首页> 外文期刊>Medicinal chemistry research: an international journal for rapid communications on design and mechanisms of action of biologically active agents >Cytotoxicities of novel hydrazone compounds with pyrrolidine moiety: inhibition of mitochondrial respiration may be a possible mechanism of action for the cytotoxicity of new hydrazones
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Cytotoxicities of novel hydrazone compounds with pyrrolidine moiety: inhibition of mitochondrial respiration may be a possible mechanism of action for the cytotoxicity of new hydrazones

机译:新型腙化合物与吡咯烷部分的细胞毒性:抑制线粒体呼吸可能是新腙的细胞毒性的可能作用机制

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摘要

N,N’-Bis[1-aryl-3-pyrrolidine-1-yl)propylidene]hydrazine dihydrochlorides (R1–R7) were synthesized by the reaction of 2 mols of 1-aryl-3-(pyrrolidine-1-yl)-1-propanone hydrochlorides with 1?mol of hydrazine hydrate and reported for the first time with their detailed spectral analysis and cytotoxicities towards human hepatoma (Huh7) and breast cancer (T47D) cell lines. Compounds R2, R6, and R7 with the IC~(50)values of 5.16, 6.96, and 5.96 μM, respectively, showed higher cytotoxic potency than the reference compound 5-FU with 7.0 μM against Huh7 cell line. However, all compounds did not show better cytotoxic activities than 5-FU against T47D cell line at the conditions studied. The representative compound of series, R2 , inhibited the mitochondrial respiration at 90, 165, and 265?μM concentrations in a dose dependent manner in liver homogenates, suggesting that mitochondrial respiration may be one of the contributing factor to the cytotoxicity of the compounds synthesized. The compounds R2 , R6 , and R7 can be chosen as the leader compounds of this study for further studies.
机译:N,N'-BIS [1-芳基-3-吡咯烷-1-基)通过2摩尔的1-芳基-3-(吡咯烷-1-基)的反应合成肼二盐酸肼(R1-R7) -1-盐酸盐盐酸盐,其中1摩尔肼水合物,并首次报道了它们对人肝癌(HUH7)和乳腺癌(T47D)细胞系的详细光谱分析和细胞毒性。分别具有5.16,6.96和5.96μm的IC〜(50)值的化合物R2,R6和R7显示出比参考化合物5-FU与70μm对虎HH7细胞系列的参考化合物5-FU的细胞毒性效力更高。然而,在研究的病症下,所有化合物都没有比5-FU对抗T47D细胞的5-FU更好地显示出更好的细胞毒性活性。串联R 2的代表性化合物在肝脏匀浆中以剂量依赖性方式抑制90,165和265μm浓度的线粒体呼吸,表明线粒体呼吸可以是合成的化合物的细胞毒性的贡献因子之一。可以选择化合物R2,R6和R7作为该研究的前导化合物,用于进一步研究。

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