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Conditional disruption of the osterix gene in chondrocytes during early postnatal growth impairs secondary ossification in the mouse tibial epiphysis

机译:在初期后生长期间软骨细胞中Osterix基因的条件破坏在小鼠胫骨骨骺中的次级骨化

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In our previous studies, we have found that the prepubertal increase in thyroid hormone levels induces osterix (Osx) signaling in hypertrophic chondrocytes to transdifferentiate them into osteoblasts. To test if Osx expressed in chondrocytes directly contributes to transdifferentiation and secondary ossification, we generated Osxsup flox/flox /sup ; Col2-Cre-ERT2 mice and knocked out Osx with a single injection of tamoxifen at postnatal day (P) 3 prior to evaluation of the epiphyseal bone phenotype by μCT, histology, and immunohistochemistry (IHC) at P21. Vehicle (oil)-treated Osxsup flox/flox /sup ; Col2-Cre-ERT2 and tamoxifen-treated, Cre-negative Osxsup flox/flox /sup mice were used as controls. μCT analysis of tibial epiphyses revealed that trabecular bone mass was reduced by 23% in the Osx conditional knockout (cKO) compared with control mice. Trabecular number and thickness were reduced by 28% and 8%, respectively, while trabecular separation was increased by 24% in the cKO mice. Trichrome staining of longitudinal sections of tibial epiphyses showed that bone area and bone area adjusted for total area were decreased by 22% and 18%, respectively. IHC studies revealed the presence of abundant Osx-expressing prehypertrophic chondrocytes in the epiphyses of control mice at P10, but not in the cKO mice. Furthermore, expression levels of MMP13, COL10, ALP, and BSP were considerably reduced in the epiphyses of cKO mice. We also found that Osx overexpression in ATDC5 chondrocytes increased expression of Col10, Mmp13, Alp, and Bsp. Our data indicate that Osx expressed in chondrocytes plays a significant role in secondary ossification by regulating expression of genes involved in chondrocyte hypertrophy and osteoblast transdifferentiation.? The Author(s) 2019.
机译:在我们以前的研究中,我们发现甲状腺激素水平的预接种增加诱导肥胖软骨细胞中的Ostorix(OSX)信号传导,以将它们转化为成骨细胞。为了测试在软骨细胞中表达的osx直接有助于转移转移和次要骨化,我们产生了OSX FLOX / FLOX ; Col2-Cre-ERT2小鼠并在后期(P)3在评估膜骨表型以在P21的μCT,组织学和免疫组织化学(IHC)之前,在后期(P)3中敲除OSX。车辆(油)-Treated OSX 闪光灯/氟闪光灯; COL2-CRE-ERT2和三氧化氧处理的CRE阴性OSX 氟丝/氟菊酯小鼠用作对照。与对照小鼠相比,μCT分析胫骨膜骨骺透露,在OSX条件敲除(CKO)中,小梁骨量减少了23%。小梁数和厚度分别降低28%和8%,而CKO小鼠中的小梁分离增加了24%。胫骨膜骨骺的纵向剖面的三色染色表明,对于总面积调节的骨面积和骨面积分别降低22%和18%。 IHC研究表明,在P10的对照小鼠的骨骺中存在丰富的OSX表达疗法软骨细胞,但不在CKO小鼠中。此外,在CKO小鼠的骨骺中,MMP13,COL10,ALP和BSP的表达水平显着降低。我们还发现ATDC5软骨细胞中的OSX过表达增加了COL10,MMP13,ALP和BSP的表达。我们的数据表明,在软骨细胞中表达的OSX通过调节有涉及的软骨细胞肥大和成骨细胞转化转移的基因的表达在次级骨化中起着重要作用。作者2019年。

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