首页> 外文OA文献 >Differential effects of antipsychotic and propsychotic drugs on prepulse inhibition and locomotor activity in Roman high- (RHA) and low-avoidance (RLA) rats. Psychopharmacology (Berl).
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Differential effects of antipsychotic and propsychotic drugs on prepulse inhibition and locomotor activity in Roman high- (RHA) and low-avoidance (RLA) rats. Psychopharmacology (Berl).

机译:抗精神病药和精神病药对罗马高(RHA)和低回避(RLA)大鼠的前冲抑制和运动能力的差异作用。心理药理学(贝尔)。

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摘要

Animal models with predictive and construct validity are necessary for developing novel and efficient therapeutics for psychiatric disorders.\ud\udWe have carried out a pharmacological characterization of the Roman high- (RHA-I) and low-avoidance (RLA-I) rat strains with different acutely administered propsychotic (DOI, MK-801) and antipsychotic drugs (haloperidol, clozapine), as well as apomorphine, on prepulse inhibition (PPI) of startle and locomotor activity (activity cages).\ud\udRHA-I rats display a consistent deficit of PPI compared with RLA-I rats. The typical antipsychotic haloperidol (dopamine D2 receptor antagonist) reversed the PPI deficit characteristic of RHA-I rats (in particular at 65 and 70 dB prepulse intensities) and reduced locomotion in both strains. The atypical antipsychotic clozapine (serotonin/dopamine receptor antagonist) did not affect PPI in either strain, but decreased locomotion in a dose-dependent manner in both rat strains. The mixed dopamine D1/D2 agonist, apomorphine, at the dose of 0.05 mg/kg, decreased PPI in RHA-I, but not RLA-I rats. The hallucinogen drug DOI (5-HT2A agonist; 0.1-1.0 mg/kg) disrupted PPI in RLA-I rats in a dose-dependent manner at the 70 dB prepulse intensity, while in RHA-I rats, only the 0.5 mg/kg dose impaired PPI at the 80 dB prepulse intensity. DOI slightly decreased locomotion in both strains. Finally, clozapine attenuated the PPI impairment induced by the NMDA receptor antagonist MK-801 only in RLA-I rats.\ud\udThese results add experimental evidence to the view that RHA-I rats represent a model with predictive and construct validity of some dopamine and 5-HT2A receptor-related features of schizophrenia.
机译:具有预测和构造有效性的动物模型对于开发新型有效的精神疾病治疗剂是必需的。\ ud \ ud我们已经对罗马高(RHA-1)和低回避(RLA-1)大鼠品系进行了药理学表征\ ud \ udRHA-I大鼠接受了不同的急性给药前精神病药物(DOI,MK-801)和抗精神病药物(氟哌啶醇,氯氮平)以及阿扑吗啡对惊吓和运动活动的前脉冲抑制(PPI)。与RLA-1大鼠相比,PPI持续缺乏。典型的抗精神病药物氟哌啶醇(多巴胺D2受体拮抗剂)逆转了RHA-1大鼠的PPI缺陷特征(尤其是在65和70 dB的前脉冲强度下),并降低了两种菌株的运动能力。非典型抗精神病药氯氮平(5-羟色胺/多巴胺受体拮抗剂)在两种菌株中均不影响PPI,但在两种大鼠中均以剂量依赖性方式降低运动。剂量为0.05 mg / kg的多巴胺D1 / D2混合激动剂阿扑吗啡降低了RHA-1大鼠的PPI,但未降低RLA-1大鼠的PPI。致幻剂药物DOI(5-HT2A激动剂; 0.1-1.0 mg / kg)在70 dB前脉冲强度下以剂量依赖性方式破坏RLA-1大鼠的PPI,而在RHA-1大鼠中仅0.5 mg / kg剂量在80 dB的前脉冲强度下会损害PPI。 DOI在两种菌株中均略微降低了运动能力。最后,氯氮平仅在RLA-1大鼠中减轻了NMDA受体拮抗剂MK-801诱导的PPI损伤。\ ud \ ud这些结果为RHA-1大鼠代表具有某些多巴胺的预测和构建有效性的模型提供了实验证据。与精神分裂症的5-HT2A受体相关特征。

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