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代谢产物N-去甲基氯氮平和N-去甲基奥氮平对C57BL/6小鼠非典型抗精神病药物氯氮平的辨别刺激产生交叉耐受性。

The metabolites N-desmethylclozapine and N-desmethylolanzapine produce cross-tolerance to the discriminative stimulus of the atypical antipsychotic clozapine in C57BL/6 mice.

作者信息

Wiebelhaus Jason M, Webster Kevin A, Meltzer Herbert Y, Porter Joseph H

机构信息

Department of Psychology, Virginia Commonwealth University, Richmond, Virginia 23284-2018, USA.

出版信息

Behav Pharmacol. 2011 Sep;22(5-6):458-67. doi: 10.1097/FBP.0b013e328348ec4f.

Abstract

It has been previously shown that cross-tolerance to the discriminative stimulus properties of clozapine can be demonstrated with the drug discrimination paradigm. This study examined the ability of N-desmethylclozapine and N-desmethylolanzapine (metabolites of the atypical antipsychotic drugs clozapine and olanzapine, respectively) to induce cross-tolerance to the discriminative stimulus effects of clozapine. After C57BL/6 mice were trained to reliably discriminate 2.5 mg/kg clozapine from vehicle, a clozapine generalization curve was generated. Next, training was suspended and the mice received a maintenance dosing regimen in which they were injected twice daily with 10 mg/kg N-desmethylclozapine for 10 days. Then a second clozapine generalization curve was generated. This was followed by a 10-day washout period during which the mice did not receive drug injections or discrimination training. Finally, a third clozapine generalization curve was generated. These same procedures were followed for N-desmethylolanzapine (10 mg/kg twice daily during maintenance dosing). Both N-desmethylclozapine and N-desmethylolanzapine produced significant rightward shifts in the clozapine generalization curve indicating cross-tolerance between N-desmethylclozapine and clozapine and between N-desmethylolanzapine and clozapine. After a washout period with no training or drug administration this cross-tolerance effect was lost for both metabolites. This cross-tolerance drug discrimination procedure demonstrated in-vivo similarities between these two metabolites and clozapine and suggests that common underlying pharmacological mechanisms were responsible for the cross-tolerance that was observed. These findings also demonstrated that this procedure may be useful for identifying drugs with therapeutic efficacy similar to the atypical antipsychotic clozapine under repeated dosing conditions.

摘要

先前的研究表明,使用药物辨别范式可以证明对氯氮平辨别刺激特性的交叉耐受性。本研究考察了N-去甲基氯氮平和N-去甲基奥氮平(分别为非典型抗精神病药物氯氮平和奥氮平的代谢产物)诱导对氯氮平辨别刺激效应产生交叉耐受性的能力。在C57BL/6小鼠被训练可靠地区分2.5mg/kg氯氮平和溶剂后,生成了氯氮平的泛化曲线。接下来,暂停训练,小鼠接受维持给药方案,在此方案中,它们每天两次注射10mg/kg的N-去甲基氯氮平,持续10天。然后生成第二条氯氮平泛化曲线。随后是10天的洗脱期,在此期间小鼠未接受药物注射或辨别训练。最后,生成第三条氯氮平泛化曲线。对N-去甲基奥氮平(维持给药期间每天两次,每次10mg/kg)采用相同的程序。N-去甲基氯氮平和N-去甲基奥氮平均使氯氮平泛化曲线显著右移,表明N-去甲基氯氮平和氯氮平之间以及N-去甲基奥氮平和氯氮平之间存在交叉耐受性。在没有训练或药物给药的洗脱期后,两种代谢产物的这种交叉耐受性效应均消失。这种交叉耐受性药物辨别程序证明了这两种代谢产物与氯氮平在体内的相似性,并表明共同的潜在药理机制是观察到的交叉耐受性的原因。这些发现还表明,该程序可能有助于在重复给药条件下识别具有与非典型抗精神病药物氯氮平相似治疗效果 的药物。

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