Qian Junmin, Suo Aili, Jin Xinxia, Xu Weijun, Xu Minghui
State Key Laboratory for Mechanical Behaviors of Materials, Xi'an Jiaotong University, Xi'an, 710049, China.
J Biomed Mater Res A. 2014 Sep;102(9):2961-71. doi: 10.1002/jbm.a.34964. Epub 2013 Oct 2.
In bone tissue engineering, a qualified scaffold should provide a three-dimensional porous structure mimicking the extracellular matrix of bone except good biological properties. In this study, biomorphic silk fibroin (SF) scaffolds were fabricated from cane by an innovative biotemplating-negative mold process. The physicochemical properties, in vitro enzymatic degradation behavior and biocompatibility of the biomorphic SF scaffolds were investigated. The results showed that the scaffolds well inherited the original porous morphology of cane, and possessed good mechanical stability. The scaffolds had a compressive modulus of 1.56 ± 0.08 MPa and a porosity of 82.73%, and exhibited a bimodal pore size distribution (15 and 172 μm). The degradation ratio of the SF scaffolds increased with prolonging degradation time and reached 29% within 21 days when exposed to 1.0 U/mL collagenase IA. The in vitro cytocompatibility evaluation indicated that the scaffolds could support cell attachment, proliferation, and osteogenic differentiation of osteoblast-like MC3T3-E1 cells, as assessed by SEM, fluorescent staining, MTT, and ALP activity assays. The results indicated the potential of biomorphic SF scaffolds for bone tissue engineering.
在骨组织工程中,除了具备良好的生物学特性外,合格的支架还应提供模仿骨细胞外基质的三维多孔结构。在本研究中,通过创新的生物模板 - 负模工艺,由甘蔗制备了生物形态丝素蛋白(SF)支架。研究了生物形态SF支架的物理化学性质、体外酶降解行为和生物相容性。结果表明,该支架很好地继承了甘蔗原有的多孔形态,并具有良好的机械稳定性。支架的压缩模量为1.56±0.08MPa,孔隙率为82.73%,呈现双峰孔径分布(15和172μm)。当暴露于1.0U/mL胶原酶IA时,SF支架的降解率随降解时间延长而增加,21天内达到29%。体外细胞相容性评估表明,通过扫描电子显微镜、荧光染色、MTT和碱性磷酸酶活性测定评估,该支架能够支持成骨样MC3T3 - E1细胞的附着、增殖和骨分化。结果表明生物形态SF支架在骨组织工程中的潜力。