首页> 外文期刊>Journal of materials science >Scaffolds with a standardized macro-architecture fabricated from several calcium phosphate ceramics using an indirect rapid prototyping technique
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Scaffolds with a standardized macro-architecture fabricated from several calcium phosphate ceramics using an indirect rapid prototyping technique

机译:采用间接快速成型技术,由几种磷酸钙陶瓷制成的具有标准化宏结构的脚手架

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摘要

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 dif-ficult 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 phos-phate ceramic compositions. Beta-tricalcium phosphate, hydroxyapatite (at two sintering temperatures) and biphasic calcium phosphate scaffolds were manufactured. Thernmacro- and micro-architectures of the scaffolds were characterized as well as the influence of the manufacturing method on the chemistries of the calcium phosphate com-positions. 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 confi-dently excluding the influence of the macroporous structure of the scaffolds.
机译:通常用作骨移植替代品的磷酸钙陶瓷是用于骨组织工程的支架材料的自然选择。有证据表明,这些陶瓷的化学组成,大孔和微孔会影响它们作为骨移植替代物和骨组织工程支架的行为,但并未做任何优化这些参数的工作。一种优化方法是通过尽可能标准化混杂参数的影响,将注意力集中在特定参数上。用传统的制造技术很难做到这一点。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,该方法使用不同的磷酸钙陶瓷组合物制造具有几乎相同的大孔结构的脚手架。制造了β-磷酸三钙,羟基磷灰石(在两个烧结温度下)和双相磷酸钙支架。表征了支架的宏观和微观结构,以及制造方法对磷酸钙组合物化学性质的影响。所得支架的结构特征非常相似。制造过程对材料的组成几乎没有影响,除了β-磷酸三钙相的一致但少量添加或增加。在其他应用中,通过所述方法生产的支架提供了一种检查不同磷酸钙组合物的影响的方法,同时可靠地排除了支架大孔结构的影响。

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  • 来源
    《Journal of materials science》 |2011年第1期|p.97-105|共9页
  • 作者单位

    Division of Surgical Specialties, Department of Orthopaedics, University Medical Center Utrecht, G05.228, PO Box 85500,3508 GA Utrecht, The Netherlands;

    rnDepartment of Tissue Regeneration, Institute for Biomedical Technology, University of Twente, PO Box 217, 7500 AE Enschede, The Netherlands;

    rnDivision of Surgical Specialties, Department of Orthopaedics, University Medical Center Utrecht, G05.228, PO Box 85500,3508 GA Utrecht, The Netherlands;

    rnDivision of Surgical Specialties, Department of Orthopaedics, University Medical Center Utrecht, G05.228, PO Box 85500,3508 GA Utrecht, The Netherlands Faculty of Veterinary Medicine, Utrecht University, Yalelaan 1, 3584 CL Utrecht, The Netherlands;

    rnSchool of Engineering and Materials Science, Queen Mary University of London, Mile End Road, London El 4NS, UK;

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