Calabresi P, Pisani A, Centonze D, Bernardi G
Clinica Neurologica, Dip. Sanitá Universitá di Roma Tor Vergata, Rome, Italy.
Neurosci Biobehav Rev. 1997 Jul;21(4):519-23. doi: 10.1016/s0149-7634(96)00029-2.
Several electrophysiological studies have addressed the interaction between glutamate and dopamine within the striatum. Although the results obtained from these studies were often conflicting, more recently the characterization of new forms of synaptic plasticity in the basal ganglia provided a possible integrative explanation of the different electrophysiological data regarding the interaction between these transmitters. In this review we will try to summarize and discuss the available data concerning the possible impact of the functional role of D1 and D2 receptor activation on the modulation of the glutamatergic corticostriatal pathway. Moreover, we will also describe the function of the striatum in the integration of glutamatergic and dopaminergic inputs to produce long-term changes of synaptic efficacy (long-term depression, long-term potentiation). Finally, we will consider the implication of the interaction between dopamine and glutamate in the regulation of energetic metabolism whose failure is responsible for neuronal death.
多项电生理研究探讨了纹状体内谷氨酸与多巴胺之间的相互作用。尽管这些研究所得结果常常相互矛盾,但最近在基底神经节中发现的新型突触可塑性特征,为这些递质之间相互作用的不同电生理数据提供了一种可能的综合解释。在本综述中,我们将尝试总结并讨论现有数据,这些数据涉及D1和D2受体激活的功能作用对谷氨酸能皮质纹状体通路调节的可能影响。此外,我们还将描述纹状体在整合谷氨酸能和多巴胺能输入以产生突触效能的长期变化(长期抑制、长期增强)方面的功能。最后,我们将考虑多巴胺与谷氨酸相互作用在能量代谢调节中的意义,能量代谢失败是神经元死亡的原因。