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Cartilage–Specific Over-Expression of CCN Family Member 2/Connective Tissue Growth Factor (CCN2/CTGF) Stimulates Insulin-Like Growth Factor Expression and Bone Growth

机译:软骨特定的CCN家庭成员2 /结缔组织生长因子(CCN2 / CTGF)的过度表达刺激胰岛素样生长因子的表达和骨生长。

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摘要

Previously we showed that CCN family member 2/connective tissue growth factor (CCN2) promotes the proliferation, differentiation, and maturation of growth cartilage cells in vitro. To elucidate the specific role and molecular mechanism of CCN2 in cartilage development in vivo, in the present study we generated transgenic mice overexpressing CCN2 and analyzed them with respect to cartilage and bone development. Transgenic mice were generated expressing a ccn2/lacZ fusion gene in cartilage under the control of the 6 kb-Col2a1-enhancer/promoter. Changes in cartilage and bone development were analyzed histologically and immunohistologically and also by micro CT. Primary chondrocytes as well as limb bud mesenchymal cells were cultured and analyzed for changes in expression of cartilage–related genes, and non-transgenic chondrocytes were treated in culture with recombinant CCN2. Newborn transgenic mice showed extended length of their long bones, increased content of proteoglycans and collagen II accumulation. Micro-CT analysis of transgenic bones indicated increases in bone thickness and mineral density. Chondrocyte proliferation was enhanced in the transgenic cartilage. In in vitro short-term cultures of transgenic chondrocytes, the expression of col2a1, aggrecan and ccn2 genes was substantially enhanced; and in long-term cultures the expression levels of these genes were further enhanced. Also, in vitro chondrogenesis was strongly enhanced. IGF-I and IGF-II mRNA levels were elevated in transgenic chondrocytes, and treatment of non-transgenic chondrocytes with recombinant CCN2 stimulated the expression of these mRNA. The addition of CCN2 to non-transgenic chondrocytes induced the phosphorylation of IGFR, and ccn2-overexpressing chondrocytes showed enhanced phosphorylation of IGFR. Our data indicates that the observed effects of CCN2 may be mediated in part by CCN2-induced overexpression of IGF-I and IGF-II. These findings indicate that CCN2-overexpression in transgenic mice accelerated the endochondral ossification processes, resulting in increased length of their long bones. Our results also indicate the possible involvement of locally enhanced IGF-I or IGF-II in this extended bone growth.
机译:以前,我们显示CCN家族成员2 /结缔组织生长因子(CCN2)在体外可促进生长软骨细胞的增殖,分化和成熟。为了阐明CCN2在体内软骨发育中的特定作用和分子机制,在本研究中,我们生成了过表达CCN2的转基因小鼠,并就软骨和骨骼发育进行了分析。在6kb-Col2a1-增强子/启动子的控制下,产生了在软骨中表达ccn2 / lacZ融合基因的转基因小鼠。通过组织学和免疫组织学以及微型CT分析软骨和骨骼发育的变化。培养原代软骨细胞以及肢芽间充质细胞,分析软骨相关基因表达的变化,并用重组CCN2处理非转基因软骨细胞。新生的转基因小鼠显示出其长骨头的延长长度,蛋白聚糖含量的增加和胶原蛋白II的积累。转基因骨骼的Micro-CT分析表明骨骼厚度和矿物质密度增加。转基因软骨中软骨细胞的增殖得到增强。在转基因软骨细胞的体外短期培养中,col2a1,aggrecan和ccn2基因的表达显着增强。在长期培养中,这些基因的表达水平进一步提高。同样,体外软骨形成也被大大增强。在转基因软骨细胞中IGF-I和IGF-II mRNA水平升高,并且用重组CCN2处理非转基因软骨细胞刺激了这些mRNA的表达。向非转基因软骨细胞中添加CCN2会诱导IGFR的磷酸化,而过表达ccn2的软骨细胞会增强IGFR的磷酸化。我们的数据表明,观察到的CCN2的作用可能部分由CCN2诱导的IGF-I和IGF-II的过表达介导。这些发现表明,转基因小鼠中CCN2的过度表达加速了软骨内骨化过程,导致其长骨长度增加。我们的结果还表明,局部增强的IGF-I或IGF-II可能参与了这种延长的骨生长。

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