A comparative study of gelatin-based nanofiber and sponge wound dressings

明胶 生物相容性 伤口愈合 纳米纤维 材料科学 热重分析 生物医学工程 扫描电子显微镜 傅里叶变换红外光谱 差示扫描量热法 海绵 生物材料 生物高聚物 复合材料 化学工程 化学 纳米技术 聚合物 外科 医学 有机化学 冶金 植物 生物 工程类 热力学 物理
作者
Aysegul Uzuner-Demir,Zehra Betül Ahi,Oguzhan Polat,Fatih Arıcan,Aykut Sancaklı
出处
期刊:Journal of Bioactive and Compatible Polymers [SAGE Publishing]
卷期号:39 (3): 145-161 被引量:2
标识
DOI:10.1177/08839115241241297
摘要

Gelatin is a collagen-derived biopolymer with high biocompatibility, commonly used in the production of wound dressing materials. Gelatin-based wound dressings, obtained through different processing methods, come with their own advantages and disadvantages depending on their physical structure. In this study, the effects of gelatin wound dressing materials with two different morphologies on wound healing are investigated in detail. The study investigated that the preparation of gelatin-based wound dressing materials using two different methods, followed by their chemical characterization and examination of their effects on biocompatibility and wound healing. To comprehend the impact of nanofiber structure and porous sponge structure on the wound healing process, the chemical structure of the prepared wound dressings was analyzed using Fourier Transform Infrared Spectrophotometer (FTIR). The morphological structure was visualized through Scanning Electron Microscope (SEM), the thermal properties were determined using Thermogravimetric Analyzer (TGA) and Differential Scanning Calorimeter (DSC). Additionally, the in vivo wound healing effects of gelatin-based wound dressings with different structures were evaluated through macroscopic observation and histological analysis in a dorsal region wound-healing rat model, monitored for 21 days. It was observed that wound healing materials with desired nanofiber and porous sponge structures were successfully obtained based on the SEM analysis. The gelatin nanofiber dressing showed a randomly oriented, bead-free, and smooth morphology with an average fiber diameter of approximately 1250 ± 0.35 nm, while the crosslinked gelatin sponge dressing had pore sizes ranging from 20 to 160 μm, and interconnected pore structures. The chemical structure remained unaltered according to FTIR graphs and these results were further supported by DSC and TGA graphs. Results from in vitro biocompatibility studies indicated that the wound dressing materials were biologically compatible, non-toxic, and did not cause irritation or sensitivity to the skin. Regarding in vivo analysis, it was determined that gelatin dressing materials were functional in the wound healing process, without the use of any auxiliary materials.
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