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Histological assessment of osteoarthritis lesions in mice.

机译:小鼠骨关节炎病变的组织学评估。

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摘要

The pathogenesis of osteoarthritis (OA) in both humans and animals is poorly understood. Histological assessment of tissue samples from joints is the most accurate way to diagnose OA severity. Unfortunately, current histological assessment grading schemes, such as the Mankin Histological-Histochemical Grading System (HHGS), are subject to observer variability and are unable to accurately distinguish varying levels of disease severity. The goals of this project were to: (1) develop a novel histological grading scheme to assess OA lesions in mice, (2) apply this scheme to several studies in which OA severity is expected to be influenced by treatment, and (3) compare the reliability and validity of this newly developed scheme to the widely used Mankin HHGS.;Histological sections from the knee (stifle) joints from 5 studies (n=158 joints), including 2 studies using a surgically induced model and 3 studies of naturally occurring disease, were globally examined for changes associated with OA. Changes that were consistent were evaluated using histomorphometry or assigned a grade based on severity. The final scheme that was developed included 13 quantitative and 2 semi-quantitative parameters that evaluated changes in articular cartilage, chondrocytes, subchondral & periarticular bone, and meniscus. Principal Components Analysis combined these 15 parameters into 5 factors that globally evaluated changes in articular cartilage integrity, chondrocyte viability, subchondral bone, periarticular osteophytes, and menisci. This newly developed scheme was then applied to five studies of murine OA, and comparisons among intervention groups in the 15 parameters and 5 factors were evaluated. In addition, the original Mankin HHGS was applied to these same sections. The newly developed scheme identified numerous changes in several tissues in both surgically induced and naturally occurring disease and was able to characterize several changes associated with OA severity in the mouse. While the Mankin HHGS was able to identify significant differences in the surgically induced models, it overlooked changes associated with naturally occurring disease. Finally, a direct comparison between the two schemes revealed that the newly developed scheme was more reliable than the Mankin HHGS, and was also able to correctly distinguish the severities of OA as well as the Mankin HHGS.
机译:人们和动物对骨关节炎(OA)的发病机理了解甚少。组织学评估关节组织样本是诊断OA严重程度最准确的方法。不幸的是,当前的组织学评估分级方案,例如曼金组织学-组织化学分级系统(HHGS),受观察者变异性的影响,无法准确地区分疾病严重程度的不同水平。该项目的目标是:(1)开发一种新的组织学分级方案以评估小鼠的OA病变;(2)将该方案应用于几项预期会严重影响OA严重性的研究中;以及(3)比较这种新开发的方案对广泛使用的Mankin HHGS的可靠性和有效性。;来自5个研究(n = 158个关节)的膝关节(窒息)的组织学切片,包括2个使用外科手术模型进行的研究和3个自然发生的研究全面检查与OA相关的疾病。使用组织形态计量学评估一致的变化,或根据严重性指定等级。制定的最终方案包括13个定量和2个半定量参数,用于评估关节软骨,软骨细胞,软骨下和关节周围骨以及半月板的变化。主成分分析将这15个参数组合为5个因素,这些因素可全面评估关节软骨完整性,软骨细胞活力,软骨下骨,关节周围骨赘和半月板的变化。然后将该新开发的方案应用于五项鼠类OA研究,并评估了干预组在15个参数和5个因素方面的比较。此外,原始的Mankin HHGS也应用于这些相同的部分。新开发的方案在外科手术诱发的疾病和自然发生的疾病中识别了多个组织的许多变化,并且能够表征与小鼠OA严重程度相关的几种变化。尽管Mankin HHGS能够识别出手术诱发模型的显着差异,但它忽略了与自然疾病相关的变化。最后,两种方案的直接比较表明,新开发的方案比Mankin HHGS更可靠,并且还能够正确地区分OA和Mankin HHGS的严重程度。

著录项

  • 作者

    McNulty, Margaret Ann.;

  • 作者单位

    University of Minnesota.;

  • 授予单位 University of Minnesota.;
  • 学科 Biology Anatomy.;Health Sciences Pathology.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 182 p.
  • 总页数 182
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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