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首页> 外文期刊>Journal of Medicinal Chemistry >Synthesis and Biological Characterization of L-N~6-(1-Iminoethyl)lysine 5-Tetrazole-amide, a Prodrug of a Selective iNOS Inhibitor
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Synthesis and Biological Characterization of L-N~6-(1-Iminoethyl)lysine 5-Tetrazole-amide, a Prodrug of a Selective iNOS Inhibitor

机译:选择性iNOS抑制剂的前体药物L-N〜6-(1-氨基乙基)赖氨酸5-四唑酰胺的合成及生物表征

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The 5-tetrazole amide of L-N~6-(1-iminoethyl)lysine (L-NIL), L-N~6-(1-iminoethyl)lysine 5-tetrazole amide (1), has been prepared and evaluated. In contrast to L-NIL, 1 is a stable, nonhygroscopic, crystalline solid. Unlike L-NIL, 1 has minimal inhibitory activity in vitro on human inducible nitric oxide synthase (iNOS). However, it is rapidly converted in vivo to L-NIL and produces dose-dependent inhibition of iNOS in acute and chronic models of inflammation in the rodent with efficacy comparable to L-NLL. In addition, both 1 and L-NIL exhibit significant and comparable in vivo selectivity for the inhibition of iNOS vs endothelial NOS. Doses approximately 80-fold greater than those that inhibited inflammation do not elevate systemic blood pressure. In summary, both the physical properties and the pharmacological profile of 1 make it an ideal molecule for preclinical and clinical studies on the role of selective iNOS inhibitors in mediating inflammatory disease processes.
机译:制备并评价了L-N〜6-(1-亚氨基乙基)赖氨酸的5-四唑酰胺(L-NIL),L-N〜6-(1-亚氨基乙基)赖氨酸5-四唑的酰胺(1)。与L-NIL相反,1是稳定的,不吸湿的结晶固体。与L-NIL不同,1在体外对人诱导型一氧化氮合酶(iNOS)的抑制作用最小。但是,它在体内迅速转化为L-NIL,并在啮齿动物的急性和慢性炎症模型中产生iNOS的剂量依赖性抑制,其功效可与L-NLL媲美。此外,1和L-NIL在抑制iNOS和内皮NOS方面均表现出显着且可比的体内选择性。比抑制炎症的剂量大约80倍的剂量不会升高全身性血压。总之,1的物理特性和药理学特性使其成为进行选择性iNOS抑制剂在介导炎症疾病过程中作用的临床前和临床研究的理想分子。

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