首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Mechanisms of modulation of pregnanolone on glycinergic response in cultured spinal dorsal horn neurons of rat.
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Mechanisms of modulation of pregnanolone on glycinergic response in cultured spinal dorsal horn neurons of rat.

机译:孕烷醇酮对大鼠脊髓背角神经元糖原反应的调节机制。

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摘要

The glycine receptors and neurosteroids in spinal cord are both implicated in nociceptive signal processing. However, the modulatory effects of neurosteroid pregnanolone (5beta-pregnan-3alpha-ol-20-one) on native glycine receptors remain unclear. In the present study, we examined the effects of pregnanolone and its three isomers on glycine receptors by using whole-cell patch-clamp technique. Our results showed that pregnanolone reversibly inhibited the amplitude of glycine-induced current mediated by native glycine receptors and recombinant alpha1-, alpha2-, alpha3- and alpha1beta-glycine receptors. In cultured spinal dorsal horn neurons of rats, pregnanolone inhibited the glycine-induced current in dose-dependent manner, with an antagonist concentration inducing half-maximal response of 1.0+/-0.3 microM. The inhibitory effect of pregnanolone on glycine-induced current was voltage-independent and pregnanolone shifted the concentration-response curve for glycine-induced current rightward in a parallel manner without altering the maximal value and Hill coefficient. The isomer of pregnanolone, allopregnanolone (5alpha-pregnan-3alpha-ol-20-one) slightly enhanced glycine-induced current, whereas iso-pregnanolone (5beta-pregnan-3beta-ol-20-one) and iso-allopregnanolone (5alpha-pregnan-3beta-ol-20-one) did not affect the glycine-induced current significantly in cultured spinal dorsal horn neurons. Thus, our results suggest that the inhibitory effect of pregnanolone on glycine-induced current is of a competitive type and depends on the stereo structure of pregnanolone. Furthermore, pregnanolone decreased the amplitude and frequency of the glycinergic miniature inhibitory postsynaptic currents. Through modulating the glycinergic inhibitory neurotransmission, pregnanolone may affect the nociceptive sensory processing under physiological and pathological conditions.
机译:脊髓中的甘氨酸受体和神经固醇均与伤害性信号处理有关。然而,神经甾体孕烷醇酮(5β-pregnan-3alpha-ol-20-one)对天然甘氨酸受体的调节作用仍不清楚。在本研究中,我们通过使用全细胞膜片钳技术检查了孕烷醇酮及其三个异构体对甘氨酸受体的影响。我们的研究结果表明,孕烷醇酮可逆地抑制天然甘氨酸受体和重组α1,α2,α3和α1β-甘氨酸受体介导的甘氨酸诱导电流的幅度。在培养的大鼠脊髓背角神经元中,孕烯醇酮以剂量依赖的方式抑制甘氨酸诱导的电流,拮抗剂浓度诱导1.0-0.3 microM的半最大响应。孕烷醇酮对甘氨酸诱导电流的抑制作用与电压无关,孕烷醇酮以平行方式右移甘氨酸诱导电流的浓度-响应曲线,而不会改变最大值和希尔系数。孕烯醇酮的异构体,Allopregnanolone(5alpha-pregnan-3alpha-ol-20-one)略微增强了甘氨酸诱导的电流,而异孕烯醇酮(5beta-pregnan-3beta-ol-20-one)和异alregregnanolone(5alpha- pregnan-3beta-ol-20-one)在培养的脊髓背角神经元中没有显着影响甘氨酸诱导的电流。因此,我们的结果表明,孕烷醇酮对甘氨酸诱导的电流的抑制作用是竞争性的,并且取决于孕烷醇酮的立体结构。此外,孕烯醇酮降低了甘氨酸能微抑制突触后电流的幅度和频率。通过调节甘氨酸抑制性神经传递,孕烯醇酮可能会影响生理和病理条件下的伤害性感觉过程。

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