MacDonald Hayley J, Kleppe Rune, Szigetvari Peter D, Haavik Jan
Department of Biological and Medical Psychology, University of Bergen, Bergen, Norway.
Norwegian Centre for Maritime- and Diving Medicine, Department of Occupational Medicine, Haukeland University Hospital, Bergen, Norway.
Front Psychiatry. 2024 Nov 15;15:1492126. doi: 10.3389/fpsyt.2024.1492126. eCollection 2024.
Multiple lines of evidence indicate that altered dopamine signaling may be involved in neuropsychiatric disorders and common behavioral traits. Here we critically review evidence collected during the past 40-plus years supporting the role of dopamine dysfunction in attention deficit hyperactivity disorder (ADHD). We recapitulate the basic components of dopaminergic signaling in the central nervous system, focusing on core enzymes, transporters and receptors involved in monoaminergic functions, particularly in striatal and cortical regions. We summarize key human brain imaging and genetic studies reporting associations between dopaminergic neurotransmission and behavioral traits, with an emphasis on ADHD. We also consider ADHD in the context of animal models and single gene, metabolic, and neurological disorders with established dysfunction of the dopaminergic system. Examining the evidence in this way leads us to conclude that there is evidence for the involvement of dopamine but limited evidence for a hypo-dopaminergic state as a key component of ADHD. We propose a path forward to increase our understanding of dopamine signaling in human behavioral traits and disorders that should particularly focus on its role in clinical subgroups, during brain development and how it interacts with other neurotransmitter systems.
多条证据表明,多巴胺信号改变可能与神经精神疾病和常见行为特征有关。在此,我们严格审查了过去40多年来收集的证据,这些证据支持多巴胺功能障碍在注意力缺陷多动障碍(ADHD)中的作用。我们概述了中枢神经系统中多巴胺能信号的基本组成部分,重点关注参与单胺能功能的核心酶、转运体和受体,特别是在纹状体和皮质区域。我们总结了关键的人脑成像和基因研究,这些研究报告了多巴胺能神经传递与行为特征之间的关联,重点是ADHD。我们还在动物模型以及已确定多巴胺能系统功能障碍的单基因、代谢和神经系统疾病的背景下考虑ADHD。以这种方式审视证据使我们得出结论,有证据表明多巴胺参与其中,但作为ADHD关键组成部分的多巴胺能不足状态的证据有限。我们提出了一条增进我们对人类行为特征和疾病中多巴胺信号理解的前进道路,该道路应特别关注其在临床亚组中的作用、在大脑发育过程中的作用以及它与其他神经递质系统的相互作用方式。