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首页> 外文期刊>Journal of Medicinal Chemistry >Propofol analogues. Synthesis, relationships between structure and affinity at GABAA receptor in rat brain, and differential electrophysiological profile at recombinant human GABAA receptors.
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Propofol analogues. Synthesis, relationships between structure and affinity at GABAA receptor in rat brain, and differential electrophysiological profile at recombinant human GABAA receptors.

机译:异丙酚类似物。大鼠大脑中GABAA受体的合成,结构与亲和力之间的关系,以及重组人GABAA受体的差异电生理特征。

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A number of propofol (2,6-diisopropylphenol) congeners and derivatives were synthesized and their in vitro capability to affect GABAA receptors determined by the inhibition of the specific [35S]-tert-butylbicyclophosphorothionate ([35S]TBPS) binding to rat whole brain membranes. Introduction of halogen (Cl, Br, and I) and benzoyl substituents in the para position of the phenyl group resulted in ligands with higher potency at inhibiting [35S]TBPS binding. A quantitative structure-affinity relationship (QSAR) study demonstrated that affinity is enhanced by increases in lipophilicity of the ligand whereas affinity is adversely affected by increases in size of the substituent para to the phenolic hydroxyl group. Consistent with the displacement of [35S]TBPS and with the activation of GABAA receptors, we demonstrate that ligands displaying high affinity (i.e., 2-4, and 8) are able to increase GABA-stimulated chloride currents in oocytes expressing human GABAA receptors and to directly activate chloride currents in an electrophysiological assay. Among them, compound 4 showed a rather peculiar profile in the electrophysiological examination with cloned alpha1beta2gamma2 GABAA receptors. Indeed, compared to propofol, it displayed a much greater efficacy at potentiating GABA-elicited chloride currents, but a much lower efficacy at producing a direct activation of the chloride channel in the absence of GABA. This behavior may give to compound 4 pharmacological properties that are more similar to anxiolytic and anticonvulsant drugs than to those of general anesthetics.
机译:合成了许多丙泊酚(2,6-二异丙基苯酚)同源物和衍生物,并通过抑制与大鼠全脑的特异性[35S]-叔丁基双环磷硫代磷酸酯([35S] TBPS)结合,确定了它们影响GABAA受体的体外能力。膜。在苯基对位引入卤素(Cl,Br和I)和苯甲酰基取代基会导致配体具有更高的抑制[35S] TBPS结合的能力。定量结构亲和关系(QSAR)研究表明,通过提高配体的亲脂性,亲和力得到增强,而对位酚羟基的取代基尺寸增加,亲和力受到不利影响。与[35S] TBPS的置换和GABAA受体的激活相一致,我们证明了显示高亲和力(即2-4和8)的配体能够增加表达人GABAA受体的卵母细胞中GABA刺激的氯电流。在电生理测定中直接激活氯离子电流。其中,化合物4在克隆的alpha1beta2gamma2 GABAA受体的电生理检查中显示出相当特殊的特征。实际上,与丙泊酚相比,它在增强GABA引发的氯离子电流方面显示出更高的功效,而在不存在GABA的情况下,在直接激活氯离子通道方面显示出更低的功效。这种行为可能使化合物4的药理特性与抗焦虑药和抗惊厥药相比,与一般麻醉药更为相似。

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