首页> 外文期刊>European Journal of Pharmacology: An International Journal >Effect of olanzapine on scopolamine induced deficits in differential reinforcement of low rate 72 s (DRL-72 s) schedule in rats: Involvement of the serotonergic receptors in restoring the deficits
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Effect of olanzapine on scopolamine induced deficits in differential reinforcement of low rate 72 s (DRL-72 s) schedule in rats: Involvement of the serotonergic receptors in restoring the deficits

机译:奥氮平对东pol碱引起的大鼠低速72 s(DRL-72 s)差异强化补体所致赤字的影响:血清素能受体参与恢复赤字

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Scopolamine, a non-selective muscarinic receptor antagonist has widespread central nervous system effects. Muscarinic receptors located in the central nervous system play a vital role in the modulation of impulsivity. The objective of the current study was to evaluate the effect of scopolamine on impulsivity using differential-reinforcement-of-low-rate 72-s schedule (DRL-72 s) and to demonstrate the involvement of serotonergic receptors in mediating the effect of olanzapine (atypical antipsychotic) on scopolamine induced impulsivity. Scopolamine impaired the performance of the rats trained under DRL-72 s schedule. Olanzapine reversed the deficits induced by scopolamine. We evaluated the effect of donepezil (cholinesterase inhibitor), SB-742457 (5-HT6 and 5-HT2a antagonist), and haloperidol (typical antipsychotic) in rats challenged with scopolamine in the DRL-72 s schedule to identify the receptor(s) involved in reversing the deficits. SB-742457 partially reversed the deficits, but donepezil and haloperidol did not show any effects on the deficits induced by scopolamine. Olanzapine and SB-742457 shifted the peak location (PkL) towards longer IRT duration, indicating a decrease in motor impulsivity. Modulation of scopolamine-induced impulsivity by olanzapine could be partly due to its antagonistic action at 5-HT2a and 5-HT 6 receptors, respectively. Superior effects of olanzapine on impulsivity in schizophrenic patients may be mediated through the antagonism of 5-HT2a and 5-HT6 receptors.
机译:东co碱,一种非选择性毒蕈碱受体拮抗剂,具有广泛的中枢神经系统作用。位于中枢神经系统的毒蕈碱受体在冲动的调节中起着至关重要的作用。本研究的目的是使用低速差强化72s时间表(DRL-72 s)评估东pol碱对冲动的影响,并证明血清素能受体参与了奥氮平的介导作用(非典型抗精神病药)对东pol碱引起的冲动。东co碱损害了按DRL-72时间表训练的大鼠的表现。奥氮平逆转了东pol碱引起的赤字。我们在DRL-72时间表中评估了多奈哌齐(胆碱酯酶抑制剂),SB-742457(5-HT6和5-HT2a拮抗剂)和氟哌啶醇(典型的抗精神病药)在受东pol碱攻击的大鼠中的作用,以识别受体参与扭转赤字。 SB-742457部分逆转了赤字,但多奈哌齐和氟哌啶醇对东pol碱引起的赤字没有任何影响。奥氮平和SB-742457将峰值位置(PkL)移向了更长的IRT持续时间,表明运动冲动性降低了。奥氮平对东pol碱引起的冲动的调节可能部分是由于其分别对5-HT2a和5-HT 6受体具有拮抗作用。奥氮平对精神分裂症患者冲动的优异作用可能是通过5-HT2a和5-HT6受体的拮抗作用来介导的。

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