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使用 micro-CT 和 MRI 容积成像对成纤维细胞生长因子受体 3(FGFR3)型软骨发育不全小鼠模型进行骨骼特征分析。

Skeletal Characterization of the Fgfr3 Mouse Model of Achondroplasia Using Micro-CT and MRI Volumetric Imaging.

机构信息

Global Bioimaging Department, Translational In-vivo Models, Sanofi R&D Global Research Platform, 49 New York Avenue, Framingham, MA, 01701, United States.

Rare Diseases, Sanofi, 49 New York Avenue, Framingham, MA, 01701, USA.

出版信息

Sci Rep. 2018 Jan 11;8(1):469. doi: 10.1038/s41598-017-18801-0.

DOI:10.1038/s41598-017-18801-0
PMID:29323153
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5765052/
Abstract

Achondroplasia, the most common form of dwarfism, affects more than a quarter million people worldwide and remains an unmet medical need. Achondroplasia is caused by mutations in the fibroblast growth factor receptor 3 (FGFR3) gene which results in over-activation of the receptor, interfering with normal skeletal development leading to disproportional short stature. Multiple mouse models have been generated to study achondroplasia. The characterization of these preclinical models has been primarily done with 2D measurements. In this study, we explored the transgenic model expressing mouse Fgfr3 containing the achondroplasia mutation G380R under the Col2 promoter (Ach). Survival and growth rate of the Ach mice were reduced compared to wild-type (WT) littermates. Axial skeletal defects and abnormalities of the sternebrae and vertebrae were observed in the Ach mice. Further evaluation of the Ach mouse model was performed by developing 3D parameters from micro-computed tomography (micro-CT) and magnetic resonance imaging (MRI). The 3-week-old mice showed greater differences between the Ach and WT groups compared to the 6-week-old mice for all parameters. Deeper understanding of skeletal abnormalities of this model will help guide future studies for evaluating novel and effective therapeutic approaches for the treatment of achondroplasia.

摘要

软骨发育不全症是最常见的侏儒症类型,影响全球超过 25 万人,仍是未满足的医疗需求。软骨发育不全症是由成纤维细胞生长因子受体 3(FGFR3)基因突变引起的,导致受体过度激活,干扰正常骨骼发育,导致不成比例的身材矮小。已经生成了多种小鼠模型来研究软骨发育不全症。这些临床前模型的特征主要是通过 2D 测量来完成的。在这项研究中,我们探索了在 Col2 启动子(Ach)下表达携带软骨发育不全突变 G380R 的小鼠 Fgfr3 的转基因模型(Ach)。与野生型(WT)同窝仔相比,Ach 小鼠的存活率和生长速度降低。在 Ach 小鼠中观察到轴向骨骼缺陷和胸骨和椎体的异常。通过从微计算机断层扫描(micro-CT)和磁共振成像(MRI)开发 3D 参数进一步评估 Ach 小鼠模型。与 6 周龄小鼠相比,3 周龄小鼠的所有参数在 Ach 和 WT 组之间显示出更大的差异。更深入地了解该模型的骨骼异常将有助于指导未来的研究,评估治疗软骨发育不全症的新型有效治疗方法。

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本文引用的文献

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The size and shape of the foramen magnum in man.人类枕骨大孔的大小和形状。
J Craniovertebr Junction Spine. 2017 Jul-Sep;8(3):205-221. doi: 10.4103/jcvjs.JCVJS_62_17.
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Activated FGFR3 prevents subchondral bone sclerosis during the development of osteoarthritis in transgenic mice with achondroplasia.激活的FGFR3可防止软骨发育不全转基因小鼠骨关节炎发展过程中的软骨下骨硬化。
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Pleckstrin homology (PH) domain and Leucine Rich Repeat Phosphatase 1 (Phlpp1) Suppresses Parathyroid Hormone Receptor 1 (Pth1r) Expression and Signaling During Bone Growth.pleckstrin 同源(PH)结构域和富含亮氨酸重复磷酸酶 1(Phlpp1)在骨骼生长过程中抑制甲状旁腺激素受体 1(Pth1r)的表达和信号转导。
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Macrocerebellum in Achondroplasia: A Further CNS Manifestation of Mutations?软骨发育不全症中的大脑小脑:突变的中枢神经系统表现?
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成纤维细胞生长因子受体 3 (FGFR3)活性嵌合突变型人软骨发育不全症小鼠模型用于研究人类骨骼发育不良
Sci Rep. 2017 Feb 23;7:43220. doi: 10.1038/srep43220.
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A New Method to Study Heterodimerization of Membrane Proteins and Its Application to Fibroblast Growth Factor Receptors.一种研究膜蛋白异源二聚化的新方法及其在成纤维细胞生长因子受体中的应用。
J Biol Chem. 2017 Jan 27;292(4):1288-1301. doi: 10.1074/jbc.M116.755777. Epub 2016 Dec 7.
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The neuropsychological function of children with achondroplasia.软骨发育不全患儿的神经心理功能。
Am J Med Genet A. 2016 Nov;170(11):2882-2888. doi: 10.1002/ajmg.a.37779. Epub 2016 Sep 8.
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Low bone mineral density in achondroplasia and hypochondroplasia.软骨发育不全和低软骨发育不全中的低骨矿物质密度。
Pediatr Int. 2016 Aug;58(8):705-8. doi: 10.1111/ped.12890. Epub 2016 Apr 5.
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Neutral endopeptidase-resistant C-type natriuretic peptide variant represents a new therapeutic approach for treatment of fibroblast growth factor receptor 3-related dwarfism.中性内肽酶抵抗型 C 型利钠肽变体为成纤维细胞生长因子受体 3 相关侏儒症的治疗提供了新的治疗方法。
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Endocrinology. 2015 Feb;156(2):548-54. doi: 10.1210/en.2014-1914. Epub 2014 Dec 2.