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Antagonistic action of pitrazepin on human and rat GABAA receptors

机译:哌曲嗪对人和大鼠GABAA受体的拮抗作用

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摘要

Pitrazepin, 3-(piperazinyl-1)-9H-dibenz(c,f) triazolo(4,5-a)azepin is a piperazine antagonist of GABA in a variety of electrophysiological and in vitro binding studies involving GABA and glycine receptors. In the present study we have investigated the effects of pitrazepin, and the GABAA antagonist bicuculline, on membrane currents elicited by GABA in Xenopus oocytes injected with rat cerebral cortex mRNA or cDNAs encoding α1β2 or α1β2γ2S human GABAA receptor subunits.The three types of GABAA receptors expressed were reversibly antagonized by bicuculline and pitrazepin in a concentration-dependent manner. GABA dose-current response curves for the three types of receptors were shifted to the right, in a parallel manner, by increasing concentrations of pitrazepin.Schild analyses gave pA2 values of 6.42±0.62, n=4, 6.41±1.2, n=5 and 6.21±1.24, n=6, in oocytes expressing rat cerebral cortex, α1β2 or α1β2γ2S human GABAA receptors respectively (values are given as means±s.e.mean), and the Hill coefficients were all close to unity. All this is consistent with the notion that pitrazepin acts as a competitive antagonist of these GABAA receptors; and that their antagonism by pitrazepin is not strongly dependent on the subunit composition of the receptors here studied.Since pitrazepin has been reported to act also at the benzodiazepine binding site, we studied the effect of the benzodiazepine antagonist Ro 15-1788 (flumazenil) on the inhibition of α1β2γ2S receptors by pitrazepin. Co-application of Ro 15-1788 did not alter the inhibiting effect of pitrazepin. Moreover, pitrazepin did not antagonize the potentiation of GABA-currents by flunitrazepam. All this suggests that pitrazepin does not affect the GABA receptor-chloride channel by interacting with the benzodiazepine receptor site.
机译:在多种涉及GABA和甘氨酸受体的电生理学和体外结合研究中,Pitrazepin,3-(哌嗪基-1)-9H-dibenz(c,f)三唑并(4,5-a)azepin是GABA的哌嗪拮抗剂。在本研究中,我们研究了pitrazepin和GABAA拮抗剂双小分子对注射大鼠脑皮质mRNA或编码α1β2或α1β2γ2S人GABAA受体亚基的非洲爪蟾卵母细胞中GABA引起的膜电流的影响。三种类型的GABAA受体表达的表达被浓度和浓度的双小分子和pitrazepin可逆地拮抗。通过增加pitrazepin的浓度,三种受体的GABA剂量-电流响应曲线平行向右移动.Schild分析得出pA2值为6.42±0.62,n = 4,6.41±1.2,n = 5在表达大鼠大脑皮层的卵母细胞中,α1β2或α1β2γ2S人GABAA受体分别为6.21±1.24(n = 6)(值以平均值±标准差给出),希尔系数均接近于1。所有这些都与哌曲嗪可作为这些GABAA受体的竞争性拮抗剂的观点相一致。而且据报道,由于pitrazepin也作用于苯并二氮杂binding结合位点,因此我们研究了苯二氮卓拮抗剂Ro 15-1788(氟马西尼)对pidiazepin的拮抗作用。哌曲嗪对α1β2γ2S受体的抑制作用。 Ro 15-1788的共同施用不会改变pitrazepin的抑制作用。此外,哌曲嗪不拮抗氟尼西epa对GABA电流的增强作用。所有这些表明,哌曲嗪不会通过与苯并二氮杂receptor受体位点相互作用而影响GABA受体-氯离子通道。

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