首页> 美国卫生研究院文献>Journal of the Boston Society of Medical Sciences >Inhibition of epithelial cell adhesion by retinoic acid. Relationship to reduced extracellular matrix production and alterations in Ca2+ levels.
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Inhibition of epithelial cell adhesion by retinoic acid. Relationship to reduced extracellular matrix production and alterations in Ca2+ levels.

机译:维甲酸抑制上皮细胞粘附。与减少细胞外基质产生和Ca2 +水平改变的关系。

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摘要

Human squamous epithelial cells maintained in growth factor-deficient medium were examined for sensitivity to all-trans retinoic acid (retinoic acid). Under conditions of low external Ca2+ (0.15 mmol/l [millimolar]), or high external Ca2+ (1.4 mmol/l), retinoic acid stimulated proliferation. Concomitantly, cell-substrate adhesion was decreased. Enzyme-linked immunosorbent assays were used to assess production of two extracellular matrix components, ie, fibronectin and thrombospondin. In the presence of retinoic acid, production of both was decreased. Because both fibronectin and thrombospondin serve as epithelial cell adhesion factors, the decreased production of these moieties could contribute to reduced adhesion. Using 45Ca2+ to measure total cell-associated Ca2+ and the Ca2(+)-sensitive dye Indo-1 to measure intracellular free Ca2+, it was found that concentrations of retinoic acid that altered cell-substrate adhesion in the squamous epithelial cells had no effect on total, cell-associated Ca2+, but reduced intracellular free Ca2+ by 50% to 60%. Because Ca2+ is a regulator of adhesion, the ability of retinoic acid to modulate Ca2+ levels in the squamous epithelial cells may explain, in part, how retinoic acid influences their adhesiveness.
机译:检查在生长因子缺乏培养基中维持的人鳞状上皮细胞对全反式视黄酸(视黄酸)的敏感性。在低外部Ca2 +(0.15 mmol / l [mmol])或高外部Ca2 +(1.4 mmol / l)的条件下,视黄酸会刺激增殖。伴随地,细胞-基质粘附力降低。酶联免疫吸附测定法用于评估两种细胞外基质成分,即纤连蛋白和血小板反应蛋白的产生。在视黄酸的存在下,两者的产量均降低。因为纤连蛋白和血小板反应蛋白都充当上皮细胞粘附因子,所以这些部分的产生减少可能有助于减少粘附。使用45Ca2 +来测量与细胞相关的总Ca2 +以及使用Ca2(+)敏感染料Indo-1来测量细胞内游离Ca2 +,发现改变鳞状上皮细胞中细胞-基质粘附的视黄酸浓度对总细胞相关的Ca2 +,但细胞内游离Ca2 +降低了50%至60%。由于Ca2 +是黏附的调节剂,因此视黄酸调节鳞状上皮细胞中Ca2 +水平的能力可能部分解释了视黄酸如何影响其黏附性。

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