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Characterization of electrically evoked field potentials in the medial prefrontal cortex and orbitofrontal cortex of the rat: modulation by monoamines

机译:大鼠内侧前额叶皮层和眶额叶皮层中电诱发的场电位的表征:单胺的调节

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摘要

Medial prefrontal cortex (mPFC) and orbitofrontal cortex (OFC) play critical roles in cognition and behavioural control. Glutamatergic, GABAergic, and monoaminergic dysfunction in the prefrontal cortex has been hypothesised to underlie symptoms in neuropsychiatric disorders. Here we characterised electrically-evoked field potentials in the mPFC and OFC. Electrical stimulation evoked field potentials in layer V/VI of the mPFC and layer V of the OFC. The earliest component (approximately 2 ms latency) was insensitive to glutamate receptor blockade and was presumed to be presynaptic. Later components were blocked by 6,7-dinitroquinoxaline-2,3-dione (DNQX (20 μM) and were assumed to reflect monosynaptic (latency 4-6 ms) and polysynaptic activity (latency 6-40 ms) mediated by glutamate via AMPA/kainate receptor. In the mPFC, but not the OFC, the monosynaptic component was also partly blocked by 2-amino-5-phosphonopentanoic acid (AP-5 (50-100 μM) indicating the involvement of NMDA receptors. Bicuculline (3-10 μM) enhanced the monosynaptic component suggesting electrically-evoked and/or glutamate induced GABA release inhibits the monosynaptic component via GABAA receptor activation. There were complex effects of bicuculline on polysynaptic components. In the mPFC both the mono- and polysynaptic components were attenuated by 5-HT (10-100 μM) and NA (30 and 60 μM) and the monosynaptic component was attenuated by DA (100 μM). In the OFC the mono-and polysynaptic components were also attenuated by 5-HT (100 μM), NA (10-100 μM) but DA (10-100 μM) had no effect. We propose that these pharmacologically characterised electrically-evoked field potentials in the mPFC and OFC are useful models for the study of prefrontal cortical physiology and pathophysiology.
机译:内侧前额叶皮层(mPFC)和眶额叶皮层(OFC)在认知和行为控制中起关键作用。假设前额叶皮层中的谷氨酸能,GABA能和单胺能功能障碍是神经精神疾病症状的基础。在这里,我们表征了mPFC和OFC中的电诱发场电位。电刺激在mPFC的V / VI层和OFC的V层中诱发了电场电势。最早的成分(约2毫秒的潜伏期)对谷氨酸受体阻滞不敏感,并被认为是突触前的。后来的成分被6,7-二硝基喹喔啉-2,3-二酮(DNQX(20μM))阻断,并被认为反映了谷氨酸通过AMPA介导的单突触(潜伏期4-6 ms)和多突触活性(潜伏期6-40 ms)。 / kainate受体,在mPFC中,但在OFC中,单突触部分也被2-氨基-5-膦基戊酸(AP-5(50-100μM))部分阻断,表明NMDA受体参与。 10μM)增强了单突触成分,表明电诱发的和/或谷氨酸诱导的GABA释放通过GABAA受体激活抑制了单突触成分。 5-HT(10-100μM)和NA(30和60μM)和单突触成分被DA(100μM)衰减;在OFC中,单突触和多突触成分也被5-HT(100μM)衰减。 ,NA(10-100μM)但DA(10-100μM)无效。我们建议在mPFC和OFC中,这些具有药理学特征的电诱发场电位是研究前额叶皮层生理学和病理生理学的有用模型。

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