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首页> 外文期刊>Russian journal of bioorganic chemistry >Synthesis and Pharmacological Studies of New Pyrazole Analogues of Podophyllotoxin1
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Synthesis and Pharmacological Studies of New Pyrazole Analogues of Podophyllotoxin1

机译:鬼臼毒素新吡唑类似物的合成及药理研究

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The pyrazole analogues of podophyllotoxin were synthesized by the chalcone route. This route attracts the attention because of its simple operating conditions and easy availability of the chemicals. Initially, benzylideneacetophenones (chalcones) were prepared in high yields by Claisen-Schmidt reaction of acetophenones with 4-(methylthio)benzaldehyde. The cyclopropyl ketones were prepared in good yields by the reaction of chalcones with trimethylsulfoxonium iodide. Tetralones were prepared in good yields by the Friedel-Craft's intramolecular cyclization reaction of cyclopropyle ketones in the presence of anhyd. stannic chloride and acetic anhydride. The tetralones on formylation to give substituted hydroxylmethylene tetralones. Condensation of substituted hydroxylmethylene tetralones with hydrazine hydrate afforded target compounds. The structures of the synthesized compounds were confirmed by IR, ~1H NMR and Mass spectral technique. The title compounds were screened for their antimitotic and antimicrobial activities. Among the synthesized compounds cyclopropyl ketones and pyrazole analogues of podophyllotoxin, compound 7-(methylthio)-5-(4-(methylthio)phenyl)-4,5-dihydro-~2H-benzo[g]indazole is more active than 5-(4-(methylthio)phenyl)-4,5-dihydro-~2H- benzo[g]indazole, 7-methyl-5-(4-(methylthio)phenyl)-4,5-dihydro-~2H-benzo[g]indazole, 7-methoxy-5-(4- (methylthio)phenyl)-4,5-dihydro-~2H-benzo[g]indazole and the key intermediate tetralones in 100, 200 and 400 ppm at 12, 18 and 24 h and also showed very good activity against screened bacteria and fungi compared to their standard.
机译:鬼臼毒素的吡唑类似物通过查耳酮途径合成。该路线因其简单的操作条件和容易获得的化学品而备受关注。最初,通过苯乙酮与4-(甲硫基)苯甲醛的克莱森-施密特反应(Claisen-Schmidt reaction)以高收率制备亚苄基苯乙酮(查耳酮)。通过查耳酮与三甲基碘化亚砜碘化物反应,可以高收率制备环丙基酮。在无水存在下,通过Friedel-Craft的环丙基酮的分子内环化反应可以高产率地制备四氢萘酮。氯化锡和乙酸酐。将四氢萘酮甲酰化,得到取代的羟甲基四氢萘酮。取代的羟甲基四氢萘酮与水合肼缩合,得到目标化合物。合成的化合物的结构通过IR,〜1H NMR和质谱技术确认。筛选标题化合物的抗有丝分裂和抗微生物活性。在鬼臼毒素的合成化合物环丙基酮和吡唑类似物中,化合物7-(甲硫基)-5-(4-(甲硫基)苯基)-4,5-二氢-〜2H-苯并[g]吲唑的活性高于5- (4-(甲硫基)苯基)-4,5-二氢-〜2H-苯并[g]吲唑,7-甲基-5-(4-(甲硫基)苯基)-4,5-二氢-〜2H-苯并[ g]吲唑,7-甲氧基-5-(4-(甲硫基)苯基)-4,5-二氢-〜2H-苯并[g]吲唑和关键中间体四氢萘酮在100、200和400 ppm时分别在12、18和与标准品相比,在24小时内对筛选的细菌和真菌也显示出非常好的活性。

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