Shan Ying-Hui, Peng Li-Hua, Liu Xin, Chen Xi, Xiong Jie, Gao Jian-Qing
Institute of Pharmaceutics, College of Pharmaceutical Sciences, Zhejiang University, Hangzhou 310058, PR China.
College of Materials and Textiles, Zhejiang Sci-Tech University, Hangzhou 310018, PR China.
Int J Pharm. 2015 Feb 20;479(2):291-301. doi: 10.1016/j.ijpharm.2014.12.067. Epub 2014 Dec 30.
Functional wound dressing has provided new challenges for researchers who focus on burn to improve skin graft quality, reduce scarring, and develop a pluristratified dermal or epidermal construct of a burn wound. This study aimed to investigate the effect of a silk fibroin/gelatin (SF/GT) electrospun nanofibrous dressing loaded with astragaloside IV (AS) on deep partial-thickness burn wound. AS-loaded SF/GT-blended nanofibrous dressing was prepared by electrospinning nanotechnology. The optimal ratio (25:75) of silk fibroin to gelatin was further optimized by evaluating ATR-FTIR characteristics, mechanical properties, porosity, swelling rate, degradation, and release profile of the AS-loaded SF/GT nanofibrous dressing. In contrast to the blank control, the AS-loaded SF/GT nanofibrous dressing promoted cell adhesion and proliferation with good biocompatibility in vitro (p<0.01). This dressing also accelerated wound healing and inhibited scar formation in vivo by stimulating wound closure (p<0.05), increasing angiogenesis, regulating newly formed types of collagen, and improving collagen organization. These results showed that SF/GT nanofibrous dressing is a promising topical drug delivery system. Furthermore, AS-functionalized SF/GT nanofibrous dressing is an excellent topical therapeutic that could be applied to promote healing and elicit anti-scar effects on partial-thickness burn wound.
功能性伤口敷料给专注于烧伤研究的人员带来了新的挑战,这些研究旨在提高皮肤移植质量、减少疤痕形成,并开发烧伤创面的复层真皮或表皮结构。本研究旨在探讨负载黄芪甲苷(AS)的丝素蛋白/明胶(SF/GT)电纺纳米纤维敷料对深Ⅱ度烧伤创面的影响。通过静电纺丝纳米技术制备了负载AS的SF/GT混合纳米纤维敷料。通过评估负载AS的SF/GT纳米纤维敷料的ATR-FTIR特征、力学性能、孔隙率、溶胀率、降解和释放曲线,进一步优化了丝素蛋白与明胶的最佳比例(25:75)。与空白对照组相比,负载AS的SF/GT纳米纤维敷料在体外具有良好的生物相容性,能促进细胞黏附和增殖(p<0.01)。该敷料在体内还通过刺激伤口闭合(p<0.05)、增加血管生成、调节新形成的胶原蛋白类型和改善胶原蛋白排列,加速了伤口愈合并抑制了疤痕形成。这些结果表明,SF/GT纳米纤维敷料是一种有前景的局部给药系统。此外,AS功能化的SF/GT纳米纤维敷料是一种优秀的局部治疗剂,可用于促进深Ⅱ度烧伤创面的愈合并产生抗疤痕效果。