首页> 外文期刊>Journal of enzyme inhibition and medicinal chemistry. >New N-pyridinyl(methyl)-indole-2- and 3-(alkyl)carboxamides and derivatives acting as systemic and topical inflammation inhibitors.
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New N-pyridinyl(methyl)-indole-2- and 3-(alkyl)carboxamides and derivatives acting as systemic and topical inflammation inhibitors.

机译:新的N-吡啶基(甲基)-吲哚-2-和3-(烷基)羧酰胺及其衍生物可作为全身和局部炎症抑制剂。

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摘要

A series of novel N-substituted-(indol-2-yl)carboxamides (12-18) and (indol-3-alkyl)carboxamides (25-31) were synthesized and evaluated as inhibitors of the inflammation process. Pharmacomodulation at the level of the amidic nitrogen by incorporation of the previously described pharmacophoric moieties 6-aminolutidine, beta-picolylamine, 4-aminopyridine and piperazine was investigated; only two compounds (12) and (31) exhibited significant (approximately 40%) inhibitory effect in the carrageenan-induced rat paw edema after oral administration of a dose of 0.1 mM kg(-1). Replacement of the indole core by indazole failed to increase activity. Incorporation of an alkyl chain spacer led to more efficient compounds (46-52) especially in the indolepropanamide sub-series. Determination of the efficiency of the most active compounds on topical inflammation, by measuring reduction of ear thickness in the acute tetradecanoyl phorbol acetate (TPA)-induced mouse ear swelling assay, confirmed the high potency of propanamides (49) and (51) after oral administration: ID50 = 0.041 +/- 0.013 and 0.042 +/- 0.016 mM kg(-1) respectively. The less toxic propanamide (51) exerted a high level of inhibitory activity after topical application of 2 x 100 microg/ear: 78 +/- 2%.
机译:合成了一系列新颖的N-取代的(吲哚-2-基)羧酰胺(12-18)和(吲哚-3-烷基)羧酰胺(25-31),并评估了其为炎症过程的抑制剂。通过掺入先前描述的药效基团6-氨基二甲基吡啶,β-吡啶甲基胺,4-氨基吡啶和哌嗪,研究了在酰胺氮水平上的药物调节。口服施用0.1 mM kg(-1)的剂量后,只有两种化合物(12)和(31)在角叉菜胶诱导的大鼠爪水肿中显示出明显的抑制作用(约40%)。用吲唑代替吲哚核不能增加活性。烷基链间隔基的引入导致更有效的化合物(46-52),尤其是在吲哚丙酰胺亚系列中。通过在急性十四烷酰佛波乙酸酯(TPA)诱导的小鼠耳朵肿胀试验中测量耳朵厚度的减少,确定最活性化合物对局部炎症的功效,证实了口服后丙酰胺(49)和(51)的高效力给药:ID50分别为0.041 +/- 0.013和0.042 +/- 0.016 mM kg(-1)。毒性较低的丙酰胺(51)在局部应用2 x 100微克/耳后表现出较高的抑制活性:78 +/- 2%。

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