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胚胎期和成年期鸡晶状体纤维细胞的表面形态

The surface morphology of embryonic and adult chick lens-fiber cells.

作者信息

Kuszak J, Alcala J, Maisel H

出版信息

Am J Anat. 1980 Dec;159(4):395-410. doi: 10.1002/aja.1001590406.

Abstract

The surface morphology of lens fibers in embryonic and adult chicken lenses has been studied by scanning electron microscopy. As the elongating epithelial cells enter into a state of terminal differentiation they elaborate a number of cellular processes interconnecting neighboring fibers. The interlocking devices take the shapes of balls on a short stalk, tonguelike flaps, and fingerlike processes that fit into complementarily shaped sockets, imprints, and fingerprints, respectively, of adjoining fibers. Gap junctions comprising more than 50% of the fiber-cell membrane may serve as ultrastructural interlocking devices. The interlocking devices and gap junctions are probably necessary to maintain fiber order--a critical requirement for lens transparency. With increase maturation, the uniform morphology of the fibers and their interlocking devices is lost. The highly repetitive ordered alignment of young uniformly shaped fiber cells acts to minimize large-particle scatter. The results of this study show a progressive loss of uniform shape and order in chicken fibers of advanced maturity. This phenomenon of lens development may be the basis for the increase in light scattering seen in aged lenses of other species such as man.

摘要

通过扫描电子显微镜对胚胎期和成年期鸡晶状体中晶状体纤维的表面形态进行了研究。随着伸长的上皮细胞进入终末分化状态,它们会形成许多连接相邻纤维的细胞突起。这些相互锁定的结构呈现出短柄上的球状、舌状瓣以及指状突起的形状,分别与相邻纤维上互补形状的凹窝、印记和指纹相契合。占纤维细胞膜50%以上的缝隙连接可能作为超微结构的相互锁定结构。这些相互锁定结构和缝隙连接可能对于维持纤维排列顺序是必要的——这是晶状体透明度的关键要求。随着成熟度增加,纤维及其相互锁定结构的均匀形态丧失。年轻的形状均匀的纤维细胞高度重复的有序排列有助于使大颗粒散射最小化。本研究结果表明,成熟度较高的鸡纤维中形状和排列的均匀性逐渐丧失。晶状体发育的这种现象可能是其他物种(如人类)老化晶状体中光散射增加的基础。

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