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基质和类视黄醇对体外气道上皮细胞黏液分泌分化的影响。

Effect of substratum and retinoids upon the mucosecretory differentiation of airway epithelial cells in vitro.

作者信息

Rearick J I, Jetten A M

机构信息

Department of Biochemistry, Kirksville College of Osteopathic Medicine, MO 63501.

出版信息

Environ Health Perspect. 1989 Mar;80:229-37. doi: 10.1289/ehp.8980229.

Abstract

The lining of the trachea consists of a pseudostratified, mucociliary epithelium that under a variety of conditions, such as vitamin A deficiency, toxic and mechanical injury, becomes a stratified squamous epithelium. Several in vitro cell culture models have been established to study the regulation of the mucosecretory phenotype. Such studies have indicated that the mucosecretory phenotype in tracheal epithelial cells can be modulated by substratum and the presence of retinoids. Cells grown on a collagen type I gel matrix in the absence of retinoids undergo stratification and squamous cell differentiation. Cells grown on a collagen gel matrix in the presence of retinoids express a mucosecretory phenotype. As in the normal tracheal epithelium, these cultures contain columnar, polarized cells that exhibit apical tight junctions and secretory granules. Biochemical analysis of radiolabeled glycoconjugates released into the medium indicate the synthesis of mucinlike glycoproteins. Retinoids appear to determine whether tracheal epithelial cells become committed to a pathway of squamous differentiation or to a mucosecretory pathway of differentiation. The collagen gel matrix appears not to determine the commitment of the pathway of differentiation but allows the expression of the secretory phenotype in retinoic acid-treated cultures. The mechanisms by which retinoids and substratum modulate differentiation in tracheal epithelial cells is still poorly understood. It is clear that differentiation into squamous or mucous cells requires the activation and suppression of different genes. In the case of retinoids, the alterations in gene activity may be mediated by the nuclear retinoic acid receptor. In summary, in tracheal epithelial cells the substratum and extracellular matrix in conjunction with hormonal factors such as retinoids determine the ultimate function of these cells.

摘要

气管内衬由假复层黏液纤毛上皮组成,在多种情况下,如维生素A缺乏、毒性和机械损伤时,会变成复层鳞状上皮。已经建立了几种体外细胞培养模型来研究黏液分泌表型的调控。此类研究表明,气管上皮细胞中的黏液分泌表型可受基质和视黄酸的存在调节。在没有视黄酸的情况下,生长在I型胶原凝胶基质上的细胞会发生分层和鳞状细胞分化。在有视黄酸的情况下,生长在胶原凝胶基质上的细胞表达黏液分泌表型。与正常气管上皮一样,这些培养物含有柱状、极化的细胞,这些细胞表现出顶端紧密连接和分泌颗粒。对释放到培养基中的放射性标记糖缀合物的生化分析表明,有黏蛋白样糖蛋白的合成。视黄酸似乎决定气管上皮细胞是走向鳞状分化途径还是黏液分泌分化途径。胶原凝胶基质似乎并不决定分化途径的走向,但能使视黄酸处理的培养物中分泌表型得以表达。视黄酸和基质调节气管上皮细胞分化的机制仍知之甚少。显然,向鳞状或黏液细胞的分化需要激活和抑制不同的基因。就视黄酸而言,基因活性的改变可能由核视黄酸受体介导。总之,在气管上皮细胞中,基质和细胞外基质与视黄酸等激素因子共同决定这些细胞的最终功能。

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How does the extracellular matrix direct gene expression?细胞外基质是如何指导基因表达的?
J Theor Biol. 1982 Nov 7;99(1):31-68. doi: 10.1016/0022-5193(82)90388-5.

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