首页> 外文期刊>Behavioural Brain Research: An International Journal >Effects of local infusions of dopaminergic drugs into the medial prefrontal cortex of rats on latent inhibition, prepulse inhibition and amphetamine induced activity.
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Effects of local infusions of dopaminergic drugs into the medial prefrontal cortex of rats on latent inhibition, prepulse inhibition and amphetamine induced activity.

机译:将多巴胺能药物局部注入大鼠前额内侧皮层对潜伏抑制,脉冲前抑制和苯丙胺诱导的活性的影响。

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摘要

Impaired ability to 'gate out' sensory and cognitive information is considered to be a central feature of schizophrenia and is manifested, among others, in disrupted prepulse inhibition (PPI) and latent inhibition (LI). The present study investigated in rats the effects of increasing or decreasing dopamine (DA) receptor activation within the medial prefrontal cortex (mPFC) by local administration of the indirect DA receptor agonist amphetamine (AMPH; 10.0 microg/side) or the DA antagonist cis-flupenthixol (FLU; 12.0 microg/side) on PPI and LI as well as on systemic AMPH-induced activity. The effects of intra-mPFC apomorphine (APO; 10.0 microg/side) on PPI were also tested. AMPH infusions decreased systemic AMPH-induced increase in locomotor activity in the open field, whereas FLU infusion was ineffective. Both infusions had no effect on LI and PPI. However, APO infusions induced a disruption of PPI. These results provide additional evidence that the mPFC is a component of the neural circuitry mediating PPI but plays no role in LI. In addition, they show that the behavioral outcomes produced by DA receptor activation/blockade in the mPFC of the rat cannot be explained by postulating a simple reciprocal relationship between the cortical and subcortical DA systems.
机译:“门控”感觉和认知信息的能力受损被认为是精神分裂症的主要特征,除其他外,表现为冲动的前脉冲抑制(PPI)和潜伏抑制(LI)。本研究在大鼠中研究了通过局部施用间接DA受体激动剂苯丙胺(AMPH; 10.0 microg / side)或DA拮抗剂顺式或局部给药增加或减少内侧前额叶皮层(mPFC)内多巴胺(DA)受体活化的作用。氟戊醇(FLU; 12.0 microg / side)对PPI和LI以及全身性AMPH诱导的活性的影响。还测试了mPFC内阿扑吗啡(APO; 10.0微克/侧)对PPI的影响。 AMPH输注降低了系统性AMPH诱导的开放运动能力的增加,而FLU输注无效。两种输注对LI和PPI均无影响。但是,输注APO会导致PPI中断。这些结果提供了额外的证据,证明mPFC是介导PPI的神经回路的组成部分,但在LI中不起作用。另外,他们表明,大鼠的mPFC中DA受体激活/阻断产生的行为结果不能通过假设皮质和皮质下DA系统之间的简单相互关系来解释。

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