用于牙周引导组织再生的3D打印可吸收膜的物理和生物降解特性

H. Go, Kyoung-Jin Seo, Y. Chun, Seung Won Lee, S. M. You, B. Lim, J. Kwon
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引用次数: 0

摘要

本研究的目的是比较用于牙周组织引导再生的3D打印可吸收膜的物理性能和生物降解性能。考虑了三种类型的3D打印膜(两种非β-TCP和一种β-TCP)。利用场发射扫描电镜(FE-SEM)和能量色散x射线能谱(EDS)分析了3D打印膜的形态和元素组成。采用Micro-CT测量孔隙率和孔径。此外,还进行了拉伸强度和生物降解性测试。抗拉强度和细胞活力试验进行统计学分析(p<0.05)。扫描电镜(SEM)和能谱(EDS)分析结果显示,各组均呈线性层状晶格结构,并存在C和O。部分组间Ca、P含量有轻微差异。抗拉强度各组间差异显著(p<0.05),生物降解性表明含β-TCP组降解速度最快。因此,本研究结果表明,3D打印的可吸收膜具有临床使用的可变物理和生物降解性能,这些信息对未来相关产品的开发和产品的临床应用具有参考价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Physical and biodegradable properties of 3D printed resorbable membranes for periodontal guided tissue regenerations
The purpose of this study was to compare physical and biodegradable properties of 3D printed resorbable membranes that are used for guided tissue regenerations in periodontal tissues. Three types of 3D printed membranes (two types of non β-TCP and one type of β-TCP) were considered. The form and element compositions of 3D printed membranes were analyzed by field-emission scanning electron microscopy (FE-SEM) with energy-dispersive X-ray spectroscopy (EDS). Porosity and pore size were measured using Micro-CT. Also, tensile strength, biodegradability tests were performed. Statistical analyses were carried in tensile strength and cell viability test (p<0.05). The result of SEM images with EDS analyses showed linear layers of lattice structure with presence of C and O in all groups. There was a slight difference in Ca and P among some groups. Tensile strength was significantly different among all groups (p<0.05), and biodegradability showed that the group containing β-TCP resulted in the fastest degradation rate. Therefore, the results of this study concluded that the 3D printed resorbable membrane has variable physical and biodegradable properties for clinical use, where such information would be useful to be considered for the future development of related products and clinical application of the products.
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