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Antioxidant and Cytotoxicity Potential of Six Synthesized Chalcones

机译:六种合成查尔酮的抗氧化和细胞毒性潜力

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Background : Chalcones are open-chain flavonoids which display a large number of pharmacological activities such as cytotoxic, anti-inflammatory including antioxidant. The objective of this study was to assess antioxidant and cytotoxic activity of six synthesized chalcones. Methodology : For the current experiments, 1,3-diphenylpropenone (compound R) was used as molecular model to synthetize six compounds , namely three benzyl-benzimidazolyl-chalcones (U1, U2, WAC1) and three imidazopyridinyl-chalcones (V1, V2, V3). All the compounds were evaluated for their ability to scavenge the stable free ABTS~(.+) radical cation, according to the method develop by Choong et al. In addition, the cytotoxicity test described by Price et al. , was performed using healthy human cell line, then in human malignant cell lines (HEP-2, A549). Results : All synthesized chalcones reduced the ABTS~(.+) radical cation. Indeed, benzyl benzimidazolyl compounds WAC1, U1, U2, by developing respectively 39.61%, 66.09%, and 84.20% percentages of reduction, showed an antioxidant effect 6, 11 and 14 times greater than the compound R (6.14%). As a result, imidazopyridinyl-chalcones compounds, namely V1, V2 and V3 reduced the ABTS~(.+) radical cation at 91.62%, 99 . 84% and 97.45% respectively, being 15 and 16 times more active than the compound R. About cytotoxicity, V2 inhibited not significantly HEP-2 malignant cells growth at 48.64%, compare d to the standard product, i.e. doxorubicin that inhibited the growth of the same cells at 42.37%. WAC1 inhibited significantly the growth of A549 malignant cells at 89.53%, more than doxorubicin which percentage of growth inhibition was 71.58%. Conclusion : The presence of the α , β -unsaturated carbonyl system (or 1,3-diphenylpropenone) along with a benzimidazole or imidazopyridine heterocyclic ring is likely to contribute to both cytotoxic and antioxidant activities of these compounds.
机译:背景:查耳酮是开链类黄酮,具有许多药理活性,例如细胞毒性,抗炎药(包括抗氧化剂)。这项研究的目的是评估六个合成查尔酮的抗氧化和细胞毒性活性。 方法:在当前的实验中,使用1,3-二苯基丙烯酮(化合物R)作为分子模型来合成六种化合物,即三个苄基-苯并咪唑基-查尔酮(U1,U2,WAC1)和三个咪唑并吡啶基-查尔酮(V1)。 ,V2,V3)。根据Choong等人开发的方法,评估了所有化合物清除稳定的游离ABTS〜(。+)自由基阳离子的能力。另外,Price等人描述的细胞毒性试验。使用健康的人类细胞系,然后在人类恶性细胞系(HEP-2,A549)中进行。结果:所有合成的查耳酮均还原了ABTS〜(。+)自由基阳离子。实际上,苄基苯并咪唑基化合物WAC1,U1,U2的还原率分别为39.61%,66.09%和84.20%,显示出比化合物R(6.14%)大6、11和14倍的抗氧化作用。结果,咪唑并吡啶基-查耳酮化合物V1,V2和V3使ABTS〜(。+)自由基阳离子还原为91.62%,99。与细胞毒性相比,V2对细胞毒性的抑制作用不明显,对HEP-2恶性肿瘤细胞的生长抑制作用为48.64%,与标准产品d相比。抑制相同细胞生长的阿霉素为42.37%。 WAC1显着抑制A549恶性细胞的生长,达89.53%,超过阿霉素,后者的生长抑制率为71.58%。结论:i,β-不饱和羰基体系(或1,3-二苯基丙烯酮)与苯并咪唑或咪唑并吡啶杂环一起存在可能对这些化合物的细胞毒性和抗氧化活性都有贡献。

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