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Effect of Different Manufacturing Methods on the Conflict between Porosity and Mechanical Properties of Spiral and Porous Polyethylene Terephthalate/Sodium Alginate Bone Scaffolds

机译:不同制造方法对螺旋和多孔聚对苯二甲酸乙二醇酯/海藻酸钠骨支架孔隙率与力学性能冲突的影响

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摘要

In order to solve the incompatibility between high porosity and mechanical properties, this study fabricates bone scaffolds by combining braids and sodium alginate (SA) membranes. Polyethylene terephthalate (PET) plied yarns are braided into hollow, porous three dimensional (3D) PET braids, which are then immersed in SA solution, followed by cross-linking with calcium chloride (CaCl2) and drying, to form PET bone scaffolds. Next, SA membranes are rolled and then inserted into the braids to form the spiral and porous PET/SA bone scaffolds. Samples are finally evaluated for surface observation, porosity, water contact angle, compressive strength, and MTT assay. The test results show that the PET bone scaffolds and PET/SA bone scaffolds both have good hydrophilicity. An increasing number of layers and an increasing CaCl2 concentration cause the messy, loose surface structure to become neat and compact, which, in turn, decreases the porosity and increases the compressive strength. The MTT assay results show that the cell viability of differing SA membranes is beyond 100%, indicating that the PET/SA bone scaffolds containing SA membranes are biocompatible for cell attachment and proliferation.
机译:为了解决高孔隙率和机械性能之间的不兼容问题,本研究通过结合编织层和藻酸钠膜制造了骨支架。将聚对苯二甲酸乙二酯(PET)股纱编织成中空的,多孔的三维(3D)PET编织物,然后将其浸入SA溶液中,然后与氯化钙(CaCl2)交联并干燥,以形成PET骨支架。接下来,将SA膜卷起,然后插入到编织物中,以形成螺旋形和多孔的PET / SA骨支架。最后评估样品的表面观察,孔隙率,水接触角,抗压强度和MTT分析。测试结果表明,PET骨支架和PET / SA骨支架均具有良好的亲水性。层数的增加和CaCl2浓度的增加,使杂乱,松散的表面结构变得整齐而致密,进而降低了孔隙率并提高了抗压强度。 MTT分析结果表明,不同SA膜的细胞活力超过100%,表明含有SA膜的PET / SA骨支架对于细胞附着和增殖具有生物相容性。

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