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采用微计算机断层扫描技术对小动物生长板损伤模型进行特征描述。

Characterization of a small animal growth plate injury model using microcomputed tomography.

机构信息

Parker H. Petit Institute for Bioengineering and Bioscience, Georgia Institute of Technology, Atlanta, GA 30332, USA.

出版信息

Bone. 2010 Jun;46(6):1555-63. doi: 10.1016/j.bone.2010.02.017. Epub 2010 Feb 20.

Abstract

Injuries to the growth plate remain a significant clinical challenge. The need to better understand mechanisms of growth disruption following transphyseal injuries and evaluate new therapeutic approaches to growth restoration motivates development of a well characterized model of growth plate injury. The goals of this study were to develop a growth plate defect model in the rat and to use microcomputed tomography (micro-CT) imaging to detect and quantify associated changes in growth plate morphology and mineralization over time following injury and in response to treatment. Three-dimensional images of the growth plate were created from micro-CT scans and used to quantify the volume of mineralized tissue within the defect site. Growth plate thickness and volume as well as the degree of growth plate fusion were also measured from the reconstructed 3D images. Growth deficiency was then quantified as a function of time post-injury from whole limb micro-CT scans. Finally, this model was used to determine the ability of an injectable in situ gelling hydrogel to prevent formation of a bony bridge within the defect and the subsequent effect on limb length deficiency and changes to growth plate morphology. Growth plate injury resulted in significant shortening of the defect limb by day 28 and significant thinning and fusion of the surrounding growth plate up to day 112. Limb length reduction was correlated with changes in the growth plate volume and average thickness at day 56. Injection of an in situ gelling agarose into the defect resulted in a reduction of limb length discrepancy as well as a thicker growth plate on average compared to empty defect controls. These results establish a novel method of characterizing changes in whole bone and growth plate morphology due to a growth plate injury and indicate that treatment with agarose hydrogel reduces limb length discrepancy but is not sufficient to regenerate growth plate tissue or fully restore growth function.

摘要

骺板损伤仍然是一个重大的临床挑战。为了更好地了解骺板损伤后生长中断的机制,并评估新的生长恢复治疗方法,我们需要建立一个成熟的骺板损伤模型。本研究的目的是建立一种大鼠骺板缺损模型,并利用微计算机断层扫描(micro-CT)成像技术,在损伤后及治疗过程中,对骺板形态和矿化的变化进行检测和定量分析。从 micro-CT 扫描中生成骺板的三维图像,并用于定量分析缺损部位矿化组织的体积。还从重建的 3D 图像中测量骺板的厚度和体积以及骺板融合的程度。然后根据损伤后整个肢体 micro-CT 扫描的时间,定量计算生长缺陷。最后,该模型用于确定可注射原位凝胶水凝胶是否能够防止缺损内形成骨桥,以及随后对肢体长度缺陷和骺板形态变化的影响。骺板损伤导致缺损肢体在第 28 天显著缩短,周围骺板在第 112 天显著变薄和融合。肢体长度缩短与第 56 天骺板体积和平均厚度的变化相关。将原位凝胶琼脂注入缺损部位可减少肢体长度差异,与空缺陷对照组相比,平均而言骺板更厚。这些结果建立了一种新的方法来描述骺板损伤引起的整个骨骼和骺板形态的变化,并表明琼脂水凝胶治疗可减少肢体长度差异,但不足以再生骺板组织或完全恢复生长功能。

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