首页> 美国卫生研究院文献>Journal of Anatomy and Physiology >Keratan sulphate and the ultrastructure of cornea and cartilage: a stand-in for chondroitin sulphate in conditions of oxygen lack?
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Keratan sulphate and the ultrastructure of cornea and cartilage: a stand-in for chondroitin sulphate in conditions of oxygen lack?

机译:硫酸角质素和角膜和软骨的超微结构:在缺乏氧气的情况下硫酸软骨素的替代品?

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摘要

Corneas from mouse, rat and rabbit were analysed quantitatively and/or qualitatively for collagen and acid glycosaminoglycans. They were examined by light and electron microscopy, using Alcian blue and Cupromeronic blue, in critical electrolyte concentration methods, with or without digestion by hyaluronidase, chondroitinases and keratanase, for their sulphated glycosaminoglycan distributions. Glycosaminoglycan patterns were very different in the three species. Mouse lacked chemically detectable keratan sulphate, which was present in considerable amounts in rat and rabbit stroma. Mouse corneal stroma proteoglycan filaments were located predominantly at the gap zone of the collagen fibrils, mainly at the d band, with few at the a and c bands. Rat and rabbit micrographs were more complicated, with many proteoglycan filaments at the a and c, as well as the d and e bands. These findings support the proposal that the a and c bands were specific binding sites for keratan sulphate proteoglycan (Scott & Haigh, 1985b). Evidence from studies on cornea and cartilage suggests that keratan sulphate, rather than chondroitin sulphate is produced in conditions of O2 lack. Metabolic mechanisms which could account for this balance are proposed The production of uridine diphosphate glucuronic acid is the key step, which is sensitive to hypoxia, lactate and NAD:NADH ratios.
机译:对来自小鼠,大鼠和兔子的角膜进行了定量和/或定性的胶原蛋白和酸性糖胺聚糖分析。在重要的电解质浓缩方法中,使用或不使用透明质酸酶,软骨素酶和角质酶消化的硫酸盐糖胺聚糖分布,使用阿尔辛蓝和铜铬蓝通过光电子显微镜检查它们。在这三个物种中,糖胺聚糖的模式差异很大。小鼠缺乏化学可检测的硫酸角质素,大鼠和兔子基质中存在大量硫酸角质素。小鼠角膜基质蛋白聚糖丝主要位于胶原纤维的间隙区域,主要位于d波段,而很少位于a和c波段。大鼠和兔子的显微照片更为复杂,在a和c以及d和e带处有许多蛋白聚糖丝。这些发现支持了a和c带是硫酸角质素蛋白聚糖的特异性结合位点的提议(Scott&Haigh,1985b)。有关角膜和软骨研究的证据表明,在缺乏氧气的情况下会产生硫酸角质素而不是硫酸软骨素。提出了可以解释这种平衡的代谢机制。尿苷二磷酸葡萄糖醛酸的生产是关键步骤,它对缺氧,乳酸和NAD:NADH的比例敏感。

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