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树鼩角膜的各层结构、胶原纤维和蛋白聚糖

Structure of corneal layers, collagen fibrils, and proteoglycans of tree shrew cornea.

作者信息

Almubrad Turki, Akhtar Saeed

机构信息

Cornea Research Chair, Department of Optometry and Vision Sciences, College of Applied Medical Sciences, King Saud University, Riyadh, Saudi Arabia.

出版信息

Mol Vis. 2011;17:2283-91. Epub 2011 Aug 25.

Abstract

PURPOSE

The stroma is the major part of the cornea, in which collagen fibrils and proteoglycans are distributed uniformly. We describe the ultrastructure of corneal layers, collagen fibrils (CF), and proteoglycans (PGs) in the tree shrew cornea.

METHODS

Tree shrew corneas (5, 6, and 10 week old animals) and normal human corneas (24, 25, and 54 years old) were fixed in 2.5% glutaraldehyde containing cuprolinic blue in a sodium acetate buffer. The tissue was processed for electron microscopy. The 'iTEM Olympus Soft Imaging Solutions GmbH' program was used to measure the corneal layers, collagen fibril diameters and proteoglycan areas.

RESULTS

The tree shrew cornea consists of 5 layers: the epithelium, Bowman's layer, stroma, Descemet's membrane, and endothelium. The epithelium was composed of squamous cells, wing cells and basal cells. The Bowman's layer was 5.5±1.0 µm thick and very similar to a normal human Bowman's layer. The stroma was 258±7.00 µm thick and consisted of collagen fibril lamellae. The lamellae were interlaced with one another in the anterior stroma, but ran parallel to one another in the middle and posterior stroma. Collagen fibrils were decorated with proteoglycan filaments with an area size of 390 ±438 nm(2). The collagen fibril had a minimum diameter of 39±4.25 nm. The interfibrillar spacing was 52.91±6.07 nm. Within the collagen fibrils, very small electron-dense particles were present.

CONCLUSIONS

The structure of the tree shrew cornea is very similar to that of the normal human cornea. As is the case with the human cornea, the tree shrew cornea had a Bowman's layer, lamellar interlacing in the anterior stroma and electron-dense particles within the collagen fibrils. The similarities of the tree shrew cornea with the human cornea suggest that it could be a good structural model to use when studying changes in collagen fibrils and proteoglycans in non-genetic corneal diseases, such as ectasia caused after LASIK (laser-assisted in situ keratomileusis).

摘要

目的

基质是角膜的主要部分,其中胶原纤维和蛋白聚糖均匀分布。我们描述树鼩角膜各层、胶原纤维(CF)和蛋白聚糖(PGs)的超微结构。

方法

将树鼩角膜(5周、6周和10周龄动物)和正常人角膜(24岁、25岁和54岁)固定于含碱性铜蓝的2.5%戊二醛醋酸钠缓冲液中。组织进行电子显微镜处理。使用“iTEM Olympus Soft Imaging Solutions GmbH”程序测量角膜各层、胶原纤维直径和蛋白聚糖面积。

结果

树鼩角膜由5层组成:上皮层、Bowman层、基质层、Descemet膜和内皮细胞层。上皮层由鳞状细胞、翼状细胞和基底细胞组成。Bowman层厚5.5±1.0 µm,与正常人Bowman层非常相似。基质层厚258±7.00 µm,由胶原纤维板层组成。板层在前基质中相互交织,但在中基质和后基质中彼此平行排列。胶原纤维上装饰有面积大小为390±438 nm²的蛋白聚糖细丝。胶原纤维的最小直径为39±4.25 nm。纤维间间距为52.91±6.07 nm。在胶原纤维内,存在非常小的电子致密颗粒。

结论

树鼩角膜的结构与正常人角膜非常相似。与人类角膜一样,树鼩角膜有Bowman层、前基质中的板层交织以及胶原纤维内的电子致密颗粒。树鼩角膜与人类角膜的相似性表明,在研究非遗传性角膜疾病(如准分子激光原位角膜磨镶术(LASIK)后引起的角膜扩张)中胶原纤维和蛋白聚糖的变化时,它可能是一个很好的结构模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3bc5/3171502/267ac10b30f9/mv-v17-2283-f1.jpg

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