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Characterisation of ceramic bone graft environments for optimised angiogenesis

Characterisation of ceramic bone graft environments for optimised angiogenesis
表征陶瓷骨移植环境以优化血管生成
批准号:
2118155
负责人:
金额:
$0.0万
依托单位:
依托单位国家:
英国
项目类别:
Studentship
财政年份:
2018
资助国家:
英国
项目状态:
已结题
起止时间:
2018 至 --

项目摘要

项目成果

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中文摘要
翻译
多年来,由于磷酸钙植入物的成分与人体硬组织的矿物质成分相似,人们对使用磷酸钙植入物进行骨骼修复有很大的兴趣。然而,骨移植替代品的有效性受到其支持组织生长和促进血管生成的能力的强烈影响。Gariboldi等人之前所做的工作。利用可控羟基磷灰石结构的3D打印作为模型基质来研究血管生成,不仅涉及到这种基质的3D打印,而且还涉及培养适当的细胞组合以产生排列的微血管,从而成功地建立了技术。这一结果为进一步研究这一领域提供了许多新的思路和可能性。由于表面粗糙度和孔结构的控制对蛋白质吸附(例如从等离子体中)的影响,近年来已成为生物材料和生物陶瓷领域的一个非常热门的话题。初步研究将评估蛋白质吸附的性质及其释放动力学。这项工作将继续考虑这如何影响破骨细胞重塑和成骨细胞介导的骨沉积。虽然过去经常使用单一培养,但生理相关细胞共培养的重要性越来越被认为是一种改善对骨修复潜在机制和过程的理解的方法。使用高度受控的2.5D模型环境为更详细地研究支架结构和表面粗糙度对血管生成和骨诱导骨移植替代物开发的影响提供了可能性。此外,作为该项目的一部分,我打算将2.5D中的发现转化为受控3D环境生产中更具挑战性的方面。在这个项目的过程中,我试图发展我在活细胞成像方面的专业知识,以了解细胞与细胞之间的相互作用。此外,我将发展研究组中现成的技能和知识,并探索如何将X射线显微断层扫描(MicroCT)与适当造影剂的使用相结合。这些研究包括用于评估血管生成的抗体结合物,以及更广泛地提供关于蛋白质吸附在骨修复中的作用的信息。研究的结果将是更好地理解蛋白质在骨移植替代物上的吸附对骨修复的影响,并进一步深入了解支架结构和表面形貌在指导细胞行为中的作用。
英文摘要
There has been significant interest over a number of years in the use of calcium phosphate implants for skeletal repair due to their similarity in composition to the mineral component of the hard tissues in the body. However, the efficacy of bone graft substitutes is strongly influenced by their ability to support tissue in-growth and encourage angiogenesis. Previous work done by Gariboldi et al. on the 3D printing of controlled hydroxyapatite architectures as model substrates to study angiogenesis has resulted in the successful establishment techniques not only relating to the 3D printing of such substrates but also to culture the appropriate combination of cells to produce aligned micro-vessels. This result gives rise to a significant number of new ideas and possibilities to further the research area.The control of surface roughness and pore structure has recently become a very hot topic in the field of biomaterials and bioceramics field in terms of the effects on protein adsorption (e.g. from plasma). Preliminary studies will assess the nature of protein adsorption and their release kinetics. The work will move on to consider how this influences osteoclastic remodelling and osteoblast-mediated bone deposition. While mono-culture has often been used in the past, the importance of co-culture of the physiologically relevant cells is increasingly recognised as a way to provide improved understanding of the underlying mechanisms and processes of bone repair. The use of highly controlled, model 2.5D environments offers the potential to study in more detail the effects of scaffold architecture and surface roughness for the development of angiogenic and osteo-inductive bone graft substitutes.Furthermore, I intend to translate the findings made in 2.5D to the more challenging aspects of production of controlled 3D environments as part of this project. Over the course of the project, I seek to develop my expertise in live cell imaging to understand cell-cell interactions. Additionally, I will develop the skills and knowledge readily available in the research group, and explore how X-Ray microtomography (microCT) might be combined with the use of appropriate contrast agents. These include antibody conjugates for evaluation of angiogenesis and more broadly, to provide information about the role of the protein adsorption in bone repair.The outcome of the investigations will be an improved understanding of the influence of protein adsorption on bone graft substitutes on bone repair and further insights into the role of scaffold architecture and surface topography in directing cell behaviour.
期刊论文(1)
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科研奖励(0)
会议论文
Effects of Surface Characteristics of Hydroxyapatite and Substituted Hydroxyapatites on Protein Attachment and Angiogenesis
羟基磷灰石和取代羟基磷灰石表面特性对蛋白质附着和血管生成的影响
DOI: 10.17863/cam.89162
发表时间: 2022
期刊:
影响因子: --
作者: [Ellermann E]
通讯作者: Ellermann E
国内基金
海外基金
低熔点高韧性可延性切削牙科云母微晶玻璃陶瓷的应用基础研究
含过渡金属聚硅氮烷陶瓷前驱体的合成及其热解研究
  • 批准号:
    50403027
  • 项目类别:
    青年科学基金项目
  • 资助金额:
    23.0万元
  • 批准年份:
    2004
  • 负责人:
    郑知敏
  • 依托单位: