Peifen Ma, Mengyun Li, Jinglong Hu, Danqian Li, Yan Tao, Liwei Xu, Han Zhao, Jianlong Da, Lingyan Li, Guanghui Zhao, Zhiping Wang
Department of Nursing, Lanzhou University Second Hospital, Lanzhou, 730030, PR China; School of Nursing, Lanzhou University, Lanzhou, 730030, PR China.
The Second Clinical Medical College of Lanzhou University, Lanzhou University Second Hospital, Lanzhou, 730030, PR China.
Biochem Biophys Res Commun. 2023 Jan 15;640:117-124. doi: 10.1016/j.bbrc.2022.11.086. Epub 2022 Dec 5.
Repairing skin wounds has always been challenging in clinical practice. The new skin tissue engineering scaffold provides innovative ways to address these challenges with a good chance of success because of its stable mechanical properties, biodegradability, and antibacterial properties. This paper presents the fabrication and evaluation of a three-dimensional composite scaffold made with sulfated silk fibroin, chitosan, and hydroxyapatite (SSF/CS/HAP). An electron microscope shows that the scaffold has an aperture of 15-20 μm, while an absorption performance test shows that its expansion index reaches 779%. The co-culture of L929 cells and the CCK-8 experiments demonstrated good cell compatibility and low scaffold cytotoxicity, respectively. Meanwhile, in vivo experiments demonstrate that rats with SSF/CS/HAP scaffold-treated neck wounds heal faster. In the wound skin tissue of the SSF/CS/HAP scaffold group, immunohistochemistry indicates a more rapid and mature development of hair follicles. This study successfully developed a novel skin tissue engineering scaffold material with high moisture retention, high tissue compatibility, and low cytotoxicity, demonstrating its ability to improve wound repair with promising potential for tissue engineering applications.
在临床实践中,修复皮肤伤口一直具有挑战性。新型皮肤组织工程支架因其稳定的机械性能、生物可降解性和抗菌性能,为应对这些挑战提供了创新方法,且成功几率较大。本文介绍了一种由硫酸化丝素蛋白、壳聚糖和羟基磷灰石(SSF/CS/HAP)制成的三维复合支架的制备与评估。电子显微镜显示该支架的孔径为15 - 20μm,而吸收性能测试表明其膨胀指数达到779%。L929细胞的共培养和CCK - 8实验分别证明了良好的细胞相容性和较低的支架细胞毒性。同时,体内实验表明,用SSF/CS/HAP支架处理颈部伤口的大鼠愈合更快。在SSF/CS/HAP支架组的伤口皮肤组织中,免疫组织化学表明毛囊发育更快且更成熟。本研究成功开发了一种具有高保湿性、高组织相容性和低细胞毒性的新型皮肤组织工程支架材料,证明了其改善伤口修复的能力,在组织工程应用方面具有广阔前景。