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培养的视网膜色素上皮细胞中的视黄酸代谢

Retinoic acid metabolism in cultured retinal pigment epithelial cells.

作者信息

Doyle J W, Dowgiert R K, Buzney S M

机构信息

Schepens Eye Research Institute, Boston, Massachusetts.

出版信息

Invest Ophthalmol Vis Sci. 1995 Mar;36(3):708-17.

PMID:7890501
Abstract

PURPOSE

To examine the stability of retinoic acid administered to cultured bovine retinal pigment epithelial (RPE) cells and to determine if RPE cells metabolize retinoic acid by a cytochrome P-450 mechanism.

METHODS

Retinoic acid metabolism was examined in cultured RPE cells and subcellular fractions quantitatively by a thin-layer chromatography procedure and qualitatively by normal and reverse phase high-performance liquid chromatography.

RESULTS

Cultured bovine RPE cells were found to have an activity that converts retinoic acid into more polar metabolites rapidly released from the cell. The highest specific activity for this process is found in the post-mitochondrial pellet (100,000g), is induced by retinoic acid, and is inhibited by ketoconazole. The major product of the RPE cell-mediated metabolism of retinoic acid is 4-oxo-retinoic acid, a known P-450 monooxygenase product of retinoic acid. The retinoic acid metabolizing activity is greatest in primary RPE cultures and decreases with aging in culture.

CONCLUSIONS

These data suggest that a cytochrome P-450 monooxygenase is involved in the metabolism of retinoic acid in RPE cells, and this is similar to the findings of other investigators using other cells and tissues. The authors' findings suggest that the RPE may be important in the deactivation of this biologically potent retinoid in the retina.

摘要

目的

研究给予培养的牛视网膜色素上皮(RPE)细胞视黄酸的稳定性,并确定RPE细胞是否通过细胞色素P - 450机制代谢视黄酸。

方法

采用薄层色谱法对培养的RPE细胞和亚细胞组分中的视黄酸代谢进行定量检测,并用正相和反相高效液相色谱法进行定性检测。

结果

发现培养的牛RPE细胞具有将视黄酸转化为更具极性的代谢产物并迅速从细胞中释放的活性。该过程的最高比活性存在于线粒体后沉淀(100,000g)中,受视黄酸诱导,并被酮康唑抑制。RPE细胞介导的视黄酸代谢的主要产物是4-氧代视黄酸,这是一种已知的视黄酸的P-450单加氧酶产物。视黄酸代谢活性在原代RPE培养物中最高,并随着培养时间的延长而降低。

结论

这些数据表明,细胞色素P - 450单加氧酶参与RPE细胞中视黄酸的代谢,这与其他研究人员使用其他细胞和组织的研究结果相似。作者的研究结果表明,RPE在视网膜中这种具有生物活性的类视黄醇的失活过程中可能很重要。

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