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Inhibitory effects of amiloride on the current mediated by native GABAA receptors in cultured neurons of rat inferior colliculus.

机译:阿米洛利对大鼠下丘脑神经元中天然GABA A受体介导的电流的抑制作用。

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1. The diuretic amiloride is known to modulate the activity of several types of ion channels and membrane receptors in addition to its inhibitory effects on many ion transport systems. However, the effects of amiloride on some important ion channels and receptors, such as GABA(A) receptors, in the central nervous system have not been characterized. 2. In the present study, we investigated the functional action of amiloride on native GABA(A) receptors in cultured neurons of rat inferior colliculus using whole-cell patch-clamp recordings. 3. Amiloride reversibly inhibited the amplitude of the GABA-induced current (I(GABA)) in a concentration-dependent manner (IC(50) 454 +/- 24 micromol/L) under conditions of voltage-clamp with a holding potential at -60 mV. The inhibition depended on drug application mode and was independent of membrane potential. Amiloride did not change the reversal potential of I(GABA). Moreover, amiloride induced a parallel right-ward shift in the concentration-response curve for I(GABA) without altering the maximal value and Hill coefficient. 4. The present study shows that amiloride competitively inhibits the current mediated by native GABA(A) receptors in the brain region, probably via a direct action on GABA-binding sites on the receptor. The findings suggest that the functional actions of amiloride on GABA(A) receptors may result in possible side-effects on the central nervous system in the case of direct application of this drug into the cerebrospinal fluid for treatment of diseases such as brain tumours.
机译:1.已知利尿剂阿米洛利除了对许多离子传输系统具有抑制作用外,还可以调节几种类型的离子通道和膜受体的活性。但是,阿米洛利对中枢神经系统中某些重要的离子通道和受体(例如GABA(A)受体)的作用尚无定论。 2.在本研究中,我们使用全细胞膜片钳记录研究了阿米洛利对大鼠下丘脑培养神经元中天然GABA(A)受体的功能作用。 3.在电压钳位条件下,阿米洛利以浓度依赖的方式(IC(50)454 +/- +/- 24 micromol / L)可逆地抑制GABA诱导的电流(I(GABA))的幅度。 -60毫伏抑制作用取决于药物施用方式,并且与膜电位无关。阿米洛利未改变I(GABA)的逆转潜力。此外,阿米洛利在I(GABA)的浓度-响应曲线中引起了平行的向右移动,而没有改变最大值和Hill系数。 4.本研究表明,阿米洛利可能通过对受体上GABA结合位点的直接作用竞争性地抑制大脑区域中天然GABA(A)受体介导的电流。研究结果表明,如果将阿米洛利直接应用到脑脊液中治疗脑肿瘤等疾病,则阿米洛利对GABA(A)受体的功能作用可能对中枢神经系统产生可能的副作用。

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