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解决生长板下游的小梁骨代谢骨轮廓增加了小鼠模型中骨组织形态计量学的价值。

Resolving trabecular metaphyseal bone profiles downstream of the growth plate adds value to bone histomorphometry in mouse models.

机构信息

Bruker Belgium (microCT), Preclinical Imaging, Kontich, Belgium.

Skeletal Biology Group, Comparative Biomedical Sciences, Royal Veterinary College, London, United Kingdom.

出版信息

Front Endocrinol (Lausanne). 2023 Mar 30;14:1158099. doi: 10.3389/fendo.2023.1158099. eCollection 2023.

Abstract

INTRODUCTION

Histomorphometry of rodent metaphyseal trabecular bone, by histology or microCT, is generally restricted to the mature secondary spongiosa, excluding the primary spongiosa nearest the growth plate by imposing an 'offset'. This analyses the bulk static properties of a defined segment of secondary spongiosa, usually regardless of proximity to the growth plate. Here we assess the value of trabecular morphometry that is spatially resolved according to the distance 'downstream' of-and thus time since formation at-the growth plate. Pursuant to this, we also investigate the validity of including mixed primary-secondary spongiosal trabecular bone, extending the analysed volume 'upstream' by reducing the offset. Both the addition of spatiotemporal resolution and the extension of the analysed volume have potential to enhance the sensitivity of detection of trabecular changes and to resolve changes occurring at different times and locations.

METHOD

Two experimental mouse studies of trabecular bone are used as examples of different factors influencing metaphyseal trabecular bone: (1) ovariectomy (OVX) and pharmacological prevention of osteopenia and (2) limb disuse induced by sciatic neurectomy (SN). In a third study into offset rescaling, we also examine the relationship between age, tibia length, and primary spongiosal thickness.

RESULTS

Bone changes induced by either OVX or SN that were early or weak and marginal were more pronounced in the mixed primary-secondary upstream spongiosal region than in the downstream secondary spongiosa. A spatially resolved evaluation of the entire trabecular region found that significant differences between experimental and control bones remained undiminished either right up to or to within 100 μm from the growth plate. Intriguingly, our data revealed a remarkably linear downstream profile for fractal dimension in trabecular bone, arguing for an underlying homogeneity of the (re)modelling process throughout the entire metaphysis and against strict anatomical categorization into primary and secondary spongiosal regions. Finally, we find that a correlation between tibia length and primary spongiosal depth is well conserved except in very early and late life.

CONCLUSIONS

These data indicate that the spatially resolved analysis of metaphyseal trabecular bone at different distances from the growth plate and/or times since formation adds a valuable dimension to histomorphometric analysis. They also question any rationale for rejecting primary spongiosal bone, in principle, from metaphyseal trabecular morphometry.

摘要

简介

通过组织学或 microCT 对啮齿动物骺板骨的组织形态计量学进行分析,通常仅限于成熟的次级松质骨,通过施加“偏移”来排除最接近生长板的初级松质骨。这种方法分析了次级松质骨的一个定义段的大体静态特性,通常与生长板的位置无关。在这里,我们根据距生长板的“下游”距离(即距形成时间)对松质骨的组织形态计量进行空间分辨率评估。根据这一点,我们还研究了包含混合初级-次级松质骨的组织形态计量的有效性,通过减少偏移量来扩展分析体积“上游”。增加时空分辨率和扩展分析体积都有可能提高对松质骨变化的检测敏感性,并解决不同时间和位置发生的变化。

方法

使用两个实验性小鼠的研究作为不同因素影响骺板骨的例子:(1)卵巢切除术(OVX)和预防骨质疏松症的药物治疗;(2)坐骨神经切断术(SN)引起的肢体废用。在第三个关于偏移量重新缩放的研究中,我们还检查了年龄、胫骨长度和初级松质骨厚度之间的关系。

结果

OVX 或 SN 引起的早期或弱且边缘性的骨变化在混合的初级-次级“上游”松质骨区域比在次级松质骨区域更为明显。对整个松质骨区域进行空间分辨率评估发现,实验骨和对照骨之间的显著差异无论是在生长板处还是在距离生长板 100 μm 以内都没有减弱。有趣的是,我们的数据显示,在松质骨的分形维数中存在一个非常线性的下游分布,这表明(再)塑造过程在整个骺板中具有明显的同质性,反对将其严格地划分为初级和次级松质骨区域。最后,我们发现胫骨长度和初级松质骨深度之间存在很好的相关性,除了在生命早期和晚期之外。

结论

这些数据表明,从生长板的不同距离和/或形成时间对骺板松质骨进行空间分辨率分析为组织形态计量分析增加了一个有价值的维度。它们还质疑了从原则上拒绝骺板松质骨进行组织形态计量分析的任何理由。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/66e5/10102859/f94916d2ad75/fendo-14-1158099-g001.jpg

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