Postovsky Institute of Organic Synthesis of the Ural Branch of the Russian Academy of Science, S. Kovalevskoi St., 22, Ekaterinburg, 620108, Russia; Ural Federal University Named After the First President of Russia B.N. Yeltsin, Mira St. 19, Ekaterinburg, 620002, Russia.
Postovsky Institute of Organic Synthesis of the Ural Branch of the Russian Academy of Science, S. Kovalevskoi St., 22, Ekaterinburg, 620108, Russia.
Eur J Med Chem. 2020 Dec 15;208:112768. doi: 10.1016/j.ejmech.2020.112768. Epub 2020 Aug 23.
4-Nitroso-3-trifluoromethyl-5-alkyl[(het)aryl]pyrazoles were synthesized via one-pot nitrosation of 1,3-diketones or their lithium salts followed by treatment of hydrazines. Reduction of nitroso-derivatives made it possible to obtain 4-amino-3-trifluoromethylpyrazoles chlorides. According to computer-aided calculations, all synthesized compounds are expected to have acceptable ADME profile for drug design. Tuberculostatic, antibacterial, antimycotic, antioxidant and cytotoxic activities of the compounds were evaluated in vitro, while their analgesic and anti-inflammatory action was tested in vivo along with acute toxicity studies. N-Unsubstituted 4-nitrosopyrazoles were the most effective tuberculostatics (MIC to 0.36 μg/ml) and antibacterial agents against Streptococcus pyogenes (MIC to 7.8 μg/ml), Staphylococcus aureus,S. aureus MRSA and Neisseria gonorrhoeae (MIC to 15.6 μg/ml). 4-Nitroso-1-methyl-5-phenylpyrazole had the pronounced antimycotic action against a wide range of fungi (Trichophytonrubrum, T. tonsurans, T. violaceum, T. interdigitale, Epidermophytonfloccosum, Microsporumcanis with MIC 0.38-12.5 μg/ml). N-Unsubstituted 4-aminopyrazoles shown high radical-scavenging activity in ABTS test, ORAC/AAPH and oxidative erythrocyte hemolysis assays. 1-Methyl-5-phenyl-3-trifluoromethylpyrazol-4-aminium chloride revealed potential anticancer activity against HeLa cells (SI > 1351). The pronounced analgesic activity was found for 4-nitroso- and 4-aminopyrazoles having phenyl fragment at the position 5 in "hot plate" test. The most of the obtained pyrazoles had a moderate acute toxicity.
4-硝基-3-三氟甲基-5-烷基[(杂)芳基]吡唑是通过 1,3-二酮或其锂盐的一锅硝化反应,然后用肼处理来合成的。硝基衍生物的还原使其有可能获得 4-氨基-3-三氟甲基吡唑氯化物。根据计算机辅助计算,所有合成的化合物预计都具有可接受的药物设计 ADME 特征。在体外评估了化合物的抗结核、抗菌、抗真菌、抗氧化和细胞毒性活性,同时在体内测试了它们的镇痛和抗炎作用以及急性毒性研究。未取代的 4-硝基亚吡唑是最有效的抗结核药物(MIC 为 0.36μg/ml)和抗链球菌(MIC 为 7.8μg/ml)、金黄色葡萄球菌、金黄色葡萄球菌耐甲氧西林和淋病奈瑟菌(MIC 为 15.6μg/ml)的抗菌剂。4-硝基-1-甲基-5-苯基吡唑对广泛的真菌(红色毛癣菌、须癣毛癣菌、紫色毛癣菌、指间毛癣菌、絮状表皮癣菌、犬小孢子菌)具有显著的抗真菌作用,MIC 为 0.38-12.5μg/ml。未取代的 4-氨基吡唑在 ABTS 试验、ORAC/AAPH 和氧化红细胞溶血试验中表现出高自由基清除活性。1-甲基-5-苯基-3-三氟甲基吡唑-4-氨基氯化物对 HeLa 细胞表现出潜在的抗癌活性(SI>1351)。在“热板”试验中,具有苯环片段的 4-硝基和 4-氨基吡唑表现出明显的镇痛活性。获得的吡唑大多数具有中度急性毒性。