Department of Tissue Engineering & Regenerative Medicine, Faculty of Advanced Technologies in Medicine, Iran University of Medical Sciences (IUMS), Tehran 1449614535, Iran.
Department of Tissue Engineering & Regenerative Medicine, Faculty of Advanced Technologies in Medicine, Iran University of Medical Sciences (IUMS), Tehran 1449614535, Iran.
Int J Biol Macromol. 2024 Nov;280(Pt 4):136144. doi: 10.1016/j.ijbiomac.2024.136144. Epub 2024 Sep 29.
Gelatin-based biomaterials are widely acknowledged as a promising choice for wound dressings, given their similarity to the extracellular matrix and biocompatibility. However, the challenge of cross-linking gelatin while preserving its biocompatibility and cost-effectiveness persists. This study aimed to enhance the properties of gelatin by incorporating the oxidized lignosulfonate (OLS) biopolymer as an inexpensive and biocompatible natural material. The polyphenolic structure of OLS acts as both a cross-linking agent and an antibacterial component. The OLS/gelatin films were prepared using a casting method with varying weight ratios (0.1, 0.2, 0.3, 0.4, and 0.5 w/w). FTIR analysis confirmed the formation of Schiff-base and hydrogen bonds between gelatin and OLS. The resulting films exhibited enhanced mechanical properties (Young's modulus ∼40 MPa), no cytotoxicity, and excellent cell adhesion and morphology. Antimicrobial tests showed significant activity against Escherichia coli and Staphylococcus aureus, with higher activity against S. aureus (17 mm inhibition zone and 99 % bactericidal rate). In vivo studies in a mouse model demonstrated that the gelatin/0.2OLS dressing significantly improved wound healing, including re-epithelialization, collagen formation, inflammation reduction, and blood vessel density, compared to untreated wounds. These findings suggest that the synthesized novel gelatin/OLS wound dressing has promising healing and antibacterial properties.
明胶基生物材料因其类似于细胞外基质和生物相容性而被广泛认为是一种有前途的伤口敷料选择。然而,交联明胶同时保持其生物相容性和成本效益仍然是一个挑战。本研究旨在通过掺入氧化木质素磺酸盐(OLS)生物聚合物作为一种廉价且生物相容的天然材料来增强明胶的性能。OLS 的多酚结构既可以作为交联剂,也可以作为抗菌成分。使用铸造方法制备了不同重量比(0.1、0.2、0.3、0.4 和 0.5 w/w)的 OLS/明胶薄膜。FTIR 分析证实了明胶和 OLS 之间形成了席夫碱和氢键。所得薄膜表现出增强的机械性能(杨氏模量约为 40 MPa)、无细胞毒性以及优异的细胞粘附和形态。抗菌试验表明,对大肠杆菌和金黄色葡萄球菌具有显著的活性,对金黄色葡萄球菌的活性更高(抑制区 17 mm 和 99%杀菌率)。在小鼠模型中的体内研究表明,与未处理的伤口相比,明胶/0.2OLS 敷料显著改善了伤口愈合,包括再上皮化、胶原蛋白形成、炎症减少和血管密度。这些发现表明,合成的新型明胶/OLS 伤口敷料具有有前途的愈合和抗菌性能。