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褪黑素及其前体在Y79人视网膜母细胞瘤细胞中的作用:丁酸钠的影响

Melatonin and its precursors in Y79 human retinoblastoma cells: effect of sodium butyrate.

作者信息

Deng M H, Lopez G-Coviella I, Lynch H J, Wurtman R J

机构信息

Department of Brain and Cognitive Sciences, Massachusetts Institute of Technology, Cambridge 02139.

出版信息

Brain Res. 1991 Oct 11;561(2):274-8. doi: 10.1016/0006-8993(91)91604-y.

Abstract

We studied the release of melatonin and the production of its precursors, 5-hydroxytryptophan and serotonin, in cultured Y79 human retinoblastoma cells. This biosynthetic capability was found to be dependent on cell differentiation, which was initiated by culturing Y79 cells for 7 days in dishes coated with poly-D-lysine to promote cell adhesion to the surface of the culture dishes. Differentiation was further induced by exposing the cell monolayer to sodium butyrate (3 mM) for 3 days. This protocol dramatically increased the release of melatonin and the syntheses of 5-hydroxytryptophan and serotonin in response to forskolin stimulation. Exposure to dopamine (10 microM) or L-DOPA (100 microM) markedly diminished the forskolin-stimulated release of melatonin, as well as the production of 5-hydroxytryptophan and serotonin. These observations indicate that Y79 cells represent a primitive cell line which, following appropriate differentiation (e.g. treatment with sodium butyrate) can display biochemical characteristics similar to those of the human retina. Moreover, serotonin synthesis and melatonin release appear to be coupled in Y79 cells. The inhibition of melatonin release by dopamine supports the hypothesis that in these cells, melatonin and dopamine are components of a retinal feedback loop.

摘要

我们研究了培养的Y79人视网膜母细胞瘤细胞中褪黑素的释放及其前体5-羟色氨酸和血清素的生成。发现这种生物合成能力依赖于细胞分化,细胞分化通过在涂有聚-D-赖氨酸的培养皿中培养Y79细胞7天来启动,以促进细胞黏附于培养皿表面。通过将细胞单层暴露于丁酸钠(3 mM)3天进一步诱导分化。该方案显著增加了褪黑素的释放以及5-羟色氨酸和血清素的合成,以响应福斯可林刺激。暴露于多巴胺(10 microM)或L-多巴(100 microM)显著减少了福斯可林刺激的褪黑素释放以及5-羟色氨酸和血清素的生成。这些观察结果表明,Y79细胞代表一种原始细胞系,在经过适当分化(如用丁酸钠处理)后,可表现出与人类视网膜相似的生化特征。此外,血清素合成和褪黑素释放在Y79细胞中似乎是相关联的。多巴胺对褪黑素释放的抑制支持了这样一种假设,即在这些细胞中,褪黑素和多巴胺是视网膜反馈回路的组成部分。

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