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首页> 外文期刊>Materials science & engineering >Development of a solvent-free polylactide/calcium carbonate composite for selective laser sintering of bone tissue engineering scaffolds
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Development of a solvent-free polylactide/calcium carbonate composite for selective laser sintering of bone tissue engineering scaffolds

机译:用于骨组织工程支架的选择性激光烧结的无溶剂聚乳酸/碳酸钙复合材料的开发

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Since large bone defects cannot be healed by the body itself, continuous effort is put into the development of 3D scaffolds for bone tissue engineering. One method to fabricate such scaffolds is selective laser sintering (SLS). However, there is a lack of solvent-free prepared microparticles suitable for SLS. Hence, the aim of this study was to develop a solvent-free polylactide/calcium carbonate composite powder with tailored material properties for SLS. Four composite powders with a composition of approximately 75 wt% polylactide (PLLA as well as PDLLA) and 25 wt% calcium carbonate (calcite) were prepared by a milling process based on GMP standards. Four different grades of polylactide were chosen to cover a broad inherent viscosity range of 1.0-3.6 dl/g. The composite material with the lowest inherent viscosity (1.0 dl/g) showed the best processability by SLS. This was caused by the small polymer particle diameter (50 mu m) and the small zero-shear melt viscosity (400 Pa.s), which led to fast sintering. The SLS process parameters were developed to achieve low micro-porosity (approx. 2%) and low polymer degradation (no measurable decrease of the inherent viscosity). A biaxial bending strength of up to 75 MPa was achieved. Cell culture assays indicated good viability of MG-63 osteoblast-like cells on the SLS specimens. Finally, the manufacture of 3D scaffolds with interconnected pore structure was demonstrated. After proving the biocompatibility of the material, the developed scaffolds could have great potential to be used as patient-specific bone replacement implants.
机译:由于大的骨缺损不能由人体自身治愈,因此需要不断努力来开发用于骨组织工程的3D支架。制造这种支架的一种方法是选择性激光烧结(SLS)。然而,缺少适合SLS的无溶剂制备的微粒。因此,本研究的目的是开发一种具有定制的SLS材料性能的无溶剂聚丙交酯/碳酸钙复合粉末。通过基于GMP标准的研磨工艺,制备了四种复合粉末,其成分约为75 wt%的聚丙交酯(PLLA和PDLLA)和25 wt%的碳酸钙(方解石)。选择四种不同等级的聚丙交酯,以覆盖1.0-3.6 dl / g的较宽比浓对数粘度范围。具有最低固有粘度(1.0 dl / g)的复合材料通过SLS表现出最佳的加工性能。这是由于聚合物粒径小(50微米)和零剪切熔体粘度小(400 Pa.s)引起的,从而导致了快速烧结。开发了SLS工艺参数以实现低微孔率(约2%)和低聚合物降解(特性粘度没有可测量的降低)。达到了最高75 MPa的双轴弯曲强度。细胞培养测定表明,SLS标本上的MG-63成骨细胞样细胞具有良好的生存能力。最后,展示了具有相互连接的孔结构的3D支架的制造。在证明了材料的生物相容性之后,开发的支架可能具有巨大的潜力,可以用作患者特定的骨替代植入物。

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