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The osteochondral ligament: a fibrous attachment between bone and articular cartilage in Rana catesbeiana

机译:骨软骨韧带:牛蛙(Rana catesbeiana)的骨与关节软骨之间的纤维附着

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The anuran epiphyseal cartilage shows a lateral expansion that covers the external surface of the bone, besides other features that distinguish it from the corresponding avian and mammalian structures. The fibrous structure that attaches the lateral cartilage to the bone was characterized in this work. It was designated osteochondral ligament (OCL) and presented two main areas. There was an inner area that was closer to the periosteal bone and contained a layer of osteoblasts and elongated cells aligned to and interspersed with thin collagen fibers. The thin processes of the cells in this area showed strong alkaline phosphatase activity. The outer area, which was closer to the cartilage, was rich in blood vessels and contained a few cells amongst thick collagen fibers. TRITC-phaloidin staining showed the cells of the inner area to be rich in F-actin, and were observed to form a net around the cell nucleus and to fill the cell processes which extended between the collagen fibers. Cells of the outer area were poor in actin cytoskeleton, while those associated with the blood vessels showed intense staining. Tubulin- staining was weak, regardless of the OCL region. The main fibers of the extracellular matrix in the OCL extended obliquely upwards from the cartilage to the bone. The collagen fibers inserted into the bone matrix as Sharpey's fibers and became progressively thicker as they made their way through the outer area to the cartilage. Immunocytochemistry showed the presence of type I and type III collagen. Microfibrils were found around the cells and amongst the collagen fibrils. These microfibrils were composed of either type VI collagen or fibrilin, as shown by immunocytochemistry. The results presented in this paper show that the osteochondral ligament of Rana catesbeiana is a complex and specialized fibrous attachment which guarantees a strong and flexible anchorage of the lateral articular cartilage to the periosteal bone shaft, besides playing a role in bone growth.
机译:除其他将其与相应的禽类和哺乳动物结构区分开的特征外,无头epi骨软骨还表现出覆盖骨外表面的横向扩展。这项工作的特点是将侧面软骨附着在骨骼上的纤维结构。它被称为骨软骨韧带(OCL),主要表现为两个方面。有一个更靠近骨膜骨的内部区域,其中包含一层成骨细胞和细长的细胞,这些细胞与薄的胶原蛋白纤维对齐并穿插其中。该区域中细胞的稀薄过程显示出强碱性磷酸酶活性。靠近软骨的外部区域富含血管,并且在较厚的胶原纤维中包含一些细胞。 TRITC-phaloidin染色显示内部区域的细胞富含F-肌动蛋白,并观察到在细胞核周围形成网状结构并填充在胶原纤维之间延伸的细胞过程。外部细胞的肌动蛋白细胞骨架较弱,而与血管相关的细胞则显示强烈的染色。无论OCL区域如何,微管蛋白染色均较弱。 OCL中细胞外基质的主要纤维从软骨向骨骼倾斜向上延伸。胶原纤维作为Sharpey的纤维插入骨基质中,并随着它们穿过外部区域到达软骨而逐渐变粗。免疫细胞化学显示I型和III型胶原蛋白的存在。在细胞周围和胶原纤维之间发现微纤维。如免疫细胞化学所示,这些微纤维由VI型胶原或纤维蛋白组成。本文显示的结果表明,蛙蛙的骨软骨韧带是复杂而专门的纤维附着物,除了在骨骼生长中发挥作用外,还保证了外侧关节软骨牢固而灵活地锚固在骨膜骨干上。

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