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Multi-Functions of Carbonated Calcium Deficient Hydroxyapatite (CDHA).

机译:碳酸钙缺乏羟基磷灰石(CDHA)的多功能。

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摘要

Natural bone is a complex composite mainly constituted of inorganic minerals and organic collagen molecules. Calcium phosphate (CaP) based materials have been proposed as the predominant bone substitute for bone tissue engineering applications due to their chemical similarity to bone mineral. Amorphous carbonated calcium deficient hydroxyapatite (CDHA) is an important compound among CaP materials because of the amorphous crystallite structure. The presence of extra ions in its lattice structure not only influences cell attachment and proliferation of osteoblasts, but also helps in bone metabolism.;Biomimetic coating approach is the most widely used approach to produce CDHA coatings to implant. It is a process using simulated body fluid (SBF) to deposit bone-like CDHA coating to various material surfaces. The CDHA formation mechanism, SBF compositions and reacting conditions of biomimetic coating have already been sufficiently studied and compared in the past 20 years.;It is an attempt in this thesis to explore new applications of SBF in biomedical research, focusing on different biomaterial applications: 1) based on the low temperature reaction condition of SBF, bisphosphonate incorporated CDHA coatings were deposited onto Ti6Al4V surface for the treatment of osteoporosis; 2) amorphous calcium phosphate nanospheres with extra elements in the lattice structure were prepared by a novel microwave assisted approach, providing a new potential of CaP materials production; 3) CDHA particles formed in SBF can be used as great fillers with biopolymers for preparing biocomposites for biomedical applications; 4) based on the high activity of CDHA amorphous structure and the stabilization ability of ethanol, yttrium and europium doped calcium phosphates were prepared using CDHA as a sacrificing template.;In the end, future work based on these observations in the thesis is addressed, including areas of drug delivery, biocomposite fabrication and preparation of functionalized calcium phosphate materials.
机译:天然骨骼是一种复杂的复合材料,主要由无机矿物质和有机胶原分子组成。基于磷酸钙(CaP)的材料因其与骨骼矿物质的化学相似性而被提议作为骨组织工程应用的主要骨替代品。非晶态的碳酸钙缺乏羟基磷灰石(CDHA)是非晶态微晶结构中重要的化合物。晶格结构中多余离子的存在不仅影响成骨细胞的细胞附着和增殖,而且有助于骨骼代谢。仿生涂层法是生产植入用CDHA涂层最广泛使用的方法。这是一个使用模拟体液(SBF)将类骨CDHA涂层沉积到各种材料表面的过程。在过去的20年中,已经充分研究并比较了仿生涂层的CDHA形成机理,SBF组成和反应条件。;本论文试图探索SBF在生物医学研究中的新应用,着眼于不同的生物材料应用: 1)根据SBF的低温反应条件,将掺有双膦酸酯的CDHA涂层沉积在Ti6Al4V表面以治疗骨质疏松症; 2)通过新型微波辅助方法制备了晶格结构中具有多余元素的非晶态磷酸钙纳米球,为CaP材料的生产提供了新的潜力。 3)SBF中形成的CDHA颗粒可以用作生物聚合物的优良填料,用于制备生物医学应用的生物复合材料; 4)基于CDHA的高活性无定形结构和乙醇的稳定能力,以CDHA为牺牲模板制备了掺钇和and的磷酸钙。最后,针对本文中的这些发现,提出了今后的工作,包括药物递送,生物复合材料制造和功能化磷酸钙材料制备领域。

著录项

  • 作者

    Zhou, Huan.;

  • 作者单位

    The University of Toledo.;

  • 授予单位 The University of Toledo.;
  • 学科 Chemistry Biochemistry.;Engineering Biomedical.;Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 215 p.
  • 总页数 215
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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