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Preparation and Physical Characterization of Gelatin—Starch/Hydroxyapatite Porous Composite Scaffold Fabricated Using Novel Microwave Energy under Vacuum Technique

机译:新型微波能量真空制备明胶-淀粉/羟磷灰石多孔复合支架的制备与物理表征

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摘要

This work was initiated to explore the possibility of preparing porous scaffold, using microwave energy under vacuum technique. The hypothesis was that microwave energy under vacuum may promote effective cross-linking of the biopolymers during drying as well as to lead desirable physical characteristics of composites for hard tissue-like bone regeneration. Three different percentages of hydroxyapatite (HA) was reinforced with gelatin-starch polymer network to prepare porous scaffolds. EDS result of the prepared scaffold composite showed that Ca/P ratio of the HA phase was the same for all the HA percentages, 1.7, which is slightly higher than the standard value of 1.67. FTIR results showed the existence of a carbonate group along with the peaks of phosphate groups and hydroxyls, the functional group of HA. The scaffold composite obtained by microwave energy under vacuum technique had good mechanical and structural properties, which showed a promising potential for bone-substitution applications.
机译:开始这项工作是为了探索在真空技术下利用微波能量制备多孔支架的可能性。假设是真空下的微波能量可以促进干燥过程中生物聚合物的有效交联,并导致复合材料具有理想的物理特性,以实现类似硬组织的骨再生。用明胶-淀粉聚合物网络增强了三种不同百分比的羟基磷灰石(HA),以制备多孔支架。制备的脚手架复合材料的EDS结果表明,对于所有的HA百分比,HA相的Ca / P比均相同,为1.7,略高于标准值1.67。 FTIR结果显示碳酸酯基团的存在以及磷酸酯基团和羟基(HA的官能团)的峰。在真空技术下通过微波能量获得的支架复合材料具有良好的机械和结构性能,在骨替代应用中显示出广阔的前景。

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