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首页> 外文期刊>Japanese Journal of Pharmacology >The Effects of Cinepazide on the Content, Biosynthesis and Turnover of Noradrenaline, Dopamine and 5-Hydroxytryptamine in the Rat Brain under Room Air and Hypoxia
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The Effects of Cinepazide on the Content, Biosynthesis and Turnover of Noradrenaline, Dopamine and 5-Hydroxytryptamine in the Rat Brain under Room Air and Hypoxia

机译:氯吡嗪对室内和低氧环境下大鼠脑中去甲肾上腺素,多巴胺和5-羟色胺的含量,生物合成和转换的影响

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摘要

References(23) Cited-By(2) The effects of cinepazide, a vasodilator, on the content, biosynthesis and turnover of noradrenaline (NA), dopamine (DA) and 5-hydroxytryptamine (5-HT) in the rat brain were examined under room air and hypoxia (10% O2, 90% N2). Under room air, cinepazide had no significant effects on the content of NA, DA, 5-HT and 5-hydroxyindoleacetic acid (5-HIAA), the accumulation of 3, 4-dihydroxyphenylalanine (DOPA) and 5-hydroxytryptophan (5-HTP) after central decarboxylase inhibition, and the depletion of NA, DA and 5-HT after synthesis inhibition. After 2 hr-exposure to hypoxia, the content of NA, 5-HT and 5-HIAA was decreased, whereas the content of DA was unchanged. The accumulation of DOPA and 5-HTP was decreased. The depletion of DA and 5-HT was inhibited by hypoxia, whereas the depletion of NA was unaffected. Under hypoxic conditions, cinepazide had no effects on the content of NA, DA and 5-HT, the accumulation of DOPA and 5-HTP, and the depletion of NA and DA, whereas cinepazide increased both the rate of 5-HT depletion and the content of 5-HIAA. The present data suggest that cinepazide selectively stimulates the functional activities of 5-HT neurons in the brain, which are depressed by hypoxia.
机译:参考文献(23)By(2)研究了血管扩张剂西哌齐对大鼠脑中去甲肾上腺素(NA),多巴胺(DA)和5-羟色胺(5-HT)的含量,生物合成和更新的影响在室内空气和缺氧条件下(10%的氧气,90%的氮气)。在室内空气中,桂哌齐特对NA,DA,5-HT和5-羟基吲哚乙酸(5-HIAA)的含量,3,4-二羟基苯丙氨酸(DOPA)和5-羟基色氨酸(5-HTP)的积累没有显着影响)抑制中央脱羧酶后,合成抑制后消耗NA,DA和5-HT。缺氧2小时后,NA,5-HT和5-HIAA的含量降低,而DA的含量保持不变。 DOPA和5-HTP的积累减少。缺氧抑制DA和5-HT的消耗,而NA的消耗不受影响。在缺氧条件下,塞那嗪对NA,DA和5-HT的含量,DOPA和5-HTP的积累以及NA和DA的消耗均无影响,而那西吡嗪却增加了5-HT的消耗率和5-HT的消耗。 5-HIAA的含量。目前的数据表明,西吡嗪选择性刺激大脑中5-HT神经元的功能活动,而该活动被缺氧所抑制。

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