Zhou Tian, Sui Baiyan, Mo Xiumei, Sun Jiao
Shanghai Biomaterials Research and Testing Center, Shanghai Key Laboratory of Stomatology, Ninth People's Hospital, Shanghai Jiao Tong University School of Medicine.
College of Chemistry, Chemical Engineering and Biotechnology, Donghua University, Shanghai, People's Republic of China.
Int J Nanomedicine. 2017 May 2;12:3495-3507. doi: 10.2147/IJN.S132459. eCollection 2017.
The development of skin wound dressings with excellent properties has always been an important challenge in the field of biomedicine. In this study, biomimetic electrospun fish collagen/bioactive glass (Col/BG) nanofibers were prepared. Their structure, tensile strength, antibacterial activity and biological effects on human keratinocytes, human dermal fibroblasts and human vascular endothelial cells were investigated. Furthermore, the Sprague Dawley rat skin defect model was used to validate their effect on wound healing. The results showed that compared with pure fish collagen nanofibers, the tensile strength of the Col/BG nanofibers increased to 21.87±0.21 Mpa, with a certain degree of antibacterial activity against . It was also found that the Col/BG nanofibers promoted the adhesion, proliferation and migration of human keratinocytes. Col/BG nanofibers induced the secretion of type one collagen and vascular endothelial growth factor by human dermal fibroblasts, which further stimulated the proliferation of human vascular endothelial cells. Animal experimentation indicated that the Col/BG nanofibers could accelerate rat skin wound healing. This study developed a type of multifunctional and biomimetic fish Col/BG nanofibers, which had the ability to induce skin regeneration with adequate tensile strength and antibacterial activity. The Col/BG nanofibers are also easily available and inexpensive, providing the possibility for using as a functional skin wound dressing.
开发具有优异性能的皮肤伤口敷料一直是生物医学领域的一项重要挑战。在本研究中,制备了仿生电纺鱼胶原蛋白/生物活性玻璃(Col/BG)纳米纤维。研究了它们的结构、拉伸强度、抗菌活性以及对人角质形成细胞、人真皮成纤维细胞和人血管内皮细胞的生物学效应。此外,使用Sprague Dawley大鼠皮肤缺损模型来验证它们对伤口愈合的作用。结果表明,与纯鱼胶原蛋白纳米纤维相比,Col/BG纳米纤维的拉伸强度提高到21.87±0.21 Mpa,对……具有一定程度的抗菌活性。还发现Col/BG纳米纤维促进了人角质形成细胞的黏附、增殖和迁移。Col/BG纳米纤维诱导人真皮成纤维细胞分泌I型胶原蛋白和血管内皮生长因子,进而刺激人血管内皮细胞的增殖。动物实验表明,Col/BG纳米纤维可以加速大鼠皮肤伤口愈合。本研究开发了一种多功能仿生鱼Col/BG纳米纤维,其具有诱导皮肤再生的能力,同时具备足够的拉伸强度和抗菌活性。Col/BG纳米纤维还易于获得且价格低廉,为用作功能性皮肤伤口敷料提供了可能性。