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首页> 外文期刊>Calcified tissue international. >Skeletal analysis of the long bone abnormality (lbab/lbab) mouse, A novel chondrodysplastic C-type natriuretic peptide mutant
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Skeletal analysis of the long bone abnormality (lbab/lbab) mouse, A novel chondrodysplastic C-type natriuretic peptide mutant

机译:长骨异常(lbab / lbab)小鼠的骨骼分析,一种新型软骨发育不良的C型利钠肽突变体

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摘要

Long bone abnormality (lbab/lbab) is a strain of dwarf mice. Recent studies revealed that the phenotype is caused by a spontaneous mutation in the Nppc gene, which encodes mouse C-type natriuretic peptide (CNP). In this study, we analyzed the chondrodysplastic skeletal phenotype of lbab/lbab mice. At birth, lbab/lbab mice are only slightly shorter than their wild-type littermates. Nevertheless, lbab/lbab mice do not undergo a growth spurt, and their final body and bone lengths are only ~60% of those of wild-type mice. Histological analysis revealed that the growth plate in lbab/lbab mice, especially the hypertrophic chondrocyte layer, was significantly thinner than in wild-type mice. Overexpression of CNP in the cartilage of lbab/lbab mice restored their thinned growth plate, followed by the complete rescue of their impaired endochondral bone growth. Furthermore, the bone volume in lbab/lbab mouse was severely decreased and was recovered by CNP overexpression. On the other hand, the thickness of the growth plate of lbab/+ mice was not different from that of wild-type mice; accordingly, impaired endochondral bone growth was not observed in lbab/+ mice. In organ culture experiments, tibial explants from fetal lbab/lbab mice were significantly shorter than those from lbab/+ mice and elongated by addition of 10 -7 M CNP to the same extent as lbab/+ tibiae treated with the same dose of CNP. These results demonstrate that lbab/lbab is a novel mouse model of chondrodysplasia caused by insufficient CNP action on endochondral ossification.
机译:长骨畸形(lbab / lbab)是矮人小鼠的品系。最近的研究表明,该表型是由Nppc基因的自发突变引起的,该基因编码小鼠C型利钠肽(CNP)。在这项研究中,我们分析了lbab / lbab小鼠的软骨发育不良骨骼型。出生时,lbab / lbab小鼠仅比其野生型同窝仔稍短。然而,lbab / lbab小鼠并未经历突增,其最终的身体和骨骼长度仅为野生型小鼠的60%。组织学分析表明,lbab / lbab小鼠的生长板,特别是肥大的软骨细胞层,比野生型小鼠明显薄。 CNP在lbab / lbab小鼠软骨中的过表达恢复了其变薄的生长板,随后完全拯救了受损的软骨内骨生长。此外,lbab / lbab小鼠的骨量严重减少,并通过CNP过表达恢复。另一方面,lbab / +小鼠的生长板厚度与野生型小鼠没有差异。因此,在lbab / +小鼠中未观察到软骨内骨生长受损。在器官培养实验中,来自胎儿lbab / lbab小鼠的胫骨外植体明显短于来自lbab / +小鼠的胫骨外植体,并通过添加10 -7 M CNP延长至与用相同剂量的CNP处理的lbab / +胫骨相同的程度。这些结果表明,lbab / lbab是一种新的软骨发育不良的小鼠模型,该模型是由于CNP对软骨内骨化的作用不足而引起的。

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