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Quantitative description of collagen structure in the articular cartilage of the young and adult equine distal metacarpus

机译:年轻和成年马马掌骨远端关节软骨中胶原结构的定量描述

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The orientation and organisation of collagen fibrils play an important role in the mechanical functioning of the articular cartilage (AC) that covers the surfaces in the diarthrodial joints. In the adult animal, typically an arcade like 'Benninghoff structure' is found. Because the remodelling capacity of the collagen network in the adult animal is limited, this Benninghoff structure needs to develop before the animal reaches maturity, and it needs to develop correctly. The aim of this study is to use quantitative polarised light microscopy (qPLM) and scanning electron microscopy (SEM) techniques to investigate if this Benninghoff structure is already present in the young animal, and to quantitatively investigate possible differences in collagen structure in the equine distal metacarpus of the young and adult animal. In total, 21 forelimbs of 13 horses are used. In animals of age 10 months and older, we find an arcade like Benninghoff structure for the collagen fibril network in both the qPLM and SEM study. The qPLM study shows that the collagen's predominant orientation is parallel to the articular surface throughout the entire cartilage depth in two animals directly after birth. These findings are supported by SEM results on a foal. We conclude that structural remodelling of the collagen network in AC occurs in the first months after birth. Because animals start with collagen parallel to the articular surface and need to remodel this structure to a Benninghoff architecture, and because collagen structure is an important parameter for AC mechanics and mechanobiology, these results Suggest implications for AC epigenetics. (C) Koninklijke Brill NV, Leiden, 2008
机译:胶原原纤维的取向和组织在覆盖软骨组织关节表面的关节软骨(AC)的机械功能中起着重要作用。在成年动物中,通常会找到类似“本宁霍夫结构”的拱廊。由于成年动物胶原网络的重塑能力有限,因此该Benninghoff结构需要在动物成熟之前发育,并且需要正确发育。这项研究的目的是使用定量偏振光显微镜(qPLM)和扫描电子显微镜(SEM)技术来研究这种Benninghoff结构是否已存在于幼小动物中,并定量研究马远端胶原蛋白结构的可能差异。幼小和成年动物的掌骨。总共使用了13匹马的21个前肢。在10个月以上的动物中,我们在qPLM和SEM研究中都发现了类似Benninghoff结构的胶原纤维原纤维网络。 qPLM研究表明,刚出生的两只动物在整个软骨深度中,胶原蛋白的主要方向与关节表面平行。这些发现得到了马驹的SEM结果的支持。我们得出结论,AC中胶原网络的结构重塑发生在出生后的头几个月。由于动物从与关节表面平行的胶原蛋白开始,需要将该结构重塑为Benninghoff结构,并且由于胶原蛋白结构是AC力学和力学生物学的重要参数,因此这些结果暗示了AC表观遗传学的意义。 (C)Koninklijke Brill NV,莱顿,2008年

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