丝素
脚手架
再生(生物学)
骨愈合
细胞生物学
丝绸
化学
骨组织
体内
生物物理学
解剖
材料科学
生物医学工程
生物
复合材料
医学
生物技术
作者
Shuai Wei,Yu Wang,Yu Sun,Leilei Gong,Dai Xiu,Haoye Meng,Wenjing Xu,Jianxiong Ma,Hu Qian,Xinlong Ma,Jiang Peng,Xiaosong Gu
标识
DOI:10.1016/j.ijbiomac.2023.123861
摘要
Compared with most nondegradable or slowly degradable bone repair materials, bioactive biodegradable porous scaffolds with certain mechanical strengths can promote the regeneration of both new bone and vasculature while the cavity created by their degradation can be replaced by the infiltration of new bone tissue. Mineralized collagen (MC) is the basic structural unit of bone tissue, and silk fibroin (SF) is a natural polymer with adjustable degradation rates and superior mechanical properties. In this study, a three-dimensional porous biomimetic composite scaffold with a two-component SF-MC system was constructed based on the advantages of both materials. The spherical mineral agglomerates of the MC were uniformly distributed on the surface and inside the SF skeleton, which ensured good mechanical properties while regulating the degradation rate of the scaffold. Second, the SF-MC scaffold had good osteogenic induction of bone marrow mesenchymal stem cells (BMSCs) and preosteoblasts (MC3T3-E1) and also promoted the proliferation of MC3T3-E1 cells. Finally, in vivo 5 mm cranial defect repair experiments confirmed that the SF-MC scaffold stimulated vascular regeneration and promoted new bone regeneration in vivo by means of in situ regeneration. Overall, we believe that this low-cost biomimetic biodegradable SF-MC scaffold with many advantages has some clinical translation prospects.
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