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利用高分辨率微计算机断层扫描对 klotho 低表达小鼠的骨细胞陷窝进行大规模分析。

Large scale analysis of osteocyte lacunae in klotho hypomorphic mice using high-resolution micro-computed tomography.

机构信息

Department of Calcified Tissue Biology, Hiroshima University Graduate School of Biomedical and Health Sciences, Hiroshima, Japan.

Department of Molecular Genetics, University of Toronto, Toronto, Canada.

出版信息

Ann Anat. 2023 Oct;250:152142. doi: 10.1016/j.aanat.2023.152142. Epub 2023 Aug 10.

Abstract

BACKGROUND

Osteocytes are the most abundant cell type in adult bone, and the morphological characteristics of osteocytes and their lacunae appear to influence bone mass and fragility. Although conventional computed tomography (CT) has contributed greatly to advances in bone morphometry, capturing details of the entire hierarchical assembly, e.g., osteocyte lacuna parameters, has been limited by the analytical performance of CT (> 1 µm resolution).

METHODS

We used high-resolution (700 nm) micro-CT to evaluate and compare the osteocyte lacuna parameters over a large scale, i.e., in a maximum of about 45,700 lacunae (average), in tibial metaphyseal cortical bones of wild-type (WT) and αKlotho-hypomorphic (kl/kl) mice, the latter a model that exhibits osteopenia and aberrant osteocytes.

RESULTS

Of osteocyte lacuna parameters, lacunar surface per lacunar volume were significantly lower and lacuna diameter were significantly larger in kl/kl mice compared to WT mice. By analysis of individual osteocyte lacunae, we found that lacunar sphericity in kl/kl mice was higher than that in WT mice, and the diameters in the major and the minor axes were respectively lower and higher in kl/kl mice, especially at the proximal site of the region of interest.

CONCLUSION

We successfully assessed osteocyte lacuna parameters on the largest scale in mice reported to date and found that the shape of osteocyte lacunae of kl/kl mice are significantly different from those of WT mice. Although the mechanisms underlying the lacunar shape differences observed are not yet clear, changes in lacunar geometry are known to affect the transitions of strains to the osteocyte microenvironment and likely local osteocyte response(s). Thus, the fact that the differences are limited to the mesial region near the primary spongiosa suggests the likelihood of site-specific anomalies in mechanosensitive effects in kl/kl osteocytes with consequent site-specific effects bone metabolism and function.

摘要

背景

成骨细胞是成人骨骼中最丰富的细胞类型,成骨细胞及其腔隙的形态特征似乎影响骨量和脆性。尽管传统的计算机断层扫描(CT)极大地促进了骨形态计量学的发展,但由于 CT 的分析性能(> 1 µm 分辨率),捕捉整个层次结构的细节,例如成骨细胞腔隙参数,受到限制。

方法

我们使用高分辨率(700nm)微 CT 评估和比较了野生型(WT)和α Klotho 低表达型(kl/kl)小鼠胫骨骨干皮质骨中大量成骨细胞腔隙参数,即最大约 45700 个腔隙(平均值)。后者是一种表现出骨质疏松症和异常成骨细胞的模型。

结果

与 WT 小鼠相比,kl/kl 小鼠的成骨细胞腔隙参数中,腔隙表面体积比明显降低,腔隙直径明显增大。通过对单个成骨细胞腔隙的分析,我们发现 kl/kl 小鼠的腔隙球形度高于 WT 小鼠,且 kl/kl 小鼠的腔隙长轴和短轴直径分别降低和升高,尤其是在感兴趣区的近端。

结论

我们成功地评估了迄今为止在小鼠中报告的最大规模的成骨细胞腔隙参数,并发现 kl/kl 小鼠的成骨细胞腔隙形状与 WT 小鼠明显不同。虽然观察到的腔隙形状差异的机制尚不清楚,但腔隙几何形状的变化已知会影响应变向成骨细胞微环境的转变,并且可能会影响局部成骨细胞的反应。因此,差异仅限于靠近初级松质骨的近侧区域,这表明 kl/kl 成骨细胞的机械敏感效应可能存在特定部位的异常,从而导致特定部位的骨代谢和功能异常。

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