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多巴胺受体亚型对大鼠黑质中 [H]-谷氨酸释放的突触前控制。D1 和 D3 受体的中枢作用。

Presynaptic control of [H]-glutamate release by dopamine receptor subtypes in the rat substantia nigra. Central role of D1 and D3 receptors.

机构信息

Departamento de Fisiología, Biofísica y Neurociencias. Centro de Investigación y de Estudios Avanzados del Instituto Politécnico Nacional, Mexico.

Laboratorio de Medicina Genómica, Departamento de Genética, Instituto Nacional de Rehabilitación Luis Guillermo Ibarra Ibarra, Ciudad de México, Mexico.

出版信息

Neuroscience. 2019 May 15;406:563-579. doi: 10.1016/j.neuroscience.2019.03.051. Epub 2019 Mar 28.

Abstract

Substantia nigra pars reticulata is the output station in basal ganglia; its GABAergic neurons control the activity of thalamo-cortical premotor nuclei, thus controlling motor behavior. D1-like and D2-like presynaptic dopamine receptors on subthalamo-nigral afferents by modulation of glutamate release change the firing rate of nigral neurons; however, their relative contribution to the control of glutamate release and their pharmacological properties have not been studied. This is important since the prevalence of the inhibition or stimulation of release determines the firing rate of nigral neurons, therefore motor activity. Here we used depolarization induced [H]-glutamate release in slices of rat substantia nigra from reserpinized and non-reserpinized rats to explore the relative contribution of the D1-like and D2-like receptor subtypes to the control of glutamate release. We found a significant control of release by D1-like and D3R, and a modest effect of D2R. D4R exerted no effect. Dopamine showed more potency for D3R than for D1-like receptors; however, these latter enhanced release to a greater degree, as shown by the E. We also co-activated these to test their interaction; an antagonist interaction of D1-like with D2 and D3R, and an additive between D2 and D3R were found. Pharmacological receptor antagonist effects in release from reserpinized vs. non-reserpinized slices were similar, suggesting that endogenous dopamine stimulates receptors in the same way. These findings suggest differences in the control of glutamate release by different dopamine receptors in the substantia nigra, which could contribute to explaining the effect of dopamine and its agonists on motor behavior.

摘要

黑质网状部是基底神经节的输出站;其 GABA 能神经元控制丘脑皮质运动前核的活动,从而控制运动行为。通过调节谷氨酸释放,亚丘脑-黑质传入纤维上的 D1 样和 D2 样突触前多巴胺受体改变黑质神经元的放电率;然而,它们对谷氨酸释放的控制的相对贡献及其药理学特性尚未得到研究。这很重要,因为释放的抑制或刺激的普遍性决定了黑质神经元的放电率,从而决定了运动活动。在这里,我们使用去血清素化和非去血清素化大鼠黑质切片中诱导的 [H]-谷氨酸释放来探索 D1 样和 D2 样受体亚型对谷氨酸释放控制的相对贡献。我们发现 D1 样和 D3R 对释放有显著的控制作用,D2R 也有一定的作用。D4R 没有作用。与 D1 样受体相比,多巴胺对 D3R 的作用更强;然而,这些受体增强释放的程度更大,如 E 所示。我们还共同激活这些受体来测试它们的相互作用;发现 D1 样与 D2 和 D3R 存在拮抗剂相互作用,D2 和 D3R 之间存在相加作用。从去血清素化和非去血清素化切片中释放的药理学受体拮抗剂作用相似,表明内源性多巴胺以相同的方式刺激受体。这些发现表明不同的多巴胺受体在黑质中对谷氨酸释放的控制存在差异,这可能有助于解释多巴胺及其激动剂对运动行为的影响。

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