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首页> 外文期刊>Psychopharmacology >Alpha(1)-adrenergic and alpha(2)-adrenergic balance in the dorsal pons and gross behavioral activity of mice in a novel environment.
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Alpha(1)-adrenergic and alpha(2)-adrenergic balance in the dorsal pons and gross behavioral activity of mice in a novel environment.

机译:Alpha(1)-肾上腺素和alpha(2)-肾上腺素在新型环境中的小鼠的背桥和总行为活动中的平衡。

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RATIONALE: Central alpha(1)- and alpha(2)-adrenoceptors in a number of different brain regions are known to have opposing actions on gross behavioral activity, with the former stimulating and the latter inhibiting activity. Therefore, blockade of alpha(1)-receptors may induce inactivity by leading to unopposed alpha(2) activity. OBJECTIVE: The aim of this study was to test if central blockade of alpha(2)-receptor function restores behavioral activity in alpha(1)-receptor-blocked mice. METHODS: Dose-response studies were undertaken on the effects of alpha(1)- and alpha(2)-agonists and antagonists microinjected into the dorsal pons on gross behavioral activity in a novel cage test. RESULTS: The behavioral inactivity resulting from blockade of alpha(1)-receptors in the pons with the antagonist, terazosin, was reversed by either a low dose of an alpha(2)-antagonist, atipamezole, or a low dose of an alpha(2)-agonist, dexmedetomidine, but was exacerbated by a high dose of the alpha(2)-agonist. CONCLUSION: The results support the hypothesis that blockade of alpha(1)-receptors in the dorsal pons of mice produces inactivity by causing unopposed activity of alpha(2)-receptors. This condition may be relevant to inactive states seen after stress or during depressive illness.
机译:理由:已知许多不同大脑区域的中央α(1)-和α(2)-肾上腺素能受体对总的行为活动具有相反的作用,前者具有刺激作用,后者具有抑制作用。因此,对alpha(1)受体的封锁可能会通过导致对位的alpha(2)活性来诱导无活性。目的:本研究的目的是测试α(2)-受体功能的中枢阻断是否能恢复α(1)-受体阻断小鼠的行为活性。方法:剂量反应研究进行了对阿尔法(1)和阿尔法(2)激动剂和拮抗剂注射到背部的脑桥对总行为活动的新型笼测试的影响。结果:低剂量的α(2)-拮抗剂,阿替米唑或低剂量的α(2)可以逆转因与拮抗剂terazosin阻断脑桥中的alpha(1)受体而导致的行为不活动。 2)激动剂右美托咪定,但因高剂量的α(2)激动剂而加剧。结论:该结果支持这样的假说,即在小鼠的背部桥中阻断α(1)-受体会通过引起α(2)-受体的不受抑制的活性而产生非活性。这种情况可能与压力后或抑郁症期间出现的非活动状态有关。

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