Suppr超能文献

[椎间盘组织发生过程中胶原纤维的结晶与溶解]

[Crystallization and dissolution of collagen fibrils during the histogenesis of the intervertebral disk].

作者信息

Knese K H

出版信息

Acta Anat (Basel). 1978;100(3):328-46.

PMID:74184
Abstract

We studied the modifications of collagen fibrils during the histogenesis of the intervertebral disc of cats. In connexion with these studies it is necessary to distinguish between the fibrillar (functional) structure, the arrangement of fibrils, and the nature of fibrils, their diameter, period and other properties. Collagen fibrils (40--50 nm) of the anulus fibrosus enter in hyaline cartilage and split off in thin fibrils (8--10 nm). In this area the cartilage fibrils have a diameter of 20--22 nm, in a greater distance the diameter is diminished to 7--8 nm. Analogous to the changing of the nature of fibrils, the number of the cells related to the sectional area is diminished. The cells of the anulus fibrosus resemble those of tendons. In the transition area their shape becomes roundish, the number of granular membranes is increased, a voluminous Golgi-Apparatus appears for a short time. Finally, the cells are once transformed in cartilage cells with a small reticulum or cells of fibrocartilage with a capsule and a decreased cytoplasm; some cells are disintegrated. In the capsule of the fibrocartilage cells, parallel orientated filaments exhibit a periodical arrangement. In the border of the capsule, filaments change into periodical fibrils. Therefore, we must regard cells and their surrounding intercellular substance as metabolic unity which in the cartilage may be characterized as the chondron.

摘要

我们研究了猫椎间盘组织发生过程中胶原纤维的变化。在这些研究中,有必要区分纤维状(功能性)结构、纤维排列以及纤维的性质、直径、周期和其他特性。纤维环的胶原纤维(40 - 50纳米)进入透明软骨并分裂成细纤维(8 - 10纳米)。在这个区域,软骨纤维直径为20 - 22纳米,在更远的距离处直径减小到7 - 8纳米。与纤维性质的变化类似,与横截面积相关的细胞数量减少。纤维环的细胞类似于肌腱细胞。在过渡区域,它们的形状变得近似圆形,颗粒膜的数量增加,大量的高尔基体短时间出现。最后,细胞会转变成具有小网状结构的软骨细胞或具有包膜且细胞质减少的纤维软骨细胞;一些细胞会解体。在纤维软骨细胞的包膜中,平行排列的细丝呈现周期性排列。在包膜边缘,细丝转变为周期性纤维。因此,我们必须将细胞及其周围的细胞间物质视为一个代谢整体,在软骨中这个整体可被描述为软骨单位。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验