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培养的兔结膜上皮细胞分化和形态的底物调节

Substrate modulation of cultured rabbit conjunctival epithelial cell differentiation and morphology.

作者信息

Tsai R J, Tseng S C

机构信息

Bascom Palmer Eye Institute, Department of Ophthalmology, University of Miami School of Medicine, Florida 33101.

出版信息

Invest Ophthalmol Vis Sci. 1988 Oct;29(10):1565-76.

PMID:3049430
Abstract

This study demonstrated that growth and differentiation of rabbit conjunctival epithelial cells could be promoted by such substrata as collagen gel, matrigel or various mixtures of collagen and matrigel in a defined culture system. On conventional plastic or glass culture, the conjunctival epithelial cells adopted a monolayer of small epithelioid cells in primary cultures. They became enlarged, squamoid and exhibited notable senescence upon subcultures. On collagen gel, cells formed an organized monolayer sheet with cuboid shape and cell polarity. On matrigel, cells formed globules with stratified appearance including the basal layer of the outer part of globule and the squamoid cells of the central part of globule. The epithelial origin of these cultures was verified by the positive immunostaining of anti-keratin monoclonal antibodies. Expression of mucin antigen was lost on plastic or glass culture, but promoted on collagen gel or matrigel, as demonstrated by staining with periodic acid Schiff's reagent and anti-mucin monoclonal antibody stainings. These results indicate that both collagen gel and matrigel can provide a permissive substrate environment for goblet cell differentiation. Furthermore, this unique phenotypic expression may be possessed only by a selective cell subpopulation. This culture system will allow us to further explore the mechanism by which the goblet cell differentiation is controlled.

摘要

本研究表明,在特定培养体系中,胶原凝胶、基质胶或胶原与基质胶的各种混合物等基质可促进兔结膜上皮细胞的生长和分化。在传统的塑料或玻璃培养条件下,结膜上皮细胞在原代培养中形成单层小上皮样细胞。传代培养后,它们会变大、呈鳞状并表现出明显的衰老。在胶原凝胶上,细胞形成具有立方形形状和细胞极性的有组织的单层片。在基质胶上,细胞形成具有分层外观的球体,包括球体外部的基底层和球体中心部分的鳞状细胞。通过抗角蛋白单克隆抗体的阳性免疫染色证实了这些培养物的上皮起源。如用高碘酸希夫试剂染色和抗粘蛋白单克隆抗体染色所示,粘蛋白抗原的表达在塑料或玻璃培养上丧失,但在胶原凝胶或基质胶上得到促进。这些结果表明,胶原凝胶和基质胶都可为杯状细胞分化提供适宜的底物环境。此外,这种独特的表型表达可能仅由选择性细胞亚群所具有。这种培养系统将使我们能够进一步探索杯状细胞分化的控制机制。

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