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首页> 外文期刊>Journal of Anatomy >Functional analysis of CTRP3/cartducin in Meckel's cartilage and developing condylar cartilage in the fetal mouse mandible.
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Functional analysis of CTRP3/cartducin in Meckel's cartilage and developing condylar cartilage in the fetal mouse mandible.

机译:胎鼠下颌骨中Meckel软骨和developing突软骨发育的CTRP3 / cartducin功能分析。

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CTRP3/cartducin, a novel C1q family protein, is expressed in proliferating chondrocytes in the growth plate and has an important role in regulating the growth of both chondrogenic precursors and chondrocytes in vitro. We examined the expression of CTRP3/cartducin mRNA in Meckel's cartilage and in condylar cartilage of the fetal mouse mandible. Based on in situ hybridization studies, CTRP3/cartducin mRNA was not expressed in the anlagen of Meckel's cartilage at embryonic day (E)11.5, but it was strongly expressed in Meckel's cartilage at E14.0, and then reduced in the hypertrophic chondrocytes at E16.0. CTRP3/cartducin mRNA was not expressed in the condylar anlagen at E14.0, but was expressed in the upper part of newly formed condylar cartilage at E15.0. At E16.0, CTRP3/cartducin mRNA was expressed from the polymorphic cell zone to the upper part of the hypertrophic cell zone, but was reduced in the lower part of the hypertrophic cell zone. CTRP3/cartducin-antisense oligodeoxynucleotide (AS-ODN) treatment of Meckel's cartilage and condylar anlagen from E14.0 using an organ culture system indicated that, after 4-day culture, CTRP3/cartducin abrogation induced curvature deformation of Meckel's cartilage with loss of the perichondrium and new cartilage formation. Aggrecan, type I collagen, and tenascin-C were simultaneously immunostained in this newly formed cartilage, indicating possible transformation from the perichondrium into cartilage. Further, addition of recombinant mouse CTRP3/cartducin protein to the organ culture medium with AS-ODN tended to reverse the deformation. These results suggest a novel function for CTRP3/cartducin in maintaining the perichondrium. Moreover, AS-ODN induced a deformation of the shape, loss of the perichondrium/fibrous cell zone, and disorder of the distinct architecture of zones in the mandibular condylar cartilage. Additionally, AS-ODN-treated condylar cartilage showed reduced levels of mRNA expression of aggrecan, collagen types I and X, and reduced BrdU-incorporation. These results suggest that CTRP3/cartducin is not only involved in the proliferation and differentiation of chondrocytes, but also contributes to the regulation of mandibular condylar cartilage.
机译:CTRP3 / cartducin是一种新型的C1q家族蛋白,在增殖板中的软骨细胞中表达,并且在调节体外软骨生成前体和软骨细胞的生长中具有重要作用。我们检查了胎鼠下颌骨的Meckel软骨和con突软骨中CTRP3 / cartducin mRNA的表达。根据原位杂交研究,CTRP3 / cartducin mRNA在胚胎第(E)11.5天未在Meckel软骨的胶原蛋白中表达,但在E14.0时在Meckel软骨中强烈表达,然后在E16的肥大软骨细胞中降低。 .0。 CTRP3 / cartducin mRNA在E14.0未在an突软骨中表达,但在E15.0在新形成的con突软骨的上部表达。在E16.0,CTRP3 / cartducin mRNA从多态性细胞区到肥大细胞区的上部表达,但在肥大细胞区的下部表达。 CTRP3 /卡丁二素反义寡聚脱氧核苷酸(AS-ODN)使用器官培养系统处理E14.0的Meckel软骨和an突软骨素表明,在培养4天后,CTRP3 / Cartducin消除会导致Meckel软骨曲率变形并失去软骨膜和新的软骨形成。在这个新形成的软骨中同时对Aggrecan,I型胶原蛋白和腱生蛋白C进行了免疫染色,表明可能从软骨膜转变为软骨。此外,向具有AS-ODN的器官培养基中添加重组小鼠CTRP3 /卡丁二素蛋白倾向于逆转变形。这些结果表明CTRP3 / cartducin在维持软骨膜中具有新功能。此外,AS-ODN会引起下颌con突软骨的形状变形,软骨膜/纤维细胞区域​​的丢失以及区域的独特结构紊乱。另外,经AS-ODN处理的con突软骨显示聚集蛋白聚糖,I型和X型胶原蛋白的mRNA表达水平降低,以及BrdU掺入水平降低。这些结果表明,CTRP3 /卡丁二素不仅参与软骨细胞的增殖和分化,而且还有助于下颌con突软骨的调节。

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