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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Effects of methylphenidate analogues on phenethylamine substrates for the striatal dopamine transporter: potential as amphetamine antagonists?
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Effects of methylphenidate analogues on phenethylamine substrates for the striatal dopamine transporter: potential as amphetamine antagonists?

机译:哌醋甲酯类似物对纹状体多巴胺转运蛋白的苯乙胺底物的影响:有可能作为苯丙胺拮抗剂吗?

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Methylphenidate (MPD) was found to inhibit competitively the striatal dopamine transporter (DAT) and bind at sites on the DAT in common with both cocaine (a non-substrate site ligand) and amphetamine (a substrate site ligand). Some methylphenidate analogues modified on the aromatic ring and/or at the nitrogen were tested to determine whether the profile of inhibition could be altered. None was found to stimulate the release of dopamine in the time frame (< or = 60 s) of the experiments conducted, and each of the analogues tested was found to noncompetitively inhibit the transport of dopamine. It was found that halogenating the aromatic ring with chlorine (threo-3,4-dichloromethylphenidate hydrochloride; compound 1) increased the affinity of MPD to inhibit the transport of dopamine. A derivative of MPD with simultaneous, single methyl group substitutions on the phenyl ring and at the nitrogen (threo-N-methyl-4-methylphenidate hydrochloride; compound 2) bound at a site in common with MPD. A benzyl group positioned at the nitrogen (threo-N-benzylmethylphenidate hydrochloride; compound 3) imparted properties to the inhibitor in which binding at substrate and non-substrate sites could be distinguished. This analogue bound at a mutually interacting site with that of methylphenidate and had a K(int) value of 4.29 microM. Furthermore, the N-substituted analogues (compounds 2 and 3), although clearly inhibitors of dopamine transport, were found to attenuate dramatically the inhibition of dopamine transport by amphetamine, suggesting that the development of an antagonist for substrate analogue drugs of abuse may be possible.
机译:发现哌醋甲酯(MPD)竞争性抑制纹状体多巴胺转运蛋白(DAT),并与可卡因(非底物位点配体)和苯丙胺(底物位点配体)共同结合在DAT的位点上。测试了在芳香环和/或氮上修饰的一些哌醋甲酯类似物,以确定抑制谱是否可以改变。在所进行的实验的时间范围内(<或= 60 s),未发现刺激多巴胺释放的物质,并且发现所测试的每种类似物均非竞争性地抑制了多巴胺的转运。发现用氯(苏式3,4-二氯甲基哌啶盐酸盐;化合物1)卤化芳环增加了MPD抑制多巴胺转运的亲和力。 MPD衍生物,其在苯环和氮原子上同时被单个甲基取代(苏-N-甲基-4-甲基哌啶盐酸盐;化合物2),与MPD共有一个位点。位于氮上的苄基(苏木-N-苄基甲基哌啶盐酸盐;化合物3)赋予抑制剂以特性,其中可以区分在底物和非底物部位的结合。该类似物与哌醋甲酯的一个相互作用位点结合,其K(int)值为4.29 microM。此外,N-取代的类似物(化合物2和3),虽然显然是多巴胺转运的抑制剂,却能显着减弱苯丙胺对多巴胺转运的抑制作用,这表明可能开发出滥用底物类似物药物的拮抗剂。 。

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