合物-聚合物相互作用增强,超过了聚合物-添加剂相互作用。这种强化作用增强了水凝胶的机械和热稳定性,并促进了活性成分向周围环境的释放。生物学评估表明,双氯己定能够从敷料中释放出来,并有效地抑制微生物病原体的生长。