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在健康受试者中,支链氨基酸导致的急性多巴胺耗竭会降低听觉自上而下的事件相关电位。

Acute dopamine depletion with branched chain amino acids decreases auditory top-down event-related potentials in healthy subjects.

作者信息

Neuhaus Andres H, Goldberg Terry E, Hassoun Youssef, Bates John A, Nassauer Katharine W, Sevy Serge, Opgen-Rhein Carolin, Malhotra Anil K

机构信息

Department of Psychiatry Research, Zucker Hillside Hospital, North Shore-Long Island Jewish Health System, New York City, NY 11004, USA.

出版信息

Schizophr Res. 2009 Jun;111(1-3):167-73. doi: 10.1016/j.schres.2009.03.023. Epub 2009 Apr 7.

Abstract

Cerebral dopamine homeostasis has been implicated in a wide range of cognitive processes and is of great pathophysiological importance in schizophrenia. A novel approach to study cognitive effects of dopamine is to deplete its cerebral levels with branched chain amino acids (BCAAs) that acutely lower dopamine precursor amino acid availability. Here, we studied the effects of acute dopamine depletion on early and late attentive cortical processing. Auditory event-related potential (ERP) components N2 and P3 were investigated using high-density electroencephalography in 22 healthy male subjects after receiving BCAAs or placebo in a randomized, double-blind, placebo-controlled crossover design. Total free serum prolactin was also determined as a surrogate marker of cerebral dopamine depletion. Acute dopamine depletion increased free plasma prolactin and significantly reduced prefrontal ERP components N2 and P3. Subcomponent analysis of N2 revealed a significant attenuation of early attentive N2b over prefrontal scalp sites. As a proof of concept, these results strongly suggest that BCAAs are acting on basic information processing. Dopaminergic neurotransmission seems to be involved in auditory top-down processing as indexed by prefrontal N2 and P3 reductions during dopamine depletion. In healthy subjects, intact early cortical top-down processing can be acutely dysregulated by ingestion of BCAAs. We discuss the potential impact of these findings on schizophrenia research.

摘要

脑内多巴胺稳态与多种认知过程有关,在精神分裂症的病理生理学中具有重要意义。一种研究多巴胺认知效应的新方法是用支链氨基酸(BCAAs)降低其脑内水平,支链氨基酸可急性降低多巴胺前体氨基酸的可用性。在此,我们研究了急性多巴胺耗竭对早期和晚期注意力皮层加工的影响。在22名健康男性受试者中,采用随机、双盲、安慰剂对照的交叉设计,在给予BCAAs或安慰剂后,使用高密度脑电图研究听觉事件相关电位(ERP)成分N2和P3。总游离血清催乳素也被确定为脑内多巴胺耗竭的替代标志物。急性多巴胺耗竭增加了游离血浆催乳素,并显著降低了前额叶ERP成分N2和P3。N2的子成分分析显示,前额叶头皮部位早期注意力N2b显著减弱。作为概念验证,这些结果强烈表明BCAAs作用于基本信息处理。多巴胺能神经传递似乎参与了听觉自上而下的加工,多巴胺耗竭期间前额叶N2和P3降低可作为指标。在健康受试者中,摄入BCAAs可急性破坏早期皮层自上而下加工的完整性。我们讨论了这些发现对精神分裂症研究的潜在影响。

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