Sesack Susan R, Carr David B
Departments of Neuroscience and Psychiatry, 446 Crawford Hall, University of Pittsburgh, 15260, Pittsburgh, PA, USA.
Physiol Behav. 2002 Dec;77(4-5):513-7. doi: 10.1016/s0031-9384(02)00931-9.
Dopamine (DA) neurons in the substantia nigra (SN) and ventral tegmental area (VTA) form several projection systems with diverse functions, such as motor planning through the striatum, reward seeking via the nucleus accumbens (NAc), and cognitive control through the prefrontal cortex (PFC). Disruptions in DA cell activity profoundly impair these functions and contribute to serious clinical conditions such as Parkinson's disease and schizophrenia. DA neurons have been extensively investigated in studies detailing their anatomy, physiology, and neurochemical regulation. Moreoever, recordings from behaving animals suggest that phasic changes in DA cell firing signal expectancy or attentional shifts associated with approach/avoidance behavior. These ideas raise interesting questions regarding how DA neurons are regulated to produce such phasic signals. For example, it is not yet known how different classes of DA projection neurons are regulated by specific inputs. In the first study of its kind within the VTA, our laboratory recently demonstrated that excitatory inputs from the PFC synapse selectively onto DA neurons that project back to the PFC but not onto DA cells that project to the NAc. These findings may explain some of the unique functional properties of mesoprefrontal DA neurons. Moreover, the results are important for understanding the pathophysiology of mental disorders such as schizophrenia.
黑质(SN)和腹侧被盖区(VTA)中的多巴胺(DA)神经元形成了几个具有不同功能的投射系统,例如通过纹状体进行运动规划、通过伏隔核(NAc)寻求奖励以及通过前额叶皮质(PFC)进行认知控制。DA细胞活动的破坏会严重损害这些功能,并导致帕金森病和精神分裂症等严重临床疾病。在详细研究DA神经元的解剖结构、生理学和神经化学调节的研究中,对其进行了广泛的研究。此外,对行为动物的记录表明,DA细胞放电的相位变化预示着与趋近/回避行为相关的预期或注意力转移。这些观点引发了关于DA神经元如何被调节以产生这种相位信号的有趣问题。例如,尚不清楚不同类别的DA投射神经元是如何受到特定输入的调节的。在VTA内的同类研究中,我们实验室最近证明,来自PFC的兴奋性输入选择性地突触到投射回PFC的DA神经元上,而不是投射到NAc的DA细胞上。这些发现可能解释了中前额叶DA神经元的一些独特功能特性。此外,这些结果对于理解精神分裂症等精神障碍的病理生理学很重要。