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首页> 外文期刊>Psychopharmacology >Effects of haloperidol on the behavioral, subjective, cognitive, motor, and neuroendocrine effects of Delta-9-tetrahydrocannabinol in humans.
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Effects of haloperidol on the behavioral, subjective, cognitive, motor, and neuroendocrine effects of Delta-9-tetrahydrocannabinol in humans.

机译:氟哌啶醇对人体中Delta-9-四氢大麻酚的行为,主观,认知,运动和神经内分泌作用的影响。

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摘要

INTRODUCTION: Cannabinoids produce a spectrum of effects in humans including euphoria, cognitive impairments, psychotomimetic effects, and perceptual alterations. The extent to which dopaminergic systems contribute to the effects of Delta-9-tetrahydrocannabinol (Delta-9-THC) remains unclear. This study evaluated whether pretreatment with a dopamine receptor antagonist altered the effects of Delta-9-THC in humans. MATERIALS AND METHODS: In a 2-test-day double-blind study, 28 subjects including healthy subjects (n = 17) and frequent users of cannabis (n = 11) were administered active (0.057 mg/kg) or placebo oral haloperidol in random order followed 90 and 215 min later by fixed order intravenous administration of placebo (vehicle) and active (0.0286 mg/kg) Delta-9-THC, respectively. RESULTS: Consistent with previous reports, intravenous Delta-9-THC produced psychotomimetic effects, perceptual alterations, and subjective effects including "high." Delta-9-THC also impaired verbal recall and attention. Haloperidol pretreatment did not reduce any of the behavioral effects of Delta-9-THC. Haloperidol worsened the immediate free and delayed free and cued recall deficits produced by Delta-9-THC. Haloperidol and Delta-9-THC worsened distractibility and vigilance. Neither drug impaired performance on a motor screening task, the Stockings of Cambridge task, or the delayed match to sample task. Frequent users had lower baseline plasma prolactin levels and blunted Delta-9-THC induced memory impairments. CONCLUSIONS: The deleterious effects of haloperidol pretreatment on the cognitive effects of Delta-9-THC are consistent with the preclinical literature in suggesting crosstalk between DAergic and CBergic systems. However, it is unlikely that DA D(2) receptor mechanisms play a major role in mediating the psychotomimetic and perceptual altering effects of Delta-9-THC. Further investigation is warranted to understand the basis of the psychotomimetic effects of Delta-9-THC and to better understand the crosstalk between DAergic and CBergic systems.
机译:简介:大麻素对人体产生一系列影响,包括欣快感,认知障碍,拟精神病作用和知觉改变。多巴胺能系统对Delta-9-四氢大麻酚(Delta-9-THC)的影响程度尚不清楚。这项研究评估了用多巴胺受体拮抗剂进行的预处理是否会改变Delta-9-THC对人类的影响。材料和方法:在为期2天的双盲研究中,对28名受试者(包括健康受试者(n = 17)和经常使用大麻的人(n = 11))进行了主动(0.057 mg / kg)或安慰剂口服氟哌啶醇给药,随机顺序分别在90和215分钟后,分别以固定顺序静脉内施用安慰剂(载体)和活性(0.0286 mg / kg)Delta-9-THC。结果:与以前的报告一致,静脉内Delta-9-THC产生了拟精神病作用,知觉改变以及包括“高”在内的主观作用。 Delta-9-THC也损害了口头回忆和注意力。氟哌啶醇预处理不会降低Delta-9-THC的任何行为影响。氟哌啶醇加剧了由Delta-9-THC产生的立即释放以及延迟释放和提示的召回缺陷。氟哌啶醇和Delta-9-THC会使注意力分散和警惕性加重。药物都不会影响运动筛查任务,剑桥的长袜任务或延迟的采样任务匹配。经常使用的使用者的血浆血浆催乳素水平较低,Delta-9-THC引起的记忆力减退变钝。结论:氟哌啶醇预处理对Delta-9-THC认知作用的有害作用与临床前文献一致,提示DAergic和CBergic系统之间存在串扰。但是,DA D(2)受体机制不太可能在介导Delta-9-THC的拟精神和知觉改变作用中起主要作用。为了进一步了解Delta-9-THC拟精神药物作用的基础,并更好地了解DA能系统和C能系统之间的串扰,有必要进行进一步的研究。

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