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Dopamine acting at D1-like, D2-like and α1-adrenergic receptors differentially modulates theta and gamma oscillatory activity in primary motor cortex

机译:多巴胺对D1样,D2样和α1肾上腺素受体的作用不同地调节初级运动皮层的θ和γ振荡活性。

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摘要

The loss of dopamine (DA) in Parkinson’s is accompanied by the emergence of exaggerated theta and beta frequency neuronal oscillatory activity in the primary motor cortex (M1) and basal ganglia. DA replacement therapy or deep brain stimulation reduces the power of these oscillations and this is coincident with an improvement in motor performance implying a causal relationship. Here we provide in vitro evidence for the differential modulation of theta and gamma activity in M1 by DA acting at receptors exhibiting conventional and non-conventional DA pharmacology. Recording local field potentials in deep layer V of rat M1, co-application of carbachol (CCh, 5 μM) and kainic acid (KA, 150 nM) elicited simultaneous oscillations at a frequency of 6.49 ± 0.18 Hz (theta, n = 84) and 34.97 ± 0.39 Hz (gamma, n = 84). Bath application of DA resulted in a decrease in gamma power with no change in theta power. However, application of either the D1-like receptor agonist SKF38393 or the D2-like agonist quinpirole increased the power of both theta and gamma suggesting that the DA-mediated inhibition of oscillatory power is by action at other sites other than classical DA receptors. Application of amphetamine, which promotes endogenous amine neurotransmitter release, or the adrenergic α1-selective agonist phenylephrine mimicked the action of DA and reduced gamma power, a result unaffected by prior co-application of D1 and D2 receptor antagonists SCH23390 and sulpiride. Finally, application of the α1-adrenergic receptor antagonist prazosin blocked the action of DA on gamma power suggestive of interaction between α1 and DA receptors. These results show that DA mediates complex actions acting at dopamine D1-like and D2-like receptors, α1 adrenergic receptors and possibly DA/α1 heteromultimeric receptors to differentially modulate theta and gamma activity in M1.
机译:帕金森氏症中多巴胺(DA)的丧失伴随着初级运动皮层(M1)和基底神经节中夸大的theta和β频率神经元振荡活动的出现。 DA替代疗法或深部脑刺激降低了这些振荡的力量,并且这与运动能力的改善相吻合,暗示了因果关系。在这里,我们提供了体外的证据,证明DA作用于M1中的theta和γ活性的差异性调节,该DA作用于表现常规和非常规DA药理作用的受体。在大鼠M1的深层V中记录局部电场电势,同时应用卡巴胆碱(CCh,5μM)和海藻酸(KA,150 nM),在6.49±0.18 Hz(theta,n = 84)的频率下引起同时振荡和34.97±0.39 Hz(伽玛,n = 84)。浴中DA的应用导致γ功率降低,θ功率不变。但是,D1样受体激动剂SKF38393或D2样激动剂喹吡罗的应用都会增加theta和γ的作用力,这表明DA介导的振荡力抑制作用是通过经典DA受体以外的其他位点起作用。苯丙胺的使用可促进内源性胺神经递质的释放,或肾上腺素能的α1选择性激动剂去氧肾上腺素模仿了DA的作用并降低了伽马能,这一结果不受先前同时使用D1和D2受体拮抗剂SCH23390和舒必利的影响。最后,α1-肾上腺素能受体拮抗剂哌唑嗪的应用阻断了DA对γ功率的作用,暗示了α1和DA受体之间的相互作用。这些结果表明,DA介导对多巴胺D1样和D2样受体,α1肾上腺素能受体以及DA /α1异源多聚体受体起作用的复杂作用,以差异地调节M1中的θ和γ活性。

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