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矿化组织形成与体内机械局部环境的关系:利用小鼠缺损愈合模型进行时程定量分析。

The association between mineralised tissue formation and the mechanical local in vivo environment: Time-lapsed quantification of a mouse defect healing model.

机构信息

Institute for Biomechanics, ETH Zurich, Zurich, Switzerland.

Department of Biomedical Engineering and Institute for Complex Molecular Systems, Eindhoven University of Technology, Eindhoven, The Netherlands.

出版信息

Sci Rep. 2020 Jan 24;10(1):1100. doi: 10.1038/s41598-020-57461-5.

Abstract

An improved understanding of how local mechanical stimuli guide the fracture healing process has the potential to enhance clinical treatment of bone injury. Recent preclinical studies of bone defect in animal models have used cross-sectional data to examine this phenomenon indirectly. In this study, a direct time-lapsed imaging approach was used to investigate the local mechanical strains that precede the formation of mineralised tissue at the tissue scale. The goal was to test two hypotheses: 1) the local mechanical signal that precedes the onset of tissue mineralisation is higher in areas which mineralise, and 2) this local mechanical signal is independent of the magnitude of global mechanical loading of the tissue in the defect. Two groups of mice with femoral defects of length 0.85 mm (n = 10) and 1.45 mm (n = 9) were studied, allowing for distinct distributions of tissue scale strains in the defects. The regeneration and (re)modelling of mineralised tissue was observed weekly using in vivo micro-computed tomography (micro-CT), which served as a ground truth for resolving areas of mineralised tissue formation. The mechanical environment was determined using micro-finite element analysis (micro-FE) on baseline images. The formation of mineralised tissue showed strong association with areas of higher mechanical strain (area-under-the-curve: 0.91 ± 0.04, true positive rate: 0.85 ± 0.05) while surface based strains could correctly classify 43% of remodelling events. These findings support our hypotheses by showing a direct association between the local mechanical strains and the formation of mineralised tissue.

摘要

对局部机械刺激如何引导骨折愈合过程的深入了解,有可能增强临床治疗骨损伤的效果。最近在动物模型中对骨缺损的临床前研究使用了横截面数据来间接地研究这一现象。在这项研究中,采用直接的时变成像方法来研究在组织尺度上,在矿化组织形成之前的局部机械应变。研究目的是检验两个假设:1)在组织矿化之前,矿化区域的局部机械信号更高,2)该局部机械信号与组织在缺陷处的整体机械加载的大小无关。对长度为 0.85mm(n=10)和 1.45mm(n=9)的两组股骨缺损的小鼠进行了研究,这使得在缺陷中可以观察到不同的组织尺度应变分布。每周使用体内微计算机断层扫描(micro-CT)观察矿化组织的再生和(再)重塑,这为确定矿化组织形成区域提供了真实情况。使用微有限元分析(micro-FE)在基线图像上确定机械环境。矿化组织的形成与较高机械应变区域具有很强的相关性(曲线下面积:0.91±0.04,真阳性率:0.85±0.05),而基于表面的应变可以正确分类 43%的重塑事件。这些发现通过显示局部机械应变与矿化组织形成之间的直接关联,支持了我们的假设。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5786/6981157/3f484bd942c6/41598_2020_57461_Fig1_HTML.jpg

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