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Fabrication of porous polyvinyl alcohol scaffold for bone tissue engineering via selective laser sintering

机译:通过选择性激光烧结制备用于骨组织工程的多孔聚乙烯醇支架

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摘要

A tetragonal polyvinyl alcohol (PVA) scaffold with 3D orthogonal periodic porous architecture was fabricated via selective laser sintering (SLS) technology. The scaffold was fabricated under the laser power of 8 W, scan speed of 600 mm min-1, laser spot diameter of 0.8 mm and layer thickness of 0.15 mm. The microstructure analysis showed that the degree of crystallization decreased while the PVA powder melts gradually and fuses together completely with laser power increasing. Thermal decomposition would occur if the laser power was further higher (16 W or higher in the case). The porous architecture was controllable and totally interconnected. The porosity of the fabricated scaffolds was measured to be 67.9 ± 2.7% which satisfies the requirement of micro-pores of the bone scaffolds. Its bioactivity and biocompatibility were also evaluated in vitro as tissue engineering (TE) scaffolds. In vitro adhesion assay showed that the amount of pores increased while the scaffold remains stable and intact after immersion in simulated body fluid for seven days. Moreover, the number of MG-63 cells and the bridge between cells increased with increasing time in cell culture. The present work demonstrates that PVA scaffolds with well-defined porous architectures via SLS technology were designed and fabricated for bone TE.
机译:通过选择性激光烧结(SLS)技术制备了具有3D正交周期性多孔结构的四方聚乙烯醇(PVA)支架。该支架是在8 W的激光功率,600 mm min-1的扫描速度,0.8 mm的激光光斑直径和0.15 mm的层厚度下制造的。显微组织分析表明,随着激光功率的增加,PVA粉末逐渐熔化并完全融合在一起时,结晶度降低。如果激光功率更高(在这种情况下为16 W或更高),则会发生热分解。多孔结构是可控的,并且完全互连。所制造的支架的孔隙率经测量为67.9±2.7%,这满足了骨支架的微孔的要求。还作为组织工程(TE)支架在体外评估了其生物活性和生物相容性。体外粘附试验表明,将孔浸入模拟体液中7天后,孔的数量增加,而支架保持稳定和完整。而且,MG-63细胞的数目和细胞之间的桥梁随着细胞培养中时间的增加而增加。本工作表明,通过SLS技术设计并制造了具有清晰多孔结构的PVA支架,用于骨骼TE。

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