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首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >The alpha 2-adrenoceptor antagonist idazoxan is an agonist at 5-HT1A autoreceptors modulating serotonin synthesis in the rat brain in vivo.
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The alpha 2-adrenoceptor antagonist idazoxan is an agonist at 5-HT1A autoreceptors modulating serotonin synthesis in the rat brain in vivo.

机译:α2-肾上腺素能受体拮抗剂伊达唑烷是5-HT1A自体受体的激动剂,可在体内调节大鼠大脑中血清素的合成。

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The in vivo effects of the alpha 2-adrenoceptor idazoxan, rauwolscine and phentolamine on alpha 2-auto/heteroreceptors and 5-HT1A autoreceptors modulating the synthesis of dopaoradrenaline and 5-HTP/serotonin were assessed in rats, using the accumulation of dopa and 5-HTP after decarboxylase inhibition as a measure of the rate of tyrosine and tryptophan hydroxylation. The acute administration of idazoxan (0.1-40 mg/kg) induced a pronounced dose-dependent increase in the synthesis of dopa in the cerebral cortex (22-86%) and hippocampus (8-80%), as a consequence of the powerful blockade of alpha 2-autoreceptors. However, idazoxan did not increase the synthesis of 5-HTP in these brain regions, as it would have been expected by the concurrent blockade of alpha 2-heteroreceptors on serotonergic terminals. Instead, idazoxan decreased the synthesis of 5-HTP in the cerebral cortex (13-33%) and hippocampus (25-48%), suggesting that these inhibitory effects were mediated through activation of 5-HT1A autoreceptors. Similar results were obtained for rauwolscine. Pre-treatment of rats with the selective 5-HT1A receptor antagonist WAY100135 (10 mg/kg) fully antagonized the inhibitory effects of idazoxan (10 mg/kg) on 5-HTP synthesis, but it did not prevent the stimulatory effects of idazoxan on dopa synthesis. The results indicate that idazoxan is a potent and specific agonist at 5-HT1A autoreceptors modulating brain serotonin synthesis in vivo.
机译:使用多巴的积累,评估了大鼠体内α2肾上腺素受体氮杂唑烷,劳沃辛和苯妥拉明对α2自体/异体受体和5-HT1A自体受体调节多巴/去甲肾上腺素和5-HTP / 5-羟色胺合成的体内作用。脱羧酶抑制后的5-HTP作为酪氨酸和色氨酸羟化速率的量度。急性给药时,由于强力的作用,伊达唑烷(0.1-40 mg / kg)引起大脑皮层(22-86%)和海马(8-80%)中多巴的合成显着剂量依赖性增加。阻滞α2自体受体。但是,依达唑烷并未增加这些脑区域中5-HTP的合成,这是由于血清素能末端同时阻断α2-异受体所预期的。相反,伊达唑烷减少了大脑皮层(13-33%)和海马(25-48%)中5-HTP的合成,表明这些抑制作用是通过激活5-HT1A自身受体介导的。对于劳沃斯辛获得了相似的结果。用选择性5-HT1A受体拮抗剂WAY100135(10 mg / kg)预处理的大鼠完全拮抗了咪唑azo吨(10 mg / kg)对5-HTP合成的抑制作用,但并不能阻止咪唑x吨对5-HTP的刺激作用。多巴合成。结果表明,伊达唑烷在5-HT1A自体受体上是一种强效且特异性的激动剂,可调节体内脑5-羟色胺的合成。

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