Shanghai Key Laboratory for Bone and Joint Diseases, Shanghai Institute of Orthopaedics and Traumatology, Shanghai Ruijin Hospital, Shanghai Jiaotong University, Shanghai, 200025, China.
College of Chemistry, Chemical Engineering and Materials Science, Soochow University, Suzhou, 215123, China.
Adv Healthc Mater. 2019 Feb;8(3):e1801043. doi: 10.1002/adhm.201801043. Epub 2018 Nov 28.
Silk fibroin (SF) from Bombyx mori is a promising natural material for the synthesis of biocompatible and biodegradable hydrogels for use in biomedical applications from tissue engineering to drug delivery. However, weak gelation performance and the lack of biochemical cues to trigger cell proliferation and differentiation currently significantly limit its application in these areas. Herein, a biofunctional hydrogel containing SF (2.0%) and a small peptide gelator (e.g., NapFFRGD = 1.0 wt%) is generated via cooperative molecular self-assembly. The introduction of NapFFRGD to SF is shown to significantly improve its gelation properties by lowering both its threshold gelation concentration to 2.0% and gelation time to 20 min under physiological conditions (pH = 7.4, 37 °C), as well as functionalizing the SF hydrogel with cell-adhesive motifs (e.g., RGD). Besides mediating cell adhesion, the RGD ligands incorporated within the SF-RGD gel promote the osteogenic differentiation of bone marrow-derived mesenchymal stem cells encapsulated within the gel matrix, leading to bone regeneration in a mouse calvarial defect model, compared with a blank SF gel (2.0%, pH = 7.4). This work suggests that SF could be easily tailored with bioactive peptide gelators to afford bioactive hydrogels with favorable microenvironments for tissue regeneration applications.
丝素蛋白(SF)来源于家蚕,是一种很有前途的天然材料,可用于合成生物相容性和可生物降解的水凝胶,适用于从组织工程到药物输送的生物医学应用。然而,其凝胶性能较弱,且缺乏触发细胞增殖和分化的生化信号,这极大地限制了其在这些领域的应用。在此,我们通过协同分子自组装生成了一种含有丝素蛋白(2.0%)和小肽凝胶因子(例如,NapFFRGD=1.0wt%)的生物功能水凝胶。实验表明,向丝素蛋白中引入 NapFFRGD 可通过降低其在生理条件下(pH=7.4,37°C)的凝胶形成浓度至 2.0%和凝胶形成时间至 20min,从而显著改善其凝胶性能,同时还赋予丝素蛋白水凝胶具有细胞黏附基序(例如,RGD)的功能。除了介导细胞黏附外,整合在 SF-RGD 水凝胶中的 RGD 配体还促进了包封在凝胶基质中的骨髓间充质干细胞的成骨分化,与空白 SF 凝胶(2.0%,pH=7.4)相比,可促进小鼠颅骨缺损模型中的骨再生。本工作表明,丝素蛋白可与生物活性肽凝胶因子进行简单地修饰,赋予具有有利的微环境的生物活性水凝胶,以适用于组织再生应用。