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首页> 外文期刊>Neuropharmacology >Pharmacological comparison of P2X receptors on rat coeliac, mouse coeliac and mouse pelvic ganglion neurons.
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Pharmacological comparison of P2X receptors on rat coeliac, mouse coeliac and mouse pelvic ganglion neurons.

机译:大鼠腹腔,小鼠腹腔和小鼠骨盆神经节神经元上P2X受体的药理比较。

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摘要

Characteristics of P2X receptors on neurons of the rat coeliac, mouse coeliac and mouse pelvic ganglia have been studied using the whole cell voltage-clamp technique. Fast application of ATP (100 microM) on to isolated neurons voltage clamped at -70 mV induced a slowly desensitising inward current in 96% of the cells tested. Concentration-response curves for ATP yielded EC50 values of 86 microM, 64 microM and 123 microM, for rat coeliac, mouse coeliac and mouse pelvic ganglion neurons, respectively, while alpha,beta-methylene ATP was inactive. The response to ATP was antagonised by suramin, Cibacron blue and pyridoxalphosphate-6-azophenyl-2',4'-disulphonic acid (PPADS). The potency of ATP was increased by extracellular acidification and by co-application of micromolar concentrations of Zn2+, while raising pH decreased it. On rat coeliac ganglion neurons, the EC50 values for ATP were 35 microM and 253 microM at pH 6.8 and 8.0, respectively. On mouse coeliac and pelvic ganglion neurons, altering the pH produced comparable changes. In conclusion, our results indicate that, in contrast to the guinea-pig coeliac ganglion, the characteristics of the P2X receptors present on rat coeliac, mouse coeliac and mouse pelvic ganglia are all identical to those present on rat pelvic ganglion, i.e. they are homomeric P2X2 receptors, or heteromultimers with P2X2 being the dominant subunit.
机译:已使用全细胞电压钳技术研究了大鼠腹腔,小鼠腹腔和小鼠骨盆神经节神经元上P2X受体的特征。将ATP(100 microM)快速施加到电压固定在-70 mV的孤立神经元上,可在96%的受试细胞中引起缓慢的脱敏内向电流。 ATP的浓度-响应曲线分别对大鼠腹腔,小鼠腹腔和小鼠骨盆神经节神经元的EC50值分别为86 microM,64 microM和123 microM,而α,β-亚甲基ATP无效。苏拉明,西巴龙蓝和吡ido草磷酸-6-偶氮苯基-2',4'-二磺酸(PPADS)拮抗对ATP的反应。 ATP的效力通过细胞外酸化和微摩尔浓度的Zn2 +的共同施加而增加,而升高pH则使之降低。在大鼠腹腔神经节神经元上,在pH 6.8和8.0时ATP的EC50值分别为35 microM和253 microM。在小鼠腹腔和骨盆神经节神经元上,改变pH值产生了可比的变化。总之,我们的结果表明,与豚鼠腹腔神经节相反,大鼠腹腔,小鼠腹腔和小鼠骨盆神经节上存在的P2X受体的特征与大鼠骨盆神经节上存在的P2X受体的特征完全相同,即它们是同源的P2X2受体或以P2X2为主要亚基的异源多聚体。

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