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Loss of ephrinB1 in osteogenic progenitor cells impedes endochondral ossification and compromises bone strength integrity during skeletal development

机译:成骨祖细胞中ephrinB1的丢失会阻碍软骨内骨化并损害骨骼发育过程中的骨强度完整性

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The EphB receptor tyrosine kinase family and their ephrinB ligands have been implicated as mediators of skeletal development and bone homeostasis in humans, where mutations in ephrinB1 contribute to frontonasal dysplasia and coronal craniosynostosis. In mouse models, ephrinB1 has been shown to be a critical factor mediating osteoblast function. The present study examined the functional importance of ephrinB1 during endochondral ossification using the Cre recombination system with targeted deletion of ephrinB1 (EfnB(fl/fl)) in osteogenic progenitor cells, under the control of the osterix (Osx:Cre) promoter. The Osx:EfnB1(-/-) mice displayed aberrant bone growth during embryonic and postnatal skeletal development up to 4 weeks of age, when compared to the Osx:Cre controls. Furthermore, compared to the Osx:Cre control mice, the Osx:EfnB1(-/-) mice exhibited significantly weaker and less rigid bones, with a reduction in trabecular/ cortical bone formation, reduced trabecular architecture and a reduction in the size of the growth plates at the distal end of the femora from newborn through to 4 weeks of age. The aberrant bone formation correlated with increased numbers of tartrate resistant acid phosphatase positive osteoclasts and decreased numbers of bone lining osteoblasts in 4 week old Osx:EfnB1(-/-) mice, compared to Osx:Cre control mice. Taken together, these observations demonstrate the importance of ephrinB1 signalling between cells of the skeleton required for endochondral ossification. (C) 2016 Elsevier Inc. All rights reserved.
机译:EphB受体酪氨酸激酶家族及其ephrinB配体已被认为是人类骨骼发育和骨稳态的介体,其中ephrinB1的突变会导致额鼻发育异常和冠状颅突。在小鼠模型中,ephrinB1已被证明是介导成骨细胞功能的关键因素。本研究检查了在骨皮质祖细胞中使用ephrinB1(EfnB(fl / fl))靶向缺失的Cre重组系统,在osterix(Osx:Cre)启动子的控制下,在软骨内骨化过程中ephrinB1的功能重要性。与Osx:Cre对照相比,Osx:EfnB1(-/-)小鼠在胚胎和出生后骨骼发育到4周龄期间显示出异常的骨骼生长。此外,与Osx:Cre对照小鼠相比,Osx:EfnB1(-/-)小鼠的骨骼明显较弱且刚性较弱,小梁/皮质骨形成减少,小梁结构减少,并且小骨的大小减小。从新生儿到4周龄的股骨远端生长板。与Osx:Cre对照小鼠相比,在4周龄的Osx:EfnB1(-/-)小鼠中,异常的骨形成与抗酒石酸酸性磷酸酶阳性的破骨细胞数量增加和骨壁成骨细胞数量减少相关。综上所述,这些观察结果证明了软骨素骨化所需骨架细胞之间ephrinB1信号的重要性。 (C)2016 Elsevier Inc.保留所有权利。

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