Division of Surgical Specialties, Department of Orthopaedics, University Medical Center Utrecht, Utrecht, The Netherlands.
J Mater Sci Mater Med. 2011 Jan;22(1):97-105. doi: 10.1007/s10856-010-4183-5. Epub 2010 Nov 11.
Calcium phosphate ceramics, commonly applied as bone graft substitutes, are a natural choice of scaffolding material for bone tissue engineering. Evidence shows that the chemical composition, macroporosity and microporosity of these ceramics influences their behavior as bone graft substitutes and bone tissue engineering scaffolds but little has been done to optimize these parameters. One method of optimization is to place focus on a particular parameter by normalizing the influence, as much as possible, of confounding parameters. This is difficult to accomplish with traditional fabrication techniques. In this study we describe a design based rapid prototyping method of manufacturing scaffolds with virtually identical macroporous architectures from different calcium phosphate ceramic compositions. Beta-tricalcium phosphate, hydroxyapatite (at two sintering temperatures) and biphasic calcium phosphate scaffolds were manufactured. The macro- and micro-architectures of the scaffolds were characterized as well as the influence of the manufacturing method on the chemistries of the calcium phosphate compositions. The structural characteristics of the resulting scaffolds were remarkably similar. The manufacturing process had little influence on the composition of the materials except for the consistent but small addition of, or increase in, a beta-tricalcium phosphate phase. Among other applications, scaffolds produced by the method described provide a means of examining the influence of different calcium phosphate compositions while confidently excluding the influence of the macroporous structure of the scaffolds.
钙磷酸盐陶瓷,通常用作骨移植替代物,是骨组织工程中支架材料的自然选择。有证据表明,这些陶瓷的化学成分、大孔率和微孔率影响它们作为骨移植替代物和骨组织工程支架的行为,但很少有人致力于优化这些参数。一种优化方法是通过尽可能地归一化混杂参数的影响,将重点放在特定参数上。这在传统制造技术中很难实现。在这项研究中,我们描述了一种基于设计的快速原型制造方法,用于制造具有几乎相同大孔结构的不同钙磷酸盐陶瓷成分的支架。β-磷酸三钙、羟基磷灰石(两种烧结温度)和双相钙磷酸盐支架被制造出来。支架的宏观和微观结构以及制造方法对钙磷酸盐成分化学性质的影响都得到了表征。所得支架的结构特征非常相似。制造工艺对材料的组成影响很小,除了β-磷酸三钙相的一致但少量的添加或增加外。除了其他应用外,该方法生产的支架提供了一种在有信心排除支架大孔结构影响的情况下检查不同钙磷酸盐成分影响的手段。