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去甲肾上腺素在GABA撤除后对大鼠新皮质神经元介导矛盾效应。

Noradrenaline mediates paradoxical effects on rat neocortical neurons after GABA withdrawal.

作者信息

Silva-Barrat C, Champagnat J, Leiva J, Pavlik V

机构信息

Institut Alfred Fessard, Centre National de la Recherche Scientifique, Gif-sur-Yvette, France.

出版信息

J Neurophysiol. 1994 Mar;71(3):1139-50. doi: 10.1152/jn.1994.71.3.1139.

Abstract
  1. The aim of the present study was to determine the role of noradrenergic neurotransmission in neuronal activities intracellularly recorded in neocortical slices obtained from rats presenting the gamma-aminobutyric acid (GABA) withdrawal syndrome (GWS), a focal epilepsy consecutive to the interruption of a chronic intracortical GABA infusion into the somatomotor cortex. Neurons recorded in the epileptic focus area (n = 52) were bursting or nonbursting cells. Intrinsic bursting (IB, n = 20) cells presented bursts of action potentials (APs) to an intracellular depolarizing current injection and paroxysmal depolarization shifts (PDSs) to white matter stimulation. Synaptic bursting (SB, n = 22) cells presented only PDSs. Nonbursting (NB, n = 10) cells presented no burst after either synaptic stimulation or depolarizing current injection. Results were compared with those obtained from NB neurons (n = 4) recorded in slices from saline-infused rats. 2. In all of the recorded neurons, bath application of norepinephrine (NE, 10 and 100 microM) provoked a depolarization (1-5 mV) associated with a decrease in input K+ conductance having a mean reversal potential at -90 to -102 mV, not significantly different for bursting and nonbursting cells. This reversal potential differed from that of Cl(-)-mediated inhibitory postsynaptic potentials (-70 mV) elicited in NB cells by electrical stimulation of the white matter. 3. In IB cells, the NE-induced depolarization replaced the intrinsic bursts by a sustained repetitive discharge of single APs and caused intrinsic bursts to appear during previously subthreshold depolarizing current pulses. These NE-increased activities were abolished by dihydropyridine nitrendipine (1 microM) and by Cd2+ (0.5 mM) or Co2+ (2 mM), thus confirming that Ca2+ currents contribute to burst generation in IB cells. 4. In both NB and SB cells recorded in slices from GWS rats, NE provoked the appearance of intrinsic bursts of APs during steps of depolarizing current injections. In addition, in NB cells, NE caused synaptic bursts to appear after white matter stimulation. These NE-induced bursts were dihydropyridine (nitrendipine, 1 microM)- and Cd2+ (0.5 mM)- or Co2+ (2 mM)-sensitive and were related to an increased AP-afterdepolarization. The fast AP-afterhyperpolarization was not affected by NE. In NB cells recorded in slices from saline-infused rats (n = 4) NE did not provoke the appearance of bursts even when stimulation intensity was increased up to three times.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 本研究的目的是确定去甲肾上腺素能神经传递在从呈现γ-氨基丁酸(GABA)戒断综合征(GWS)的大鼠获取的新皮质切片中细胞内记录的神经元活动中的作用。GWS是一种局灶性癫痫,继发于慢性皮质内GABA注入躯体运动皮质中断之后。在癫痫病灶区域记录的神经元(n = 52)为爆发性或非爆发性细胞。固有爆发性(IB,n = 20)细胞在细胞内注入去极化电流时会出现动作电位(AP)爆发,并在白质刺激时出现阵发性去极化偏移(PDS)。突触爆发性(SB,n = 22)细胞仅出现PDS。非爆发性(NB,n = 10)细胞在突触刺激或去极化电流注入后均未出现爆发。将结果与从注入生理盐水的大鼠切片中记录的NB神经元(n = 4)获得的结果进行比较。2. 在所有记录的神经元中,浴用去甲肾上腺素(NE,10和100微摩尔)引发去极化(1 - 5毫伏),伴有输入钾离子电导降低,平均反转电位在 - 90至 - 102毫伏,爆发性和非爆发性细胞之间无显著差异。该反转电位与白质电刺激在NB细胞中引发的氯离子介导的抑制性突触后电位( - 70毫伏)不同。3. 在IB细胞中,NE诱导的去极化用单个AP的持续重复放电取代了固有爆发,并使固有爆发在先前阈下去极化电流脉冲期间出现。这些NE增强的活动被二氢吡啶尼群地平(1微摩尔)以及Cd2 +(0.5毫摩尔)或Co2 +(2毫摩尔)消除,从而证实钙离子电流有助于IB细胞中爆发的产生。4. 在GWS大鼠切片中记录的NB和SB细胞中,NE在去极化电流注入步骤期间引发AP的固有爆发出现。此外,在NB细胞中,NE在白质刺激后导致突触爆发出现。这些NE诱导的爆发对二氢吡啶(尼群地平,1微摩尔)、Cd2 +(0.5毫摩尔)或Co2 +(2毫摩尔)敏感,并且与AP后去极化增加有关。快速AP后超极化不受NE影响。在注入生理盐水的大鼠切片中记录的NB细胞(n = 4)中,即使刺激强度增加至三倍,NE也不会引发爆发出现。(摘要截断于400字)

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