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大鼠脑片孤束核尾部神经元的可互换放电模式:γ-氨基丁酸和N-甲基-D-天冬氨酸的作用

Interchangeable discharge patterns of neurons in caudal nucleus tractus solitarii in rat slices: role of GABA and NMDA.

作者信息

Yen J C, Chan S H

机构信息

Institute of Pharmacology, National Yang-Ming University, Taipei, Taiwan, Republic of China.

出版信息

J Physiol. 1997 Nov 1;504 ( Pt 3)(Pt 3):611-27. doi: 10.1111/j.1469-7793.1997.611bd.x.

Abstract
  1. We characterized in rat brain slices the discharge patterns of spontaneously active neurons in the caudal region of the nucleus tractus solitarii (cNTS) and the neuromodulatory role of GABA and glutamate, via GABAA and NMDA receptors. 2. Spontaneous action potentials recorded intracellularly from cNTS neurons manifested either a regular or an irregular discharge pattern, alongside characteristic waveforms of the action potentials. These discharge patterns were interchangeable, and were highly sensitive to fluctuations in membrane potentials. In addition, the repolarizing rate of the after-hyperpolarization (AHP) in cNTS neurons that exhibited a regular discharge pattern was significantly higher than that of neurons that displayed irregular discharges. 3. cNTS neurons that manifested a regular discharge pattern were converted to irregular discharges upon superfusion with GABA (200 microM). This was accompanied by a reduction in the repolarizing rate of the AHP of both spontaneous and evoked action potentials. Conversion of discharge patterns in the opposite direction was elicited by superfusion with NMDA (6.8 microM). 4. The irregular discharges of spontaneous or evoked cNTS neurons were converted to a regular discharge pattern by bicuculline (200 microM). Subsequent application of D(-)-2-amino-5-phosphonopentanoic acid (250 microM) essentially led the neuronal discharges to revert to an irregular pattern. 5. Our results support the presence of two interchangeable modes of electrophysiological manifestations from the same cNTS neuronal population. They also showed that GABA and glutamate, via GABAA and NMDA receptors, may provide a novel form of neuromodulation at the cNTS by switching the patterns of neuronal discharges.
摘要
  1. 我们通过GABAA和NMDA受体,在大鼠脑片中对孤束核尾侧区域(cNTS)自发活动神经元的放电模式以及GABA和谷氨酸的神经调节作用进行了表征。2. 从cNTS神经元细胞内记录到的自发动作电位表现出规则或不规则的放电模式,同时伴有动作电位的特征波形。这些放电模式是可互换的,并且对膜电位的波动高度敏感。此外,表现出规则放电模式的cNTS神经元的超极化后电位(AHP)的复极化速率显著高于表现出不规则放电的神经元。3. 表现出规则放电模式的cNTS神经元在灌注GABA(200微摩尔)后转变为不规则放电。这伴随着自发和诱发动作电位的AHP复极化速率的降低。通过灌注NMDA(6.8微摩尔)可引发相反方向的放电模式转变。4. 用荷包牡丹碱(200微摩尔)可将自发或诱发的cNTS神经元的不规则放电转变为规则放电模式。随后应用D-(-)-2-氨基-5-磷酸戊酸(250微摩尔)基本上使神经元放电恢复到不规则模式。5. 我们的结果支持同一cNTS神经元群体存在两种可互换的电生理表现模式。它们还表明,GABA和谷氨酸通过GABAA和NMDA受体,可能通过切换神经元放电模式在cNTS提供一种新的神经调节形式。

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