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大鼠中神经肽Y Y5受体阻断增强抑制性控制

Enhanced inhibitory control by neuropeptide Y Y5 receptor blockade in rats.

作者信息

Bari A, Dec A, Lee A W, Lee J, Song D, Dale E, Peterson J, Zorn S, Huang X, Campbell B, Robbins T W, West A R

机构信息

Behavioral and Clinical Neuroscience Institute and Department of Psychology, University of Cambridge, Cambridge, CB2 3EB, UK,

出版信息

Psychopharmacology (Berl). 2015 Mar;232(5):959-73. doi: 10.1007/s00213-014-3730-z. Epub 2014 Sep 7.

Abstract

RATIONALE

The neuropeptide Y (NPY) system acts in synergy with the classic neurotransmitters to regulate a large variety of functions including autonomic, affective, and cognitive processes. Research on the effects of NPY in the central nervous system has focused on food intake control and affective processes, but growing evidence of NPY involvement in attention-deficit/hyperactivity disorder (ADHD) and other psychiatric conditions motivated the present study.

OBJECTIVES

We tested the effects of the novel and highly selective NPY Y5 receptor antagonist Lu AE00654 on impulsivity and the underlying cortico-striatal circuitry in rats to further explore the possible involvement of the NPY system in pathologies characterized by inattention and impulsive behavior.

RESULTS

A low dose of Lu AE00654 (0.03 mg/kg) selectively facilitated response inhibition as measured by the stop-signal task, whereas no effects were found at higher doses (0.3 and 3 mg/kg). Systemic administration of Lu AE00654 also enhanced the inhibitory influence of the dorsal frontal cortex on neurons in the caudate-putamen, this fronto-striatal circuitry being implicated in the executive control of behavior. Finally, by locally injecting a Y5 agonist, we observed reciprocal activation between dorsal frontal cortex and caudate-putamen neurons. Importantly, the effects of the Y5 agonist were attenuated by pretreatment with Lu AE00654, confirming the presence of Y5 binding sites modulating functional interactions within frontal-subcortical circuits.

CONCLUSIONS

These results suggest that the NPY system modulates inhibitory neurotransmission in brain areas important for impulse control, and may be relevant for the treatment of pathologies such as ADHD and drug abuse.

摘要

理论依据

神经肽Y(NPY)系统与经典神经递质协同作用,调节包括自主、情感和认知过程在内的多种功能。关于NPY在中枢神经系统作用的研究主要集中在食物摄入控制和情感过程,但越来越多的证据表明NPY参与注意力缺陷多动障碍(ADHD)和其他精神疾病,这激发了本研究。

目的

我们测试了新型高选择性NPY Y5受体拮抗剂Lu AE00654对大鼠冲动性及潜在皮质-纹状体回路的影响,以进一步探索NPY系统可能参与以注意力不集中和冲动行为为特征的疾病。

结果

低剂量的Lu AE00654(0.03mg/kg)通过停止信号任务测量可选择性促进反应抑制,而在较高剂量(0.3和3mg/kg)下未发现影响。全身给予Lu AE00654还增强了背侧额叶皮质对尾状核-壳核神经元抑制性影响,这种额叶-纹状体回路与行为的执行控制有关。最后,通过局部注射Y5激动剂,我们观察到背侧额叶皮质和尾状核-壳核神经元之间的相互激活。重要的是,Y5激动剂的作用被Lu AE00654预处理减弱,证实存在调节额叶-皮质下回路内功能相互作用的Y5结合位点。

结论

这些结果表明,NPY系统调节对冲动控制重要的脑区中的抑制性神经传递,可能与ADHD和药物滥用等疾病的治疗有关。

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