Ping Li, Ding Tan, Aihua Su, Xingliang Xiong, Shasha Gao, Haiyang Zhang, Jiaqi Yang, Jie Jian, Jun Zheng, Qifeng Jiang
{"title":"用于促进伤口愈合的没食子酸功能化丝纤维素/明胶复合伤口敷料。","authors":"Ping Li, Ding Tan, Aihua Su, Xingliang Xiong, Shasha Gao, Haiyang Zhang, Jiaqi Yang, Jie Jian, Jun Zheng, Qifeng Jiang","doi":"10.1088/1748-605X/ad8c09","DOIUrl":null,"url":null,"abstract":"<p><p>As the incidence of chronic wounds increases, the requirements for wound dressings are rising. The specific aim of this study is to propose a novel gallic acid (GA) functionalized silk fibroin (SF) and gelatin (Gel) composite wound dressing in which GA is used as an antibacterial and wound healing substance. Via electrospinning, SF, Gel, and GA mixed solutions could be conveniently fabricated into a composite nanofiber mat (SF-Gel-GA), consisting of uniform fibers with an average diameter around 134.57 ± 84 nm. The internal mesh structure of SF-Gel-GA provides sufficient drug loading capacity, proper moisture permeability, and proper degradation rate. SF-Gel-GA presents excellent biocompatibility. NIH-3T3 fibroblast cells could adhere and spread stably on the SF-Gel-GA surface with slightly promoted proliferation. In the presence of SF-Gel-GA, the growth of both Gram-positive and Gram-negative bacteria, including<i>Staphylococcus aureus</i>and<i>Pseudomonas aeruginosa</i>, is significantly inhibited in both plate and suspension cultures. A cutaneous excisional mouse wound model proves the efficient ability of SF-Gel-GA to promote wound healing. Compared with pure SF dressing and commercial Tegaderm Hydrocolloid<sup>3M</sup>dressing, the wound closure rate with SF-Gel-GA treatment is significantly improved. The histological assessments further demonstrate SF-Gel-GA could facilitate collagen deposition, neovascularization, and epithelialization at wound sites to promote wound healing. In conclusion, a novel SF-Gel-GA composite wound dressing with efficient wound healing activities have been developed for chronic wound treatment with broad healing potential.</p>","PeriodicalId":72389,"journal":{"name":"Biomedical materials (Bristol, England)","volume":" ","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2024-11-14","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Gallic acid functionalized silk fibroin/gelatin composite wound dressing for enhanced wound healing.\",\"authors\":\"Ping Li, Ding Tan, Aihua Su, Xingliang Xiong, Shasha Gao, Haiyang Zhang, Jiaqi Yang, Jie Jian, Jun Zheng, Qifeng Jiang\",\"doi\":\"10.1088/1748-605X/ad8c09\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>As the incidence of chronic wounds increases, the requirements for wound dressings are rising. 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A cutaneous excisional mouse wound model proves the efficient ability of SF-Gel-GA to promote wound healing. Compared with pure SF dressing and commercial Tegaderm Hydrocolloid<sup>3M</sup>dressing, the wound closure rate with SF-Gel-GA treatment is significantly improved. The histological assessments further demonstrate SF-Gel-GA could facilitate collagen deposition, neovascularization, and epithelialization at wound sites to promote wound healing. 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引用次数: 0
摘要
ABSTRACT
随着慢性伤口发病率的增加,对伤口敷料的要求也越来越高。本研究的具体目的是提出一种新型的没食子酸(GA)功能化蚕丝纤维素(SF)和明胶(Gel)复合伤口敷料,其中 GA 可用作抗菌和伤口愈合物质。通过电纺丝,SF、Gel 和 GA 混合溶液可方便地制成复合纳米纤维毡(SF-Gel-GA),由平均直径约为 134.57 ± 84 nm 的均匀纤维组成。SF-Gel-GA 的内部网状结构具有足够的载药量、适当的透湿性和适当的降解率。SF-Gel-GA 具有良好的生物相容性。NIH-3T3 成纤维细胞能在 SF-Gel-GA 表面稳定地粘附和扩散,并略有增殖。在 SF-Gel-GA 的存在下,金黄色葡萄球菌和铜绿假单胞菌等革兰氏阳性和阴性细菌在平板和悬浮培养物中的生长均受到明显抑制。皮肤切除小鼠伤口模型证明了 SF-Gel-GA 促进伤口愈合的高效能力。与纯 SF 敷料和商用 Tegaderm Hydrocolloid3M 敷料相比,SF-凝胶-GA 治疗的伤口闭合率明显提高。组织学评估结果进一步证明,SF-凝胶-GA 能促进伤口部位的胶原沉积、新生血管和上皮化,从而促进伤口愈合。总之,一种新型 SF-Gel-GA 复合伤口敷料具有高效的伤口愈合活性,可用于慢性伤口治疗,具有广泛的愈合潜力。
As the incidence of chronic wounds increases, the requirements for wound dressings are rising. The specific aim of this study is to propose a novel gallic acid (GA) functionalized silk fibroin (SF) and gelatin (Gel) composite wound dressing in which GA is used as an antibacterial and wound healing substance. Via electrospinning, SF, Gel, and GA mixed solutions could be conveniently fabricated into a composite nanofiber mat (SF-Gel-GA), consisting of uniform fibers with an average diameter around 134.57 ± 84 nm. The internal mesh structure of SF-Gel-GA provides sufficient drug loading capacity, proper moisture permeability, and proper degradation rate. SF-Gel-GA presents excellent biocompatibility. NIH-3T3 fibroblast cells could adhere and spread stably on the SF-Gel-GA surface with slightly promoted proliferation. In the presence of SF-Gel-GA, the growth of both Gram-positive and Gram-negative bacteria, includingStaphylococcus aureusandPseudomonas aeruginosa, is significantly inhibited in both plate and suspension cultures. A cutaneous excisional mouse wound model proves the efficient ability of SF-Gel-GA to promote wound healing. Compared with pure SF dressing and commercial Tegaderm Hydrocolloid3Mdressing, the wound closure rate with SF-Gel-GA treatment is significantly improved. The histological assessments further demonstrate SF-Gel-GA could facilitate collagen deposition, neovascularization, and epithelialization at wound sites to promote wound healing. In conclusion, a novel SF-Gel-GA composite wound dressing with efficient wound healing activities have been developed for chronic wound treatment with broad healing potential.