A self-healable and bioadhesive acacia gum polysaccharide-based injectable hydrogel for wound healing acceleration.

Zainab Ahmadian, Mahsa Zibanejad Jelodar, Marzieh Rashidipour, Masoumeh Dadkhah, Vahed Adhami, Sajjad Sefareshi, Hossein Ali Ebrahimi, Motaleb Ghasemian, Mohsen Adeli
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Abstract

The present study aimed at developing an injectable hydrogel based on acacia gum (AG) for wound healing acceleration. The hydrogels were synthetized through metal-ligand coordination mediated by Fe3+ and characterized in terms of gelation time, gel content, initial water content, swelling capacity, water retention ratio, and porosity. Moreover, FTIR, XRD and TGA analyses were performed for the hydrogels and allantoin (Alla) loaded ones. Furthermore, bioadhessiveness, and self-healing as well as antibacterial, toxicity and wound healing potentials of the hydrogels were evaluated. The hydrogels displayed fast gelation time, high swelling, porosity, and bioadhessiveness, as well as antioxidant, self-healing, antibacterial, blood clotting, and injectability properties. FTIR, XRD and TGA analyses confirmed hydrogel synthesis and drug loading. The Alla-loaded hydrogels accelerated wound healing by decreasing the inflammation and increasing the cell proliferation as well as collagen deposition. Hemocompatibility, cell cytotoxicity, and in vivo toxicity experiments were indicative of a high biocompatibility level for the hydrogels. Given the advantages of fast gelation, injectability and beneficial biological properties, the use of Alla-loaded hydrogels could be considered a new remedy for efficient wound healing.

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一种可自我愈合和生物粘附的阿拉伯树胶多糖基注射水凝胶,用于加速伤口愈合。
本研究旨在开发一种基于阿拉伯胶(AG)的可注射水凝胶,用于加速伤口愈合。通过Fe3+介导的金属配体配位合成了水凝胶,并对其凝胶化时间、凝胶含量、初始含水量、溶胀能力、保水率和孔隙率进行了表征。此外,对水凝胶和尿囊素(Alla)负载的水凝胶进行了FTIR、XRD和TGA分析。此外,还评估了水凝胶的生物粘附性、自修复性以及抗菌、毒性和伤口愈合潜力。水凝胶表现出快速凝胶化时间、高溶胀性、多孔性和生物粘附性,以及抗氧化、自修复、抗菌、凝血和注射性能。FTIR、XRD和TGA分析证实了水凝胶的合成和药物负载。负载Alla的水凝胶通过减少炎症、增加细胞增殖和胶原沉积来加速伤口愈合。血液相容性、细胞毒性和体内毒性实验表明水凝胶具有高的生物相容性水平。考虑到快速凝胶化、可注射性和有益的生物特性的优点,负载Alla的水凝胶的使用可以被认为是有效伤口愈合的一种新疗法。
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