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人视网膜色素上皮细胞体外生长特性及超微结构

Growth characteristics and ultrastructure of human retinal pigment epithelium in vitro.

作者信息

Flood M T, Gouras P, Kjeldbye H

出版信息

Invest Ophthalmol Vis Sci. 1980 Nov;19(11):1309-20.

PMID:7000727
Abstract

The in vitro growth characteristics and morphology of human retinal pigment epithelium (RPE) cells from adult donor eyes (15 to 100 years of age) have been studied. Although RPE cells are viable in culture for several months, only a fraction of the cells actually divide. Rapid cell proliferation and confluency of a culture occur from 10 to 30 days after seeding. The time for confluency is both age- and media-dependent; the number of cells that are potential dividers and contribute to confluency decreases with increasing donor age. Since melanolipofuscin granules do not form in vitro and are diluted by cell division, stationary (nondividing) cells can be distinguished from the dividing cells by the presence of dense clusters of melanolipofuscin granules in the stationary cells. Confluent cultures contain a monolayer of relatively clear polygonal cells with densely pigmented stationary cells scattered throughout. Stationary cells can often represent as much as 95% of the original RPE cell population. Ultrastructurally all cells appear epithelioid, with apical-basal polarity, junctional complexes, and cytoplasmic organization characteristic of RPE cells in vivo. Stationary cells are extremely large, with melanolipofuscin granules clustered around the nucleus. Melanolipofuscin is a unique marker for nondividing cells and may facilitate studies of the age-dependent loss of replicability of human RPE.

摘要

对来自成年供体眼睛(15至100岁)的人视网膜色素上皮(RPE)细胞的体外生长特性和形态进行了研究。尽管RPE细胞在培养中可存活数月,但实际上只有一小部分细胞会分裂。接种后10至30天,培养物会出现快速的细胞增殖和汇合。汇合所需的时间取决于年龄和培养基;随着供体年龄的增加,潜在分裂并导致汇合的细胞数量会减少。由于黑素脂褐素颗粒在体外不会形成,并且会因细胞分裂而稀释,因此静止(不分裂)细胞可通过静止细胞中密集的黑素脂褐素颗粒簇来与分裂细胞区分开来。汇合的培养物包含单层相对透明的多边形细胞,其中散布着色素沉着密集的静止细胞。静止细胞通常可占原始RPE细胞群体的95%之多。在超微结构上,所有细胞均呈上皮样,具有顶-基极性、连接复合体以及体内RPE细胞特有的细胞质组织。静止细胞极大,黑素脂褐素颗粒聚集在细胞核周围。黑素脂褐素是不分裂细胞的独特标志物,可能有助于研究人RPE与年龄相关的复制能力丧失。

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