首页> 外文学位 >Preparation and characterization of calcium phosphate ceramics and composites as bone substitutes.
【24h】

Preparation and characterization of calcium phosphate ceramics and composites as bone substitutes.

机译:磷酸钙陶瓷和复合材料作为骨替代品的制备和表征。

获取原文
获取原文并翻译 | 示例

摘要

Marine CaCO3 skeletons have tailored architectures created by nature, which give them structural support and other functions. For example, seashells have dense lamellar structures, while coral, cuttlebone and sea urchin spines have interconnected porous structures. In our experiments, seashells, coral and cuttlebone were hydrothermally converted to hydroxyapatite (HAP), and sea urchin spines were converted to Mg-substituted tricalcium phosphate (beta-TCMP), while maintaining their original structures. Partially converted shell samples have mechanical strength, which is close to that of compact human bone. After implantation of converted shell and spine samples in rat femoral defects for 6 weeks, there was newly formed bone growth up to and around the implants. Some new bone was found to migrate through the pores of converted spine samples and grow inward. These results show good bioactivity and osteoconductivity of the implants, indicating the converted shell and spine samples can be used as bone defect fillers.; Calcium phosphate powders were prepared through different synthesis methods. Micro-size HAP rods were synthesized by hydrothermal method through a nucleation-growth mechanism. On the other hand, HAP particles, which have good crystallinity, were prepared by wet precipitation with further hydrothermal treatment. beta-TCP or beta-TCMP powders were prepared by a two-step process: wet precipitation of apatitic tricalcium phosphate ('precursor') and calcination of the precursor at 800°C for 3 hours. beta-TCMP or beta-TCP powders were also prepared by solid-state reactions from CaHPO4 and CaCO 3 with/without MgO. Biphasic calcium phosphate, which is mixture of HAP and beta-TCP, can be prepared though mechanical mixing of HAP and beta-TCP powders synthesized as above.; Dense beta-TCP and beta-TCMP ceramics can be produced by pressing green bodies at 100MPa and further sintering above 1100°C for 2 hours. beta-TCMP ceramics ∼99.4% relative dense were prepared by this method. Dense beta-TCP ceramics have average strength up to 540MPa. Macroporous beta-TCMP ceramics were produced with sucrose as the porogen following a two-step pressing method. Porous beta-TCMP ceramics were also prepared by replication of polyurethane sponge. beta-TCMP ceramics with porous structures in the center surrounded by dense structures were created. The outside dense structures give the scaffold mechanical strength, while the central porous structures enable cells migration and vascular infiltration, and finally in-growth of new bone into the scaffold.
机译:海洋CaCO3骨架具有自然创造的量身定制的架构,可为它们提供结构支撑和其他功能。例如,贝壳具有致密的层状结构,而珊瑚,墨鱼骨和海胆刺具有相互连接的多孔结构。在我们的实验中,将贝壳,珊瑚和墨鱼骨水热转化为羟基磷灰石(HAP),将海胆棘转化为Mg取代的磷酸三钙(β-TCMP),同时保持其原始结构。部分转换的贝壳样品的机械强度接近致密的人体骨骼。在大鼠股骨缺损中植入转化后的贝壳和脊柱样本达6周后,直到植入物及其周围都出现了新形成的骨骼生长。发现一些新的骨骼通过转换后的脊柱样本的孔迁移并向内生长。这些结果表明植入物具有良好的生物活性和骨传导性,表明转化后的壳和脊柱样品可用作骨缺损填充物。通过不同的合成方法制备磷酸钙粉末。通过成核-生长机理,通过水热法合成了微型HAP棒。另一方面,通过湿法沉淀并进一步进行水热处理来制备具有良好结晶度的HAP颗粒。 β-TCP或β-TCMP粉末是通过两步过程制备的:apaptic磷酸三钙(“前体”)的湿法沉淀和前体在800°C下煅烧3小时。还可以通过CaHPO4和CaCO 3在有/无MgO的条件下进行固态反应来制备β-TCMP或β-TCP粉末。可以通过机械混合HAP和如上所述合成的β-TCP粉末来制备HAP和β-TCP的混合物的双相磷酸钙。可以通过在100MPa下压制生坯,然后在1100°C以上进一步烧结2小时来生产致密的β-TCP和β-TCMP陶瓷。用这种方法制备了相对密度为99.4%的β-TCMP陶瓷。致密的β-TCP陶瓷的平均强度高达540MPa。按照两步压制法,以蔗糖为致孔剂生产大孔β-TCMP陶瓷。还通过复制聚氨酯海绵制备了多孔β-TCMP陶瓷。创建了中心具有多孔结构,被致密结构包围的β-TCMP陶瓷。外部的致密结构赋予了支架机械强度,而中央的多孔结构则使细胞迁移和血管浸润,最终使新骨向支架内生长。

著录项

  • 作者

    Zhang, Xing.;

  • 作者单位

    University of California, San Diego.$bMaterials Sci and Engineering.;

  • 授予单位 University of California, San Diego.$bMaterials Sci and Engineering.;
  • 学科 Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 174 p.
  • 总页数 174
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

  • 入库时间 2022-08-17 11:39:18

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号