首页> 外文期刊>Anesthesiology >Enhancement of GABAergic tonic currents by midazolam and noradrenaline in rat substantia gelatinosa neurons in vitro.
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Enhancement of GABAergic tonic currents by midazolam and noradrenaline in rat substantia gelatinosa neurons in vitro.

机译:咪达唑仑和去甲肾上腺素在体外对大鼠明胶神经元神经元的GABA能补品电流的增强作用。

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BACKGROUND: Substantia gelatinosa of the spinal dorsal horn is crucial for transmission and modification of noxious stimuli. Previous studies have demonstrated that intrathecal midazolam, a benzodiazepine agonist, enhanced perioperative analgesia. Not only synaptic but also extrasynaptic inhibitory currents contribute to modification of noxious stimuli. Thus, the effects of midazolam on extrasynaptic gamma-aminobutyric acid (GABA) type A receptors in substantia gelatinosa neurons and interaction with noradrenaline, a transmitter of the descending inhibitory systems, were investigated. METHODS: Using whole cell patch-clamp technique in the adult rat spinal cord slices, extrasynaptic GABAergic currents were recorded in substantia gelatinosa neurons in the presence of gabazine (1 microm), which blocked synaptic GABAergic currents, and then midazolam (5 microm) and noradrenaline (20 microm) were applied. RESULTS: Bath application of midazolam induced tonic outward currents in the presence of gabazine. Although the decay time of synaptic current was prolonged, neither frequency nor amplitude was affected by midazolam. In contrast, the application of noradrenaline markedly increased both frequency and amplitude of synaptic currents with a slight enhancement of tonic currents. Coapplication of noradrenaline and midazolam markedly increased tonic currents, and the increase was much greater than the sum of currents induced by noradrenaline and midazolam. CONCLUSIONS: Midazolam had much larger effects on extrasynaptic GABA type A receptors than the synaptic receptors, suggesting a role of the enhancement of GABAergic extrasynaptic currents in the midazolam-induced analgesia. Because noradrenaline is shown to increase extrasynaptic GABA concentration, simultaneous administration of noradrenaline and midazolam may enhance the increased GABA action by midazolam, thereby resulting in an increase in tonic extrasynaptic currents.
机译:背景:脊髓背角的明胶质对于有害刺激的传递和改变至关重要。先前的研究表明,鞘内注射咪达唑仑是苯二氮卓类激动剂,可增强围手术期镇痛效果。不仅突触,而且突触外抑制电流也有助于有害刺激的改变。因此,研究了咪达唑仑对明胶质神经元中突触外γ-氨基丁酸(GABA)A型受体的作用以及与降抑制系统的递质肾上腺素的相互作用。方法:使用全细胞膜片钳技术在成年大鼠脊髓切片上,在存在gabazine(1微米)的情况下在明胶质神经元中记录突触外GABA能电流,这会阻止突触GABA能电流,然后是咪达唑仑(5 microm)和使用去甲肾上腺素(20微米)。结果:在川ab嗪存在下,咪达唑仑在浴中诱导进补外向电流。尽管延长了突触电流的衰减时间,但咪达唑仑对频率和振幅均无影响。相反,去甲肾上腺素的应用显着增加了突触电流的频率和幅度,而滋补电流略有增强。去甲肾上腺素和咪达唑仑的共同应用显着增加了滋补电流,并且该增加量远大于去甲肾上腺素和咪达唑仑诱导的电流之和。结论:咪达唑仑对突触外GABA A型受体的作用比突触受体大得多,表明在咪达唑仑诱导的镇痛中增强GABA能突触外电流的作用。因为显示去甲肾上腺素会增加突触外GABA的浓度,所以同时施用去甲肾上腺素和咪达唑仑可能会增强咪达唑仑增加的GABA作用,从而导致强直性突触外电流的增加。

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