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5-Phenyl substituted 1-methyl-2-pyridones and 4'-substituted biphenyl-4-carboxylic acids. synthesis and evaluation as inhibitors of steroid-5alpha-reductase type 1 and 2.

机译:5-苯基取代的1-甲基-2-吡啶酮和4'-取代的联苯-4-羧酸。合成和评估类固醇5α-还原酶1和2的抑制剂

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The synthesis of a series of 5-phenyl substituted 1-methyl-2-pyridones (I) and 4'-substituted biphenyl-4-carboxylic acids (II) as novel A-C ring steroidomimetic inhibitors of 5alpha-reductase (5alphaR) is described. Compounds 1-4 (I) were synthesized by palladium catalyzed cross coupling (Ishikura) reaction between diethyl(3-pyridyl)borane and aryl halides (1b-4b) followed by alpha-oxidation with sodium ferrocyanate of the 1-methyl-pyridinium salt. Inhibitors II (5-18) were obtained either by two successive Friedel-Crafts acylations from biphenyl (5a-10a) followed by saponification to yield the corresponding carboxylic acids (5-10) or by Suzuki cross coupling reaction to give the 4'-substituted biphenyl-4-carbaldehydes 11a-18a. The latter compounds were subjected to a Lindgren oxidation to yield compounds 11-18. The compounds were tested for inhibitory activity toward human and rat 5alphaR1 and 2. The test compounds inhibited 5alphaR, showing a broad range of inhibitory potencies. The best compound in series I was the N-(dicyclohexyl)-4-(1,2-dihydro-1-methyl-2-oxopyrid-5-yl)benzamide 4 exhibiting an IC(50) value for the human type 2 enzyme of 10 microM. In series II, the most active compound toward human type 2 isozyme was the 4'-(dicyclohexyl)acetyl-4-biphenyl carboxylic acid (10; IC(50)=220nM). Both series showed only marginal activity toward the human type 1 isozyme. In conclusion, the biphenyl carboxylic acids (II) are more appropriate for 5alphaR inhibition than the 5-phenyl-1-methyl-2-pyridones (I). Especially the 4'-carbonyl compounds 5-10 represent new lead structures for the development of novel human type 2 inhibitors.
机译:描述了一系列5-苯基取代的1-甲基-2-吡啶酮(I)和4'-取代的联苯-4-羧酸(II)作为5α-还原酶(5alphaR)的新型A-C环类固醇抑制剂的合成。化合物1-4(I)通过二乙基(3-吡啶基)硼烷和芳基卤化物(1b-4b)之间的钯催化交叉偶联(Ishikura)反应,然后用1-甲基吡啶盐的亚铁氰化钠进行α-氧化反应合成。抑制剂II(5-18)通过联苯(5a-10a)的两次连续Friedel-Crafts酰化反应,然后皂化得到相应的羧酸(5-10)或通过Suzuki交叉偶联反应得到4'-取代的联苯-4-甲醛11a-18a。后面的化合物经受Lindgren氧化,得到化合物11-18。测试了化合物对人和大鼠5alphaR1和2的抑制活性。测试化合物抑制5alphaR,显示出广泛的抑制效力。系列I中最好的化合物是N-(二环己基)-4-(1,2-二氢-1-甲基-2-氧代吡啶-5-基)苯甲酰胺4对人2型酶的IC(50)值10 microM。在系列II中,对人类2型同工酶最具活性的化合物是4'-((二环己基)乙酰基-4-联苯羧酸(10; IC(50)= 220nM)。这两个系列仅显示出对人1型同工酶的边缘活性。总之,联苯羧酸(II)比5-苯基-1-甲基-2-吡啶酮(I)更适合抑制5alphaR。尤其是4'-羰基化合物5-10代表了开发新型人类2型抑制剂的新的先导结构。

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