首页> 外文期刊>Journal of Medicinal Chemistry >Synthesis of potential antidipsotropic isoflavones: inhibitors of the mitochondrial monoamine oxidase-aldehyde dehydrogenase pathway.
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Synthesis of potential antidipsotropic isoflavones: inhibitors of the mitochondrial monoamine oxidase-aldehyde dehydrogenase pathway.

机译:潜在的反扩散异黄酮的合成:线粒体单胺氧化酶-醛脱氢酶途径的抑制剂。

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Recently we have shown that daidzin, the major active principle of an ancient herbal treatment for "alcohol addiction", suppresses ethanol intake in alcohol-preferring laboratory animals. Further, we have identified the monoamine oxidase (MAO)-aldehyde dehydrogenase (ALDH-2) pathway of the mitochondria as the potential site of action of daidzin. Daidzin analogues that potently inhibit ALDH-2 but have no or little effect on MAO are most antidipsotropic, whereas those that also inhibit MAO exhibit little, if any, antidipsotropic activity. Therefore, in the design and synthesis of more potent antidipsotropic analogues, structural features important for the inhibition of both ALDH-2 and MAO must be taken into consideration. To gain further information on the structure-activity relationships at the inhibitor binding sites of ALDH-2 and MAO, we prepared 44 analogues of daidzin and determined their potencies for ALDH-2 and MAO inhibition. Results indicate that a sufficient set of criteria for a potent antidipsotropic analogue is an isoflavone with a free 4'-OH function and a straight-chain alkyl substituent at the 7 position that has a terminal polar function such as -OH, -COOH, or -NH(2). The preferable chain lengths for the 7-O-omega-hydroxy, 7-O-omega-carboxy, and 7-O-omega-amino subsitutents are 2 < or = n < or = 6, 5 < or = n < or = 10, and n > or = 4, respectively. Analogues that meet these criteria have increased potency for ALDH-2 inhibition and/or decreased potency for MAO inhibition and therefore are likely to be potent antidipsotropic agents.
机译:最近,我们发现黄豆苷是古代中草药治疗“酒精成瘾”的主要活性成分,可以抑制嗜酒精的实验动物摄入乙醇。此外,我们已经确定线粒体的单胺氧化酶(MAO)-醛脱氢酶(ALDH-2)途径是大豆苷元的潜在作用位点。有效抑制ALDH-2但对MAO没有影响或几乎没有影响的黄豆苷类似物大多数具有抗扩散活性,而那些也抑制MAO的黄豆苷类似物则几乎没有抗扩散活性。因此,在设计和合成更有效的抗扩散类似物时,必须考虑对于抑制ALDH-2和MAO均重要的结构特征。为了获得有关ALDH-2和MAO抑制剂结合位点的构效关系的进一步信息,我们制备了大豆苷的44种类似物,并确定了它们对ALDH-2和MAO抑制的能力。结果表明,对于有效的抗扩散类似物,足够的一组标准是具有游离4'-OH功能和7位具有末端极性功能的直链烷基取代基的异黄酮,例如-OH,-COOH或-NH(2)。 7-O-ω-羟基,7-O-ω-羧基和7-O-ω-氨基取代基的优选链长为2 <或= n <或= 6、5 <或= n <或= 10,且n>或= 4。满足这些标准的类似物具有增加的ALDH-2抑制能力和/或降低的MAO抑制能力,因此可能是有效的抗扩散剂。

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