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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >An increase in intracellular levels of cyclic AMP produces trophic effects on striatal neurons developing in culture.
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An increase in intracellular levels of cyclic AMP produces trophic effects on striatal neurons developing in culture.

机译:细胞内环状AMP含量的增加对培养中的纹状体神经元产生营养作用。

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Cyclic AMP-dependent kinases have been suggested to constitute signal transduction pathways involved in the regulation of neuronal development and survival. The present study examined whether elevated levels of cyclic AMP exhibit trophic activities on rat striatal neurons grown under serum-free culture conditions. Treatment with dibutyryl cyclic AMP, a permeable cyclic AMP, increased GABA uptake and immunocytochemically detectable levels of proteins such as c-Fos and calbindin-D28k. Neuronal survival was promoted by dibutyryl cyclic AMP only in lower density cultures. Chronic exposure of neurons to dibutyryl cyclic AMP enhanced the morphological development of calbindin-D28k-positive neurons. Furthermore, pretreatment with dibutyryl cyclic AMP afforded neuroprotection against N-methyl-D-aspartate-induced excitotoxicity. The dibutyryl cyclic AMP-induced trophic effects above were blocked by adenosine 3',5'-cyclic monophosphothioate, a specific inhibitor of cyclic AMP-dependent kinases. We also examined whether cyclic AMP is involved in trophic effects provided by membrane depolarization induced by high K+ and growth factors such as basic fibroblast growth factor and insulin-like growth factor-1. Depolarization, but not the growth factors, increased intracellular levels of cyclic AMP. Adenosine 3',5'-cyclic monophosphothioate diminished depolarization increases in GABA uptake, whereas it did not affect the trophic effect of the growth factors. Co-treatment with the growth factors and dibutyryl cyclic AMP produced additive effects on both increases in GABA uptake and neuroprotection against excitotoxicity. The present results indicate that cyclic AMP-dependent kinases play roles in mediating differentiation and survival of developing striatal neurons. Signalling pathways activated by either basic fibroblast growth factor or insulin-like growth factor-1 are independent of those involving cyclic AMP. In contrast, depolarization-induced trophic effects are mediated, at least in part, by cyclic AMP-dependent pathways. Protective actions of dibutyryl cyclic AMP against excitotoxic injury as well as the additive effects with the growth factors are of potential interest in the experimental therapy of acute or chronic neurodegenerative diseases.
机译:已建议环状AMP依赖性激酶构成参与神经元发育和存活调节的信号转导途径。本研究检查了在无血清培养条件下生长的大鼠纹状体神经元中,环状AMP的水平是否表现出营养活性。用二丁酰环状AMP,一种可渗透的环状AMP处理可以增加GABA的吸收,并通过免疫细胞化学方法检测到蛋白质的水平,例如c-Fos和calbindin-D28k。仅在较低密度的培养物中,二丁酰基环AMP促进神经元存活。神经元长期暴露于二丁酰环AMP可以增强calbindin-D28k阳性神经元的形态发育。此外,用二丁酰基环AMP预处理可提供针对N-甲基-D-天冬氨酸诱导的兴奋性毒性的神经保护作用。上面的二丁酰基环AMP诱导的营养作用被3',5'-环一硫代腺苷(一种环状AMP依赖性激酶的特异性抑制剂)阻断。我们还检查了环状AMP是否参与由高K +和生长因子(如碱性成纤维细胞生长因子和胰岛素样生长因子-1)诱导的膜去极化提供的营养作用。去极化而不是生长因子增加了细胞内环状AMP的水平。腺苷3',5'-环一硫代磷酸酯减少了去极化作用,增加了GABA的吸收,但它并不影响生长因子的营养作用。与生长因子和二丁酰基环状AMP的共同处理对GABA摄取增加和抗兴奋性毒性的神经保护均产生累加效应。目前的结果表明,环状AMP依赖性激酶在介导发育的纹状体神经元的分化和存活中发挥作用。碱性成纤维细胞生长因子或胰岛素样生长因子-1激活的信号通路与涉及环状AMP的信号通路无关。相反,去极化诱导的营养作用至少部分地由环AMP依赖性途径介导。在急性或慢性神经退行性疾病的实验治疗中,二丁酰基环AMP对兴奋性毒性损伤的保护作用以及与生长因子的累加作用可能引起人们的兴趣。

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