首页> 美国卫生研究院文献>other >A new open-source tool for measuring 3D osteocyte lacunar geometries from confocal laser scanning microscopy reveals age-related changes to lacunar size and shape in cortical mouse bone
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A new open-source tool for measuring 3D osteocyte lacunar geometries from confocal laser scanning microscopy reveals age-related changes to lacunar size and shape in cortical mouse bone

机译:一种新的开源工具可通过共聚焦激光扫描显微镜测量3D骨细胞腔隙的几何形状揭示了与年龄相关的皮质小鼠骨骼腔隙大小和形状的变化

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摘要

Osteocytes can participate in systemic mineral homeostasis through perilacunar maintenance and remodeling, where changes to osteocyte lacunar morphology may affect bone structural integrity, tissue strains, and osteocyte mechanosensitivity. Though aging is associated with both decreased bone quality and altered mineral metabolism, it is not known if osteocyte lacunae undergo age-related changes in geometry. In order to survey lacunar changes with age, we developed an open-source program whereby 3D osteocyte lacunae are automatically segmented and then subsequently reconstructed from confocal laser scanning microscopy (CLSM) depth stacks for quantitative analysis of geometry and orientation. This approach takes advantage of the availability and speed of CLSM while avoiding time-consuming and bias-prone manual segmentation. Unlike conventional approaches used to quantify osteocyte lacunar morphology, CLSM enables facile analysis in three-dimensions with clear identification of osteocyte lacunae. We report that 3D osteocyte lacunae measured by CLSM become smaller, more spherical, more oblate, more spatially disorganized, and more sparsely populated with increased age in C57Bl/6 mouse cortical bone in groups spanning 6 – 24 months old. Critically, these age-related changes are in large part not observed in 2D analyses from the same samples. These results (1) demonstrate proof-of-concept of an efficient method to quantitatively assess osteocyte lacunae in 3D for application to a wide range of studies and (2) motivate further inquiry into how changes to osteocyte lacunar geometries and perilacunar material contribute to diminished bone quality in aging.
机译:骨细胞可通过腔周围维持和重塑而参与全身性矿物质稳态,其中骨细胞腔隙形态的变化可能影响骨结构完整性,组织应变和骨细胞机械敏感性。尽管衰老与骨质量下降和矿物质代谢改变有关,但尚不知道骨细胞腔是否会发生与年龄相关的几何形状变化。为了调查随年龄变化的腔隙变化,我们开发了一个开源程序,该程序可自动分割3D骨细胞腔,然后从共聚焦激光扫描显微镜(CLSM)深度堆栈进行重建,以定量分析几何形状和方向。这种方法利用了CLSM的可用性和速度,同时避免了耗时且容易产生偏差的手动分段。与用于量化骨细胞腔形态的常规方法不同,CLSM可以在三维中轻松进行分析,并清楚地识别骨细胞腔。我们报告说,在年龄范围为6至24个月的C57Bl / 6小鼠皮质骨中,随着年龄的增长,通过CLSM测量的3D骨细胞腔变得更小,更球形,更扁圆,空间杂乱无章,人口稀少。至关重要的是,这些年龄相关的变化在相同样品的2D分析中基本上没有观察到。这些结果(1)证明了一种有效方法的概念验证,该方法可以定量地评估3D中的骨细胞腔,以应用于广泛的研究中;(2)进一步询问骨腔腔几何形状和腔周围物质的变化如何导致减少骨质老化。

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