丝素
材料科学
化学工程
钛酸钙
多孔性
再生(生物学)
表面改性
复合材料
丝绸
陶瓷
工程类
细胞生物学
生物
作者
Jincheng Zhang,Yiwen Xu,Yingqi Zhang,Lei Chen,Yeqing Sun,Jia Liu,Zhitao Rao
出处
期刊:Heliyon
[Elsevier]
日期:2023-04-01
卷期号:9 (4): e15074-e15074
被引量:1
标识
DOI:10.1016/j.heliyon.2023.e15074
摘要
Different concentrations of calcium titanate (CaTiO3) nanoparticles were loaded into the Silk fibroin (SF) solution to construct porous SF@CaTiO3 hybrid scaffolds, which were shown to have enhanced properties for stimulating peripheral nerve regeneration. Surface charges, crystallization intensity, wettability, porosity, and morphology were measured and analyzed. We analyzed the hybrid porous SF@CaTiO3 scaffolds that affected the expansion of Schwann cells. The results demonstrated a concentration-dependent influence on the dispersion of nanoparticles in the CaTiO3 hybridized SF scaffolds. Incorporating CaTiO3-NPs into the porous SF@CaTiO3 hybrid scaffolds can boost hydrophobicity while decreasing surface charge density and porosity. The hybridized scaffolds mostly had an orthorhombic calcium titanate crystal structure with amorphous Silk fibroin mixed. Schwann cell cultures revealed that SF@CaTiO3 hybrid scaffolds containing an optimal CaTiO3-NPs concentration could stimulate the proliferation, attachment, and protection of Schwann cell biological functions, suggesting the scaffolds' potential for use in peripheral nerve regeneration.
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