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研究不同浓度的聚多巴胺作为一种安全且具有生物活性的交联剂对氧化藻酸盐和明胶伤口敷料的双重交联的影响。

Study the effect of different concentrations of polydopamine as a secure and bioactive crosslinker on dual crosslinking of oxidized alginate and gelatin wound dressings.

机构信息

Department of Biomedical Engineering, Amirkabir University of Technology, Tehran Polytechnic, Iran.

New Technologies Research Center (NTRC), Amirkabir University of Technology, Tehran Pochronichnic, Iran.

出版信息

Int J Biol Macromol. 2024 Oct;277(Pt 3):134199. doi: 10.1016/j.ijbiomac.2024.134199. Epub 2024 Jul 26.

Abstract

Alginate hydrogels are commonly used in wound care due to their ability to maintain a moist environment, absorb fluids, and aid wound healing. However, their stability and mechanical properties can sometimes limit their effectiveness. This study explores a new approach by creating a dual network system of oxidized alginate and gelatin hydrogel crosslinked with polydopamine in a single step, with the goal of improving the mechanical properties of these hydrogels. The unique aspect of this research is the comprehensive examination of different polydopamine concentrations in dual crosslinking systems. First, alginate was modified with sodium periodate to create additional active groups on its backbone, and various polydopamine concentrations were then tested to assess their impact on the dual crosslinking network and hydrogel properties. The study involved a range of tests, including FTIR, H-NMR, SEM, gelation time, rheology, adhesion, antioxidant activity, swelling ratio, weight loss, drug release, and cell viability. The addition of polydopamine was found to enhance the crosslinking density (0.859 × 109 mol.cm). Additionally, the results indicated improvements in properties such as reduced weight loss, enhanced antioxidant and adhesive qualities, and better mechanical properties (2240 kPa). However, the optimal concentration of polydopamine must be determined to achieve the best properties for a wound dressing. Excessive polydopamine can increase the space between polymer chains, leading to a reduction in crosslinking density and storage modulus. Nevertheless, it can also increase the swelling ratio, degradation rate, pore size, porosity, antioxidant activity, and dopamine release. Therefore, identifying the optimal concentration for a functional hydrogel is crucial. Notably, the hydrogel containing 0.5 mg.mL polydopamine exhibited outstanding cell viability (108 % on the third day), swelling capacity (480 %), storage modulus (2240 kPa), gelation time (3 min), antioxidant activity (42.27 %), and skin adherence (11 kPa), making it an optimal choice for advanced wound management. According to the findings, it is emphasized that the application of this particular hydrogel expedites wound healing, as indicated by wound closure and histological studies. ABBREVIATIONS.

摘要

海藻酸盐水凝胶因其能够维持湿润环境、吸收液体和促进伤口愈合的能力而常用于伤口护理。然而,其稳定性和机械性能有时会限制其效果。本研究通过创建一种新的方法来探索,即用多巴胺一步交联氧化海藻酸盐和明胶水凝胶,形成双网络系统,目的是改善这些水凝胶的机械性能。这项研究的独特之处在于全面研究了不同浓度的聚多巴胺在双交联系统中的作用。首先,用高碘酸钠修饰海藻酸盐,在其主链上形成额外的活性基团,然后测试不同浓度的聚多巴胺对双交联网络和水凝胶性能的影响。该研究涉及一系列测试,包括傅里叶变换红外光谱(FTIR)、核磁共振氢谱(H-NMR)、扫描电子显微镜(SEM)、凝胶时间、流变学、附着力、抗氧化活性、溶胀比、失重、药物释放和细胞活力。结果表明,添加聚多巴胺可以提高交联密度(0.859×109mol.cm)。此外,研究结果表明,在减轻失重、增强抗氧化和粘附性能以及改善机械性能(2240kPa)等方面都有改善。然而,为了实现伤口敷料的最佳性能,必须确定聚多巴胺的最佳浓度。过多的聚多巴胺会增加聚合物链之间的空间,导致交联密度和储能模量降低。然而,它也可以增加溶胀比、降解率、孔径、孔隙率、抗氧化活性和多巴胺释放。因此,确定功能水凝胶的最佳浓度至关重要。值得注意的是,含有 0.5mg.mL 聚多巴胺的水凝胶表现出出色的细胞活力(第三天为 108%)、溶胀能力(480%)、储能模量(2240kPa)、凝胶时间(3 分钟)、抗氧化活性(42.27%)和皮肤附着力(11kPa),是高级伤口管理的理想选择。根据研究结果,强调了这种特定水凝胶在伤口愈合方面的应用,通过伤口闭合和组织学研究可以证明。缩写词。

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