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首页> 外文期刊>European Journal of Pharmacology: An International Journal >Hydroxylated biphenyl derivatives are positive modulators of human GABA A receptors
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Hydroxylated biphenyl derivatives are positive modulators of human GABA A receptors

机译:羟基化的联苯基衍生物是人GABA A受体的阳性调节剂

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摘要

A series of 7 hydroxylated biphenyl derivatives (1-7) were prepared to evaluate their ability to modulate the function of several ligand gated ion channel (LGIC) recombinant receptors expressed in Xenopus laevis oocytes. Compounds 1, 3, 4, 6 and 7 are natural occurring compounds whereas the synthesis of compounds 2 and 5 was previously reported (Delogu et al., 2004; Fabbri et al., 2007). None of the compounds tested were able to modify, the activity of the strychnine-sensitive glycine receptor, or the activity of nicotinic receptor. The function of the 5HT 3A receptor was partially inhibited by all compounds tested, however this inhibition occurred at relatively high concentrations (100 μM). All compounds, with the exception of compound 6, potentiate the action of gamma-aminobutyric acid (GABA)-evoked Cl - currents in Xenopus laevis oocytes expressing recombinant human α 1β 2γ 2L GABA A receptors. Compounds 1, 2, 5 and 7 enhance the function of the GABA A receptor at concentrations higher than 3-10 μM. Compound 4 was the most efficacious. However, compound 3 was the most potent (EC 50 0.8 μM). The potency of compound 3 in modulating the function of the GABA A receptor was comparable to that of diazepam, propofol or allopregnanolone. The enhancement of the GABA evoked Cl - currents by compound 3 was not affected by flumazenil. Compound 3 did not induce loss of the righting reflex in rats suggesting that it is not an anesthetic agent, however, its ability in protecting the animals from seizures induced by picrotoxin confirm that its action occurs through the GABA A receptor.
机译:制备了一系列7个羟基化的联苯衍生物(1-7),以评估它们调节在Xenopus Laevis卵母细胞中表达的几种配体凝胶的离子通道(Lgic)重组受体的功能的能力。化合物1,3,4,6和7是天然存在的化合物,而先前已经报道了化合物2和5的合成(Delogu等,2004; Fabbri等,2007)。没有测试的化合物能够改变,苯胺敏感性甘氨酸受体的活性,或烟碱受体的活性。通过测试的所有化合物部分抑制5HT 3A受体的功能,但是这种抑制在相对高浓度(100μM)处发生。除了化合物6外,所有化合物除外,将γ-氨基丁酸(GABA)释放的Cl - 释放的Cl - 电流的作用外,表达重组人α1β2γ2LGABA受体的Xenopus Laevis卵母细胞。化合物1,2,5和7增强了GABA A受体在高于3-10μm的浓度。化合物4是最有效的。然而,化合物3是最有效的(EC 500.8μm)。化合物3在调节GABA A受体的功能效力是可比的地西泮,丙泊酚或四氢孕酮的。通过化合物3诱发的GABA诱发的Cl-电流的增强不受Flumazenil的影响。化合物3没有诱导大鼠右侧反射的损失,表明它不是一种麻醉剂,然而,它保护动物免受怯懦引起的癫痫发作的能力证实其作用通过GABA A受体发生。

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