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Non-destructive assessment of cell repopulation in scaffolds for osteochondral regeneration through X-ray phase-contrast microtomography

Non-destructive assessment of cell repopulation in scaffolds for osteochondral regeneration through X-ray phase-contrast microtomography
通过 X 射线相差显微断层扫描对骨软骨再生支架中的细胞增殖进行无损评估
批准号:
2872729
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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:
2023
资助国家:
英国
项目状态:
未结题
起止时间:
2023 至 --

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中文摘要
翻译
骨软骨组织工程是一个不断发展的领域,旨在了解和修复软骨与骨之间的连接。这个过程中的一个主要挑战是三维支架的表征及其与细胞的相互作用,特别是大多数可用的成像技术使用二维或样本破坏方法。x射线的独特之处在于它能够以非破坏性的深度穿透和高分辨率证明不透明组织的体积。当感兴趣的细节与背景的原子组成不同时,它们通常提供良好的对比,然而,当需要在相似类型的组织之间进行对比时,衰减差异的缺乏使传统的显微断层扫描方法变得无效。我们建议研究x射线相衬成像技术,通过提供一种能够可视化细胞迁移和支架再生的无损检测技术,来克服开发这些类型结构的障碍。该项目将涉及自下而上的成像方法开发,特别针对这些样品带来的挑战。接下来将进行实验,以证明新方法的能力及其与骨软骨再生研究工作流程的整合。一旦确定了该方法,将通过国家x射线断层扫描研究机构提供给工业界和学术界的研究人员。
英文摘要
Osteochondral tissue engineering is an expanding field aiming to understand and repair the enthesis between cartilage and bone. One major challenge in this process is the characterization of the three-dimensional scaffolds and their interaction with cells, particularly as most available imaging techniques use either 2D or sample-destructive approaches. X-rays are unique in their ability to prove volumes of opaque tissue with depth penetration and high resolution non-destructively. They usually provide good contrast when the details of interest are of different atomic compositions to the background, however, when contrast is needed between similar types of tissue the lack of differences in attenuation prevents the conventional approaches to microtomography from being effective. We proposed investigating X-ray phase contrast imaging techniques to overcome a roadblock in developing these types of constructs by providing a non-destructive inspection technology capable of visualising cell migration and scaffold repopulation. The project will involve a bottom-up development of the imaging methodology, specifically targeting the challenges posed by these samples. Experiments will follow for demonstrating the new approach's capabilities and its integration into osteochondral regeneration research workflows. Once established the methodology will be made available to researchers from Industry and Academia through the National Research Facility for X-ray Tomography.
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