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首页> 外文期刊>New Journal of Chemistry >The design and green synthesis of novel benzotriazoloquinolinyl spirooxindolopyrrolizidines: antimycobacterial and antiproliferative studies
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The design and green synthesis of novel benzotriazoloquinolinyl spirooxindolopyrrolizidines: antimycobacterial and antiproliferative studies

机译:新型苯并二唑喹啉基螺氧脱氧吲哚啉基吡咯烷的设计和绿色合成:抗致抗抗抗原研究

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摘要

Herein, we reported the design and synthesis of a novel series of potent antimycobacterial (anti-TB) and antiproliferative benzotriazoloquinolinyl spirooxindolopyrrolizidine derivatives via an expeditious green approach achieved using an ionic liquid ([Bmim]BF4) under ultrasonication. The title compounds 4a-p were well characterized and evaluated for their in vitro anti-TB and antiproliferative activities. In anti-TB screening, eleven compounds, namely, 4h, 4l, 4m, 4n, 4e, 4f, 4g, 4o, 4i, 4k and 4p exhibited more significant anti-TB activities with the MIC values of 1.27 mu M, 1.24 mu M, 1.21 mu M, 1.13 mu M, 2.62 mu M, 2.55 mu M, 2.38 mu M, 2.38 mu M, 5.00 mu M, 4.88 mu M and 4.56 mu M, respectively, compared to the standard drug ethambutol (MIC: 7.64 mu M). With regard to antiproliferative activity, 4f exhibited more significant antiproliferative activity against the A549 (IC50: 5.7 mu M) and HeLa S3 (IC50: 11.6 mu M) cell lines when compared to the standard drug cisplatin. Similarly, 4c displayed equal antiproliferative activity against the A549 (IC50: 9.81 mu M) and HeLa S3 (20.41 mu M) cell lines. At the same time, 4c and 4f also induced typical apoptotic morphological features like cell death and inhibition of the colony formation of the A549 cells at lower concentrations. In addition, the potent anti-TB and antiproliferative compounds (4h, 4l, 4m, 4n, 4e, 4g, 4o, 4i, 4k, 4p, 4c, and 4f, respectively) displayed less toxicity against normal RAW 264.7 cells and were considered as promising for anti-TB and antiproliferative activities.
机译:在此,我们报道了一种通过使用超声波的离子液体([BMIM] BF4)实现的迅速的绿色方法的设计和合成一种新颖的有效抗纤维素(抗-TB)和抗增殖苯并三唑喹啉衍生物。标题化合物4A-P很好地表征并评价其体外抗TB和抗增殖活动。在抗TB筛选中,11个化合物,即4H,4L,4M,4N,4E,4F,4G,4O,4I,4K和4P在1.27μm,1.24μm,1.24μm,1.24μm的MIC值表现出更大的抗TB活性。 M,1.21 mu m,1.13 mu m,2.62 mu m,2.55 mu m,2.55 mu m,2.38 mu m,2.38 mu m,5.00 mu m,4.88 mu m,5.00 mu m,4.88 mu m,4.56 mu m,与标准药物乙胺醇相比(mic:7.64 mu m)。关于抗增殖活性,与标准药物顺铂相比,4F对A549(IC50:5.7μm)和Hela S3(IC50:11.6μm)细胞系具有更大的抗增殖活性。类似地,4℃显示对A549(IC50:9.81μm)和Hela S3(20.41μm)细胞系的等于抗增殖活性。同时,4C和4F还诱导细胞死亡等典型凋亡形态特征,并在较低浓度下抑制A549细胞的菌落形成。另外,有效的抗TB和抗增殖化合物(4H,4L,4M,4N,4E,4g,40,41,4 k,4p,4c和4 f)分别显示对常规原料264.7细胞的毒性较小,并考虑作为对抗结核病和抗增殖活动的承诺。

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  • 来源
    《New Journal of Chemistry》 |2019年第44期|共10页
  • 作者单位

    Natl Inst Technol Dept Chem Warangal 506004 Telangana India;

    Birla Inst Technol &

    Sci Pilani Dept Pharm Hyderabad Campus Hyderabad 500078 India;

    Tokyo Univ Sci Fac Pharmaceut Sci 2641 Yamazaki Noda Chiba 2788510 Japan;

    Birla Inst Technol &

    Sci Pilani Dept Chem Hyderabad Campus Hyderabad 500078 India;

    Birla Inst Technol &

    Sci Pilani Dept Pharm Hyderabad Campus Hyderabad 500078 India;

    Tokyo Univ Sci Fac Pharmaceut Sci 2641 Yamazaki Noda Chiba 2788510 Japan;

    Natl Inst Technol Dept Chem Warangal 506004 Telangana India;

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  • 正文语种 eng
  • 中图分类 化学;
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