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微 CT 分析揭示了年龄变化对斑马鱼颅面骨骼骨密度的影响。

Micro-CT analysis reveals the changes in bone mineral density in zebrafish craniofacial skeleton with age.

机构信息

Institute of Biomedical Engineering and Nanomedicine, National Health Research Institutes, Zhunan, Taiwan.

Institute of Molecular and Genomic Medicine, National Health Research Institutes, Zhunan, Taiwan.

出版信息

J Anat. 2023 Mar;242(3):544-551. doi: 10.1111/joa.13780. Epub 2022 Oct 18.

Abstract

Bone has multiple functions in animals, such as supporting the body for mobility. The zebrafish skeleton is composed of craniofacial and axial skeletons. It shares a physiological curvature and consists of a similar number of vertebrae as humans. Bone degeneration and malformations have been widely studied in zebrafish as human disease models. High-resolution imaging and different bone properties such as density and volume can be obtained using micro-computed tomography (micro-CT). This study aimed to understand the possible changes in the structure and bone mineral density (BMD) of the vertebrae and craniofacial skeleton with age (4, 12 and 24 months post fertilisation [mpf]) in zebrafish. Our data showed that the BMD in the vertebrae and specific craniofacial skeleton (mandibular arch, ceratohyal and ethmoid plate) of 12 and 24 mpf fish were higher than that of the 4 mpf fish. In addition, we found the age-dependent increase in BMD was not ubiquitously observed in facial bones, and such differences were not correlated with bone type. In summary, such additional information on the craniofacial skeleton could help in understanding bone development throughout the lifespan of zebrafish.

摘要

骨骼在动物中有多种功能,例如支撑身体以保持运动。斑马鱼的骨骼由颅面骨骼和轴骨骼组成。它具有与人类相似的生理弯曲度,并且由相似数量的脊椎骨组成。骨骼退化和畸形已在斑马鱼中作为人类疾病模型进行了广泛研究。使用微计算机断层扫描(micro-CT)可以获得高分辨率的图像和不同的骨骼特性,如密度和体积。本研究旨在了解随着年龄(受精后 4、12 和 24 个月)的变化,斑马鱼的脊椎骨和颅面骨骼的结构和骨矿物质密度(BMD)可能发生的变化。我们的数据表明,12 和 24 mpf 鱼的脊椎骨和特定颅面骨骼(下颌弓、软骨和筛板)的 BMD 高于 4 mpf 鱼。此外,我们发现 BMD 的年龄依赖性增加并非在面部骨骼中普遍观察到,并且这种差异与骨骼类型无关。总之,关于颅面骨骼的这些附加信息可以帮助我们了解斑马鱼整个生命周期中的骨骼发育。

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3
Skeletal Biology and Disease Modeling in Zebrafish.
J Bone Miner Res. 2021 Mar;36(3):436-458. doi: 10.1002/jbmr.4256. Epub 2021 Feb 18.
4
FaceBase 3: analytical tools and FAIR resources for craniofacial and dental research.
Development. 2020 Sep 21;147(18):dev191213. doi: 10.1242/dev.191213.
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Zebrafish: An Emerging Model for Orthopedic Research.
J Orthop Res. 2020 May;38(5):925-936. doi: 10.1002/jor.24539. Epub 2019 Dec 12.
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Dev Dyn. 2017 Nov;246(11):897-914. doi: 10.1002/dvdy.24566. Epub 2017 Sep 25.

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