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生物活性骨再生材料(英文版)

生物活性骨再生材料(英文版)

  • 字数: 330
  • 出版社: 高等教育
  • 作者: 编者:常江//张兴栋//戴尅戎|责编:柴连静|总主编:张兴栋
  • 商品条码: 9787040556742
  • 版次: 1
  • 开本: 16开
  • 页数: 237
  • 出版年份: 2022
  • 印次: 1
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内容简介
本书以作者多年相关研 究工作的成果积累为基础, 系统阐述骨生物材料与宿主 之间的相互作用。全书包括 三部分。第一部分介绍生物 活性材料的成骨特性、表面 /界面及生物活性特征;第 二部分介绍骨再生过程中生 物材料诱导的微环境及其宿 主反应;第三部分介绍骨再 生过程中生物材料诱导的微 环境及免疫调控。 本书适合材料学、生物 工程、医学等多领域的读者 阅读,可供相关领域的研究 生和教师选作教学参考,亦 可供科研人员选作专业读物 。
目录
List of Contributors Preface 1.Material characteristics, surface/interface, and biological effects on the osteogenesis of bioactive materials 1.1 Fabrication methods of bioactive materials for bone regeneration 1.1.1 Material characteristics of bioactive materials for bone regeneration 1.1.2 Design of porous bioactive materials 1.1.3 Main challenges and prospects References 1.2 Surface micro-/nanostructure regulation of bioactive materials for osteogenesis 1.2.1 Surface morphology of bioactive materials for osteogenesis 1.2.2 Porosity of bioactive porous materials for osteogenesis 1.2.3 Grain size of bioactive materials for osteogenesis 1.2.4 Summary References 1.3 Protein adsorption on bioactive materials and its effect on osteogenesis 1.3.1 Current methods for studying protein adsorption 1.3.2 Material factors influencing protein adsorption 1.3.3 The effect of protein adsorption on the osteogenesis of bioactive materials 1.3.4 Summary References 1.4 Osteogenesis induced by bioactive porous materials and the related molecular mechanism 1.4.1 Angiogenesis of bioactive materials and the involved molecular mechanism 1.4.2 Osteogenesis of bioactive materials and material_mediated mesenchymal stem cell function 1.4.3 Role of immunoresponse in the osteogenesis of bioactive materials 1.4.4 Summary References 2.Biomaterial-induced microenvironment and host reaction in bone regeneration 2.1 Bioactive inorganic ions for the manipulation of osteoimmunomodulation to improve bone regeneration 2.1.1 Introduction 2.1.2 Application of bioactive ions in developing bone biomaterials and their possible application in manipulating osteoimmunomodulation 2.1.3 Combining bioactive elements to develop novel bone biomaterials with osteoimmunomodulatory properties as well as promote osteogenesis 2.1.4 Summaries and future prospects References 2.2 Silicate-based bone cements for hard tissue regeneration 2.2.1 Preparation of silicate-based bone cement 2.2.2 Self-setting properties and drug delivery performance of silicate-based bone cement 2.2.3 In vitro and in vivo bioactivity and osteoinductivity of silicate-based bone cement References 2.3 Trace element–based biomaterials for osteochondralregeneration 2.3.1 Introduction 2.3.2 Biomaterials for osteochondral regeneration 2.3.3 Trace element–based biomaterials for osteochondral regeneration 2.3.4 Conclusions and perspectives References 2.4 Bioactive ions for bone tissue engineering design 2.4.1 Introduction 2.4.2 Effects of bioactive ions on cell proliferation and stemness maintenance 2.4.3 Effects of bioactive ions on osteogenesis and osteoclastogenesis

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