Synthesis, Molecular Modeling, and Biological Evaluation of Novel Tetrahydro-β-Carboline Hydantoin and Tetrahydro-β-Carboline Thiohydantoin Derivatives as Phosphodiesterase 5 Inhibitors.

International Journal of Medicinal Chemistry Pub Date : 2011-01-01 Epub Date: 2011-02-23 DOI:10.1155/2011/562421
Ashraf H Abadi, Jochen Lehmann, Gary A Piazza, Mohammad Abdel-Halim, Mohamed S M Ali
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引用次数: 3

Abstract

Two series of fused tetrahydro-β-carboline hydantoin and tetrahydro-β-carboline thiohydantoin derivatives with a pendant 2,4-dimethoxyphenyl at position 5 were synthesized, and chiral carbons at positions 5 and 11a swing from R,R to R,S, S,R, and S,S. The prepared analogues were evaluated for their capacity to inhibit phosphodiesterase 5 (PDE5) isozyme. The R absolute configuration of C-5 in the β-carboline hydantoin derivatives was found to be essential for the PDE5 inhibition. Chiral carbon derived from amino acid even if of the S configuration (L-tryptophan) may lead to equiactive or more active isomers than those derived from amino acid with the R configuration (D-tryptophan). This expands the horizon from which efficient PDE5 inhibitors can be derived and may offer an economic advantage. The thiohydantoin derivatives were less active than their hydantoin congeners.

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新型磷酸二酯酶5抑制剂四氢β-羰基硫代酰脲和四氢β-羰基硫代酰脲衍生物的合成、分子模拟及生物学评价
在5位上有2,4-二甲氧基苯基的四氢β-羰基邻苯二甲酸乙酯衍生物和四氢β-羰基邻苯二甲酸乙酯邻苯二甲酸乙酯衍生物被合成,5和11a位的手性碳从R,R摆动到R,S, S,R和S,S。制备的类似物对磷酸二酯酶5 (PDE5)同工酶的抑制能力进行了评价。β-羰基海因衍生物中C-5的R绝对构型对PDE5的抑制作用至关重要。从S构型的氨基酸(l -色氨酸)衍生的手性碳可能产生与从R构型的氨基酸(d -色氨酸)衍生的手性碳相同或更活跃的异构体。这扩大了有效的PDE5抑制剂可以衍生的范围,并可能提供经济优势。硫代氢妥英衍生物的活性低于其同类氢妥英衍生物。
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期刊介绍: International Journal of Medicinal Chemistry is a peer-reviewed, Open Access journal that publishes original research articles as well as review articles in all areas of chemistry associated with drug discovery, design, and synthesis. International Journal of Medicinal Chemistry is a peer-reviewed, Open Access journal that publishes original research articles as well as review articles in all areas of chemistry associated with drug discovery, design, and synthesis.
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