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Parathyroid hormone-related peptide-depleted mice show abnormal epiphyseal cartilage development and altered endochondral bone formation

机译:甲状旁腺激素相关的肽耗竭小鼠表现出异常的epi骨软骨发育和改变的软骨内骨形成

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摘要

To elucidate the role of PTHrP in skeletal development, we examined the proximal tibial epiphysis and metaphysis of wild-type (PTHrP-normal) 18- 19-d-old fetal mice and of chondrodystrophic litter mates homozygous for a disrupted PTHrP allele generated via homologous recombination in embryonic stem cells (PTHrP-depleted). In the PTHrP-normal epiphysis, immunocytochemistry showed PTHrP to be localized in chondrocytes within the resting zone and at the junction between proliferative and hypertrophic zones. In PTHrP-depleted epiphyses, a diminished [3H]thymidine-labeling index was observed in the resting and proliferative zones accounting for reduced numbers of epiphyseal chondrocytes and for a thinner epiphyseal plate. In the mutant hypertrophic zone, enlarged chondrocytes were interspersed with clusters of cells that did not hypertrophy, but resembled resting or proliferative chondrocytes. Although the overall content of type II collagen in the epiphyseal plate was diminished, the lacunae of these non-hypertrophic chondrocytes did react for type II collagen. Moreover, cell membrane-associated chondroitin sulfate immunoreactivity was evident on these cells. Despite the presence of alkaline phosphatase activity on these nonhypertrophic chondrocytes, the adjacent cartilage matrix did not calcify and their persistence accounted for distorted chondrocyte columns and sporadic distribution of calcified cartilage. Consequently, in the metaphysis, bone deposited on the irregular and sparse scaffold of calcified cartilage and resulted in mixed spicules that did not parallel the longitudinal axis of the tibia and were, therefore, inappropriate for bone elongation. Thus, PTHrP appears to modulate both the proliferation and differentiation of chondrocytes and its absence alters the temporal and spatial sequence of epiphyseal cartilage development and of subsequent endochondral bone formation necessary for normal elongation of long bones.
机译:为了阐明PTHrP在骨骼发育中的作用,我们检查了野生型(PTHrP正常)18-19d胎儿小鼠和软骨营养不良同伴纯合的近端胫骨骨physi和干physi端,通过同源产生了破坏的PTHrP等位基因胚胎干细胞中重组(PTHrP耗尽)。在PTHrP正常的骨physi中,免疫细胞化学显示PTHrP定位于休息区以及增生区和肥厚区之间的交界处的软骨细胞中。在PTHrP耗尽的骨phy中,在静息区和增生区观察到[3H]胸苷标记指数降低,这说明骨epi软骨细胞数量减少和骨plate板变薄。在突变型肥大区,扩大的软骨细胞散布着不肥大,但类似于静止或增生的软骨细胞的细胞簇。尽管the骨板中II型胶原蛋白的总含量减少了,但这些非肥大性软骨细胞的腔隙确实与II型胶原蛋白反应。而且,在这些细胞上细胞膜相关的硫酸软骨素的免疫反应性是明显的。尽管在这些非肥大性软骨细胞上存在碱性磷酸酶活性,但相邻的软骨基质未钙化,其持久性导致软骨细胞柱畸变和钙化软骨的散布分布。因此,在干physi端,骨骼沉积在钙化软骨的不规则稀疏支架上,导致混合的针刺不平行于胫骨纵轴,因此不适合骨骼延长。因此,PTHrP似乎可以调节软骨细胞的增殖和分化,而PTHrP的缺失会改变epi骨软骨发育的时间和空间顺序,以及随后的长骨正常伸长所必需的软骨内骨形成。

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