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Bioactive Tetracalcium Phosphate Scaffolds Fabricated by Selective Laser Sintering for Bone Regeneration Applications

机译:通过选择性激光烧结制造的生物活性四钙支架,用于骨再生应用

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摘要

Tetracalcium phosphate (TTCP), a potential biological scaffold material, has attracted increasing interest for bone regeneration applications due to its good biodegradability and biocompatibility. In this research, three-dimensional porous TTCP scaffolds were manufactured via selective laser sintering (SLS), and an in-depth and meticulous study on the influence of laser power on the microstructure and mechanical properties of TTCP scaffolds was performed. The results showed that the TTCP particles fused together and formed a solid object due to the decrease in the number of micro-pores in the scaffold as the laser power increased from 6 W to 9 W. The maximum compressive strength that the scaffold could withstand and the strength of the fracture toughness were 11.87 ± 0.64 MPa and 1.12 ± 0.1 MPa·m1/2, respectively. When the laser power increased from 9 W to 10 W, the TTCP grains grew abnormally, resulting in diminished mechanical properties. The bioactivity tests showed that the surfaces of the scaffolds were entirely covered by bone-like apatite layers after soaking in simulated body fluid (SBF) for three days, indicating that the scaffolds exhibit excellent bioactivity. Moreover, cell experiments showed that the TTCP scaffolds had good biocompatibility. This study indicated that SLS-fabricated TTCP scaffolds may be a promising candidate for bone regeneration applications.
机译:四钙(TTCP),一个潜在的生物支架材料,吸引了骨再生的应用越来越多的关注,由于其良好的生物降解性和生物相容性。在这项研究中,三维多孔TTCP支架,通过选择性激光烧结(SLS)制,进行了深入的细致的研究上的激光功率的微观结构和TTCP支架的机械性能的影响。该结果表明,TTCP颗粒熔合在一起,形成固体物,由于在微孔中的支架作为激光功率从6瓦特提高到9 W的最大压缩强度,该支架可以承受和数量的减少断裂韧性的强度分别为11.87±0.64 MPa和1.12±0.1兆帕·M1 / 2,。当激光功率从9瓦增加到10 W时,TTCP晶粒长大异常,从而导致降低的机械性能。生物活性试验表明,支架的表面被完全覆盖由骨样在模拟体液(SBF)三天浸泡,表明支架表现出优异的生物活性后磷灰石层。此外,细胞实验表明,TTCP支架具有良好的生物相容性。这项研究表明,SLS制造的TTCP支架可用于骨骼再生的应用有希望的候选。

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