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首页> 外文期刊>MedChemComm >N,N '-Disubstituted thiourea and urea derivatives: design, synthesis, docking studies and biological evaluation against nitric oxide synthase
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N,N '-Disubstituted thiourea and urea derivatives: design, synthesis, docking studies and biological evaluation against nitric oxide synthase

机译:N,N'-双取代硫脲和尿素衍生物:设计,合成,对接研究和针对一氧化氮合酶的生物学评估

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摘要

The synthesis and biological evaluation of new types of N,N'-disubstituted thiourea and urea derivatives as inhibitors of both neuronal nitric oxide synthase (nNOS) and inducible nitric oxide synthase (iNOS) are described. These compounds have been designed by reduction of the carbonyl group in the thiourea and urea kynurenamine derivatives 3 previously synthesized by our research group. The synthetic route performed to this new family also allows us to obtain the molecules 3 with less synthetic steps and higher global yield. Regarding the biological results, in general, the new derivatives 4a-q inhibit the neuronal NOS isoform better than the inducible one. Furthermore, thioureas exhibit higher inhibition than ureas for both isoenzymes. Among all the tested compounds, 4g shows significant nNOS (80.6%) and iNOS (76.6%) inhibition values without inhibiting eNOS. This molecule could be an interesting starting point for the design of new inhibitors with application in neurological disorders where both isoenzymes are implicated such as Parkinson's disease.
机译:描述了新型N,N'-双取代硫脲和脲衍生物作为神经元一氧化氮合酶(nNOS)和诱导型一氧化氮合酶(iNOS)的抑制剂的合成和生物学评估。这些化合物是通过还原我们的研究小组先前合成的硫脲和尿素犬尿素衍生物3中的羰基设计的。对该新家族进行的合成路线也使我们能够以更少的合成步骤和更高的整体产率获得分子3。关于生物学结果,一般而言,新的衍生物4a-q对神经元NOS同工型的抑制作用优于诱导型。此外,对于两种同工酶,硫脲比脲具有更高的抑制作用。在所有测试的化合物中,4g均显示出显着的nNOS(80.6%)和iNOS(76.6%)抑制值,而没有抑制eNOS。该分子可能是设计新抑制剂的有趣起点,该抑制剂可用于涉及两种同工酶(如帕金森氏病)的神经系统疾病。

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