首页> 外文期刊>Journal of Anatomy >Cell and matrix modulation in prenatal and postnatal equine growth cartilage, zones of Ranvier and articular cartilage.
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Cell and matrix modulation in prenatal and postnatal equine growth cartilage, zones of Ranvier and articular cartilage.

机译:产前和产后产前的细胞和基质调节,Ranvier和关节软骨区域。

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摘要

Formation of synovial joints includes phenotypic changes of the chondrocytes and the organisation of their extracellular matrix is regulated by different factors and signalling pathways. Increased knowledge of the normal processes involved in joint development may be used to identify similar regulatory mechanisms during pathological conditions in the joint. Samples of the distal radius were collected from prenatal and postnatal equine growth plates, zones of Ranvier and articular cartilage with the aim of identifying Notch signalling components and cells with stem cell-like characteristics and to follow changes in matrix protein localisation during joint development. The localisation of the Notch signalling components Notch1, Delta4, Hes1, Notch dysregulating protein epidermal growth factor-like domain 7 (EGFL7), the stem cell-indicating factor Stro-1 and the matrix molecules cartilage oligomeric matrix protein (COMP), fibromodulin, matrilin-1 and chondroadherin were studied using immunohistochemistry. Spatial changes in protein localisations during cartilage maturation were observed for Notch signalling components and matrix molecules, with increased pericellular localisation indicating new synthesis and involvement of these proteins in the formation of the joint. However, it was not possible to characterise the phenotype of the chondrocytes based on their surrounding matrix during normal chondrogenesis. The zone of Ranvier was identified in all horses and characterised as an area expressing Stro-1, EGFL7 and chondroadherin with an absence of COMP and Notch signalling. Stro-1 was also present in cells close to the perichondrium, in the articular cartilage and in the fetal resting zone, indicating stem cell-like characteristics of these cells. The presence of stem cells in the articular cartilage will be of importance for the repair of damaged cartilage. Perivascular chondrocytes and hypertrophic cells of the cartilage bone interface displayed positive staining for EGFL7, which is a novel finding and suggests a role of EGFL7 in the vascular infiltration of growth cartilage.
机译:滑膜关节的形成包括软骨细胞的表型变化,并且其细胞外基质的组织受到不同因素和信号通路的调节。增加了关节开发中所涉及的正常过程的知识可用于识别关节病理条件下的类似调节机制。远端半径的样品由产前和产前的马生长板,Ranvier的区域和关节软骨收集,目的是识别Notch信号传导组分和具有干细胞状特征的细胞,并在联合开发期间遵循基质蛋白质定位的变化。 Notch信号传导组分Notch1,Delta4,Hes1,Notch Dysregulatch蛋白表皮生长因子样结构域7(EGFL7),茎细胞显示因子链1和基质分子软骨寡聚基蛋白(COMP),纤维蛋白,纤维蛋白,使用免疫组织化学研究了Matrilin-1和软骨糖蛋白。观察到Notch信号传导组分和基质分子的软骨成熟期间的蛋白质定位的空间变化,随着脑脑定位增加,表明这些蛋白质在接头的形成中的新合成和累积。然而,在正常的软骨发生期间,不可能基于其周围基质表征软骨细胞的表型。 Ranvier区域在所有马匹中鉴定,并表现为表达STRO-1,EGFL7和软骨素的区域,没有COMP和NOTCH信号传导。 STRO-1还存在于闭嘴耳网的细胞中,在关节软骨和胎儿静止区中,表明这些细胞的干细胞状特征。关节软骨中干细胞的存在对于修复受损软骨的性能是重要的。软骨骨界面的血管内软骨细胞和肥厚细胞显示EGFL7的阳性染色,这是一种新的发现,并表明EGFL7在生长软骨血管渗透中的作用。

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