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Contrast-Enhanced Nanofocus X-Ray Computed Tomography Allows Virtual Three-Dimensional Histopathology and Morphometric Analysis of Osteoarthritis in Small Animal Models

机译:对比增强的纳米聚焦X射线计算机断层扫描技术可以在小型动物模型中进行虚拟三维组织病理学和骨关节炎的形态分析

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摘要

Objective: One of the early hallmarks of osteoarthritis (OA) is a progressive degeneration of the articular cartilage. Early diagnosis of OA-associated cartilage alterations would be beneficial for disease prevention and control, and for the development of disease-modifying treatments. However, early diagnosis is still hampered by a lack of quantifiable readouts in preclinical models. Design: In this study, we have shown the potency of contrast-enhanced nanofocus x-ray computed tomography (CE-nanoCT) to be used for virtual 3-dimensional (3D) histopathology in established mouse models for OA, and we compared with standard histopathology. Results: We showed the equivalence of CE-nanoCT images to histopathology for the modified Mankin scoring of the cartilage structure and quality. Additionally, a limited set of 3D cartilage characteristics measured by CE-nanoCT image analysis in a user-independent and semiautomatic manner, that is, average and maximum of the noncalcified cartilage thickness distribution and loss in glycosaminoglycans, was shown to be predictive for the cartilage quality and structure as can be evaluated by histopathological scoring through the use of an empirical model. Conclusions: We have shown that CE-nanoCT is a tool that allows virtual histopathology and 3D morphological quantification of multitissue systems, such as the chondro-osseous junction. It provides faster and more quantitative data on cartilage structure and quality compared with standard histopathology while eliminating user bias. CE-nanoCT thus should allow capturing subtle differences in cartilage characteristics, carefully mapping OA progression and, ultimately, asses the beneficial changes when testing a candidate disease-modifying treatment.
机译:目的:骨关节炎(OA)的早期标志之一是关节软骨的进行性退化。 OA相关的软骨改变的早期诊断将有利于疾病的预防和控制以及疾病改良疗法的发展。但是,由于临床前模型缺乏可量化的读数,早期诊断仍然受到阻碍。设计:在这项研究中,我们显示了增强的纳米聚焦X射线计算机断层扫描(CE-nanoCT)的潜力,可用于已建立的OA小鼠模型中的虚拟3维(3D)组织病理学,并将其与标准组织病理学。结果:我们证明了CE-nanoCT图像与组织病理学等价于软骨结构和质量的改良Mankin评分。此外,通过CE-nanoCT图像分析以用户独立和半自动的方式测量的有限3D软骨特征集,即未钙化软骨厚度分布的平均和最大值以及糖胺聚糖的损失,可预测该软骨可以通过使用经验模型通过组织病理学评分来评估其质量和结构。结论:我们已经表明,CE-nanoCT是一种工具,可用于虚拟组织病理学和3D形态学定量的多组织系统,例如软骨-骨连接。与标准组织病理学相比,它提供了关于软骨结构和质量的更快,更定量的数据,同时消除了用户偏见。因此,CE-nanoCT应该能够捕获软骨特征的细微差异,仔细绘制OA进展,并最终在测试候选疾病缓解疗法时评估有益的变化。

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