Department of Neurology, Goethe-University Frankfurt, Frankfurt, Germany.
Neuropsychopharmacology. 2011 Aug;36(9):1894-902. doi: 10.1038/npp.2011.75. Epub 2011 May 4.
Long-term potentiation (LTP) of synaptic efficacy is considered a fundamental mechanism of learning and memory. At the cellular level a large body of evidence demonstrated that the major neuromodulatory neurotransmitters dopamine (DA), norepinephrine (NE), and acetylcholine (ACh) influence LTP magnitude. Noninvasive brain stimulation protocols provide the opportunity to study LTP-like plasticity at the systems level of human cortex. Here we applied paired associative stimulation (PAS) to induce LTP-like plasticity in the primary motor cortex of eight healthy subjects. In a double-blind, randomized, placebo-controlled, crossover design, the acute effects of a single oral dose of the neuromodulatory drugs cabergoline (DA agonist), haloperidol (DA antagonist), methylphenidate (indirect NE agonist), prazosine (NE antagonist), tacrine (ACh agonist), and biperiden (ACh antagonist) on PAS-induced LTP-like plasticity were examined. The antagonists haloperidol, prazosine, and biperiden depressed significantly the PAS-induced LTP-like plasticity observed under placebo, whereas the agonists cabergoline, methylphenidate, and tacrine had no effect. Findings demonstrate that antagonists in major neuromodulatory neurotransmitter systems suppress LTP-like plasticity at the systems level of human cortex, in accord with evidence of their modulating action of LTP at the cellular level. This provides further supportive evidence for the known detrimental effects of these drugs on LTP-dependent mechanisms such as learning and memory.
长时程增强(LTP)被认为是学习和记忆的基本机制。在细胞水平上,大量证据表明主要的神经调质递质多巴胺(DA)、去甲肾上腺素(NE)和乙酰胆碱(ACh)影响 LTP 的幅度。非侵入性脑刺激方案提供了在人类皮质系统水平研究类似 LTP 的可塑性的机会。在这里,我们应用成对关联刺激(PAS)在 8 名健康受试者的初级运动皮层中诱导类似 LTP 的可塑性。在双盲、随机、安慰剂对照、交叉设计中,研究了单一口服剂量的神经调质药物卡麦角林(DA 激动剂)、氟哌啶醇(DA 拮抗剂)、哌甲酯(间接 NE 激动剂)、特拉唑嗪(NE 拮抗剂)、他克林(ACh 激动剂)和比哌立登(ACh 拮抗剂)对 PAS 诱导的类似 LTP 的可塑性的急性影响。拮抗剂氟哌啶醇、特拉唑嗪和比哌立登显著抑制了安慰剂下观察到的 PAS 诱导的类似 LTP 的可塑性,而激动剂卡麦角林、哌甲酯和他克林则没有影响。研究结果表明,主要神经调质递质系统的拮抗剂抑制了人类皮质系统水平的类似 LTP 的可塑性,这与它们在细胞水平上调节 LTP 的作用证据一致。这为这些药物对学习和记忆等依赖 LTP 的机制的已知不良影响提供了进一步的支持证据。