Effects of Heat Treatment on the Mechanical and Degradation Properties of 3D-Printed Calcium-Sulphate-Based Scaffolds

Zuoxin Zhou, C. Mitchell, F. Buchanan, N. Dunne
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引用次数: 29

Abstract

Three-dimensional printing (3DP) has been employed to fabricate scaffolds with advantages of fully controlled geometries and reproducibility. In this study, the scaffold structure design was established through investigating the minimum feature size and powder size distribution. It was then fabricated from the 3DP plaster-based powders (CaSO4·1/2H2O). Scaffolds produced from this material demonstrated low mechanical properties and a rapid degradation rate. This study investigated the effects of heat treatment on the mechanical and in vitro degradation properties of the CaSO4 scaffolds. The occurrence of dehydration during the heating cycle offered moderate improvements in the mechanical and degradation properties. By using a heat treatment protocol of 200°C for 30 min, compressive strength increased from 0.36 ± 0.13 MPa (pre-heat-treated) to 2.49 ± 0.42 MPa (heat-treated). Heat-treated scaffolds retained their structure and compressive properties for up to two days in a tris-buffered solution, while untreated scaffolds completely disintegrated within a few minutes. Despite the moderate improvements observed in this study, the heat-treated CaSO4 scaffolds did not demonstrate mechanical and degradation properties commensurate with the requirements for bone-tissue-engineering applications.
热处理对3d打印硫酸钙基支架力学性能和降解性能的影响
三维打印(3DP)已被用于制造支架具有完全控制的几何形状和可重复性的优点。在本研究中,通过研究最小特征尺寸和粉末粒度分布,建立支架结构设计。然后由3DP石膏基粉末(CaSO4·1/2H2O)制备。用这种材料制成的支架具有机械性能低、降解速度快的特点。本研究考察了热处理对CaSO4支架力学性能和体外降解性能的影响。在加热循环过程中发生脱水,使其机械性能和降解性能得到适度改善。在200℃、30 min的热处理条件下,抗压强度从0.36±0.13 MPa(预处理)提高到2.49±0.42 MPa(热处理)。经过热处理的支架在tris缓冲溶液中可以保持其结构和压缩性能长达两天,而未经处理的支架在几分钟内完全分解。尽管在本研究中观察到适度的改善,热处理的CaSO4支架没有显示出与骨组织工程应用要求相称的机械和降解性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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