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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Ampakines reduce methamphetamine-driven rotation and activate neocortex in a regionally selective fashion.
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Ampakines reduce methamphetamine-driven rotation and activate neocortex in a regionally selective fashion.

机译:苯丙胺类药物可降低甲基苯丙胺驱动的旋转并以区域选择性方式激活新皮层。

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It has been proposed that glutamatergic and dopaminergic systems are functionally opposed in their regulation of striatal output. The present study tested the effects of drugs that enhance AMPA-receptor-mediated glutamatergic transmission (ampakines) for their effects on dopamine-related alterations in cortical activity and locomotor behavior. Rats with unilateral 6-hydroxydopamine lesions of the ascending nigro-striatal dopamine system were sensitized to methamphetamine and then tested for methamphetamine-induced circling behavior in the presence and absence of ampakines CX546 and CX614. Both ampakines produced rapid, dose-dependent reductions in circling that were evident within 15 min and sustained through 1 h of behavioral testing. In situ hybridization maps of c-fos mRNA expression showed that in the intact hemisphere, ampakine cotreatment markedly increased c-fos expression in parietal, sensori-motor neocortex above that found in rats treated with methamphetamine alone. Ampakine cotreatment did not augment c-fos expression in frontal, sensori-motor cortex or striatum. Still larger ampakine-elicited effects were obtained in parietal cortex of the dopamine-depleted hemisphere where labeling densities were increased by approximately 60% above values found in methamphetamine-alone rats. With these effects, the hemispheric asymmetry of cortical activation was less pronounced in the ampakine-cotreatment group as compared with the methamphetamine-alone group.These results indicate that positive modulation of AMPA-type glutamate receptors 1) can offset behavioral disturbances arising from sensitized dopamine receptors and 2) increases aggregate neuronal activity in a regionally selective manner that is probably dependent upon behavioral demands.
机译:已经提出,谷氨酸能和多巴胺能系统在调节纹状体输出方面在功能上是相反的。本研究测试了增强AMPA受体介导的谷氨酸能传递(ampakines)的药物对多巴胺相关的皮质活性和运动行为改变的影响。将具有上升性黑质纹状体多巴胺系统单侧6-羟基多巴胺损伤的大鼠对甲基苯丙胺致敏,然后在存在和不存在安培他酮CX546和CX614的情况下测试甲基苯丙胺引起的盘旋行为。两种氨苯甲酮均能快速,剂量依赖性地减少循环,这在15分钟内即可见,并持续1h的行为测试。 c-fos mRNA表达的原位杂交图谱显示,在完整的半球中,安帕金共同治疗显着增加了顶叶,感觉运动新皮层中c-fos表达,高于仅用甲基苯丙胺治疗的大鼠。 Ampakine联合治疗不会增加额叶,感觉运动皮层或纹状体中c-fos的表达。在消耗多巴胺的半球的顶叶皮层中获得了更大的安帕金引起的效应,其中,标记密度比仅使用甲基苯丙胺的大鼠的值增加了约60%。有了这些作用,与单独使用甲基苯丙胺的组相比,安帕金-共治疗组的大脑皮层半球不对称性不那么明显。这些结果表明,AMPA型谷氨酸受体的正调节1)可以抵消致敏多巴胺引起的行为障碍。受体和2)以区域选择性的方式增加聚集的神经元活性,这可能取决于行为需求。

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