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BAY x 3702对大鼠海马体和中缝背核中突触前和突触后5-HT1A受体的完全激动特性:电生理研究

Full agonistic properties of BAY x 3702 on presynaptic and postsynaptic 5-HT1A receptors electrophysiological studies in the rat hippocampus and dorsal raphe.

作者信息

Dong J, de Montigny C, Blier P

机构信息

Neurobiological Psychiatry Unit, McGill University, Montréal, Québec, Canada H3A 1A1.

出版信息

J Pharmacol Exp Ther. 1998 Sep;286(3):1239-47.

PMID:9732384
Abstract

The present studies evaluated the effects of acute and long-term administration of the 5-HT1A agonist BAY x 3702 on the responsiveness of dorsal raphe 5-HT neurons and of dorsal hippocampus CA3 pyramidal neurons. BAY x 3702 potently reduced the firing activity of 5-HT neurons and of CA3 pyramidal neurons when applied by microiontophoresis and this inhibitory effect of BAY x 3702 was fully antagonized by low intravenous doses of the 5-HT1A antagonist WAY 100635. Concurrent microiontophoretic application of BAY x 3702 did not antagonize the suppressant effect of 5-HT on firing activity of 5-HT and CA3 pyramidal neurons. Sustained administration of BAY x 3702 for 2 days (1 and 1.25 mg/kg/day using osmotic minipumps implanted subcutaneously) markedly decreased the firing rate of dorsal raphe 5-HT neurons. This was followed by a full recovery to normal after only 7 days of treatment. The postsynaptic 5-HT1A receptors in the hippocampus, contrary to the presynaptic 5-HT1A receptors, were not desensitized after a 14-day treatment. In conclusion, BAY x 3702 acted as a full and potent agonist both at somatodendritic 5-HT1A autoreceptors and at postsynaptic 5-HT1A receptors. Long-term administration of BAY x 3702 resulted in a desensitization of the somatodendritic 5-HT1A autoreceptors, but in an unaltered responsiveness of 5-HT1A receptors on pyramidal neurons. These results suggest that sustained administration of BAY x 3702 enhances neurotransmission at postsynaptic 5-HT1A receptors.

摘要

本研究评估了5-羟色胺1A(5-HT1A)受体激动剂BAY x 3702急性和长期给药对中缝背核5-羟色胺(5-HT)能神经元以及背侧海马CA3区锥体细胞神经元反应性的影响。通过微离子电泳施加BAY x 3702时,它能有效降低5-HT能神经元和CA3区锥体细胞神经元的放电活动,且低剂量静脉注射5-HT1A受体拮抗剂WAY 100635可完全拮抗BAY x 3702的这种抑制作用。同时进行微离子电泳施加BAY x 3702,并不会拮抗5-HT对5-HT能神经元和CA3区锥体细胞神经元放电活动的抑制作用。持续2天给予BAY x 3702(使用皮下植入的渗透微型泵,剂量为1和1.25毫克/千克/天),可显著降低中缝背核5-HT能神经元的放电频率。仅经过7天的治疗后,放电频率就完全恢复正常。与突触前5-HT1A受体相反,海马中的突触后5-HT1A受体在经过14天治疗后并未发生脱敏。总之,BAY x 3702在躯体树突状5-HT1A自身受体和突触后5-HT1A受体上均表现为完全且强效的激动剂。长期给予BAY x 3702会导致躯体树突状5-HT1A自身受体脱敏,但锥体细胞神经元上的5-HT1A受体反应性未发生改变。这些结果表明,持续给予BAY x 3702可增强突触后5-HT1A受体的神经传递。

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