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具有抗菌能力和药物控释功能的胶原蛋白与阿拉伯胶半互穿网络水凝胶在伤口愈合中的潜在应用

Semi-IPN hydrogels of collagen and gum arabic with antibacterial capacity and controlled release of drugs for potential application in wound healing.

作者信息

Amaya-Chantaca Nadia J, Caldera-Villalobos Martin, Claudio-Rizo Jesús A, Flores-Guía Tirso E, Becerra-Rodríguez Juan J, Soriano-Corral Florentino, Herrera-Guerrero Adán

机构信息

Facultad de Ciencias Químicas, Universidad Autónoma de Coahuila, Ing. J. Cárdenas Valdez S/N, República, 25280, Saltillo, Coahuila, Mexico.

Universidad Politécnica de Pénjamo, Carretera Irapuato-La Piedad Km 44, 36921, Pénjamo, Guanajuato, Mexico.

出版信息

Prog Biomater. 2023 Mar;12(1):25-40. doi: 10.1007/s40204-022-00210-w. Epub 2022 Nov 8.

Abstract

The preparation of hydrogels based on biopolymers like collagen and gum arabic gives a chance to provide novel options that can be used in biomedical field. Through a polymeric semi-interpenetration technique, collagen-based polymeric matrices can be associated with gum arabic while controlling its physicochemical and biological properties. To create novel hydrogels with their potential use in the treatment of wounds, the semi-interpenetration process, altering the concentration (0-40% by wt) of gum arabic in a collagen matrix is explored. The ability of gum arabic to create intermolecular hydrogen bonds in the collagen matrix enables the development of semi-interpenetrating polymeric networks (semi-IPN)-based hydrogels with a faster gelation time and higher crosslinking. Amorphous granular surfaces with linked porosity are present in matrices with 30% (by wt) of gum arabic, enhancing the storage modulus and thermal degradation resistance. The hydrogels swell to very high extent in hydrolytic and proteolytic environments, good hemocompatibility, and suppression of growth of pathogens like E. coli, and all it is enhanced by gum arabic included them, in addition to enabling the controlled release of ketorolac. The chemical composition of theses semi-IPN matrices have no deleterious effects on monocytes or fibroblasts, promoting their proliferation, and lowering alpha tumor necrosis factor (α-TNF) secretion in human monocytes.

摘要

基于胶原蛋白和阿拉伯胶等生物聚合物制备水凝胶,为生物医学领域提供了新的选择。通过聚合物半互穿技术,基于胶原蛋白的聚合物基质可以与阿拉伯胶结合,同时控制其物理化学和生物学特性。为了制备具有潜在伤口治疗用途的新型水凝胶,研究了在胶原蛋白基质中改变阿拉伯胶浓度(0 - 40%重量比)的半互穿过程。阿拉伯胶在胶原蛋白基质中形成分子间氢键的能力,使得能够开发出基于半互穿聚合物网络(semi - IPN)的水凝胶,其具有更快的凝胶化时间和更高的交联度。含有30%(重量比)阿拉伯胶的基质呈现出具有连通孔隙的无定形颗粒表面,提高了储能模量和热降解抗性。这些水凝胶在水解和蛋白水解环境中具有很高的溶胀度,具有良好的血液相容性,能够抑制大肠杆菌等病原体的生长,而且阿拉伯胶的加入增强了所有这些特性,此外还能实现酮咯酸的控释。这些半IPN基质的化学成分对单核细胞或成纤维细胞没有有害影响,反而促进它们的增殖,并降低人单核细胞中α肿瘤坏死因子(α - TNF)的分泌。

相似文献

本文引用的文献

1
Collagen in Wound Healing.伤口愈合中的胶原蛋白。
Bioengineering (Basel). 2021 May 11;8(5):63. doi: 10.3390/bioengineering8050063.
5
Treatment Strategies for Infected Wounds.感染伤口的治疗策略。
Molecules. 2018 Sep 18;23(9):2392. doi: 10.3390/molecules23092392.
7
Semi-IPN- and IPN-Based Hydrogels.半互穿网络和互穿网络水凝胶。
Adv Exp Med Biol. 2018;1059:155-188. doi: 10.1007/978-3-319-76735-2_7.

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