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Potent, Highly Selective, and Orally Bioavailable Gem-Difluorinated Monocationic Inhibitors of Neuronal Nitric Oxide Synthase

机译:神经元一氧化氮合酶的强效,高选择性和口服生物利用宝石二氟单阳离子抑制剂。

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摘要

In our efforts to discover neuronal isoform selective nitric oxide synthase (NOS) inhibitors, we have developed a series of compounds containing a pyrrolidine ring with two stereogenic centers. The enantiomerically pure compounds, (S,S) versus (R,R), exhibited two different binding orientations, with (R,R) inhibitors showing much better potency and selectivity. To improve the bioavailability of these inhibitors, we have introduced a CF2 moiety geminal to an amino group in the long tail of one of these inhibitors, which reduced its basicity, resulting in compounds with monocationic character under physiological pH conditions. Biological evaluations have led to a nNOS inhibitor with a Ki of 36 nM and high selectivity for nNOS over eNOS (3800-fold) and iNOS (1400-fold). MM-PBSA calculations indicated that the low pKa NH is, at least, partially protonated when bound to the active site. A comparison of rat oral bioavailability of the difluorinated compound to the parent molecule shows 22% for the difluorinated compound versus essentially no oral bioavailability for the parent compound. This indicates that the goal of this research to make compounds with only one protonated nitrogen atom at physiological pH to allow for membrane permeability, but which can become protonated when bound to NOS, has been accomplished.
机译:在努力发现神经元同工型选择性一氧化氮合酶(NOS)抑制剂的过程中,我们开发了一系列含有带有两个立体生成中心的吡咯烷环的化合物。对映体纯的化合物(S,S)与(R,R)表现出两种不同的结合方向,其中(R,R)抑制剂表现出更好的效价和选择性。为了提高这些抑制剂的生物利用度,我们在其中一种抑制剂的长尾部的氨基上引入了一个与氨基相邻的CF 2 部分,这降低了其碱性,导致在生理条件下具有单阳离子特性的化合物pH条件。生物学评估导致了一种nNOS抑制剂,其ksub i值为36 nM,对nNOS的选择性高于eNOS(3800倍)和iNOS(1400倍)。 MM-PBSA计算表明,低pK a NH当与活性位点结合时至少部分质子化。二氟化合物与母体分子的大鼠口服生物利用度的比较表明,二氟化合物的口服生物利用度为22%,而母体化合物的口服生物利用度基本上没有。这表明该研究的目标是在生理pH下制备仅具有一个质子化氮原子以允许膜渗透的化合物,但当与NOS结合时可质子化。

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  • 来源
    《Journal of the American Chemical Society》 |2010年第40期|p.14229-14238|共10页
  • 作者单位

    Departments of Chemistry and Biochemistry, Molecular Biology, and Cell Biology, Center for Molecular Innovation and Drug Discovery, Chemistry of Life Processes Institute, Northwestern University, 2145 Sheridan Road, Evanston, Illinois 60208-3113, Departme;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 00:50:22

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