> Photoinduced single electron transfer cyclization processes for synthesis of a series of 3‐hydroxy isoindolinone c'/> Design, Preparation of 3‐Hydroxy Isoindolinone Cyclotripeptides, and the <i xmlns='http://www.wiley.com/namespaces/wiley'>In VitroIn Vitro Antitumor Activities Against Cervical Carcinoma <fc xmlns='http://www.wiley.com/namespaces/wiley'>HeLa</fc>HeLa Cells
首页> 外文期刊>Journal of Heterocyclic Chemistry: The International Journal of Heterocyclic Chemistry >Design, Preparation of 3‐Hydroxy Isoindolinone Cyclotripeptides, and the In VitroIn Vitro Antitumor Activities Against Cervical Carcinoma HeLaHeLa Cells
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Design, Preparation of 3‐Hydroxy Isoindolinone Cyclotripeptides, and the In VitroIn Vitro Antitumor Activities Against Cervical Carcinoma HeLaHeLa Cells

机译:设计,制备3-羟基异吲哚啉酮环脂肽,以及体外“>体外抗肿瘤活性对宫颈癌 hela细胞

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摘要

> Photoinduced single electron transfer cyclization processes for synthesis of a series of 3‐hydroxy isoindolinone cyclotripeptides containing double pharmacophores (cyclotripeptides and phthalimide moiety) are described to develop novel antitumor cyclopeptide drugs. The results showed that our proposed method could be used to synthesize various isoindolinone cyclotripeptides highly regioselectively at a moderate rate. Moreover, the inhibitory potency toward human cervical carcinoma HeLa cells of the target cyclopeptides and the linear tripeptide precursors were evaluated, and most of the compounds were observed with potent inhibition ability against tumor growth. Specifically, compound 6c was found to inhibit HeLa cells with an IC 50 value of 32?μ M , which may serve as a potential candidate for drug development. In addition, 3‐hydroxy isoindolinone‐cyclo‐Gly‐Ala‐Pro ( 6a 1 ) was chosen from the obtained cyclopeptides for the absolute configuration research, and an S configuration of C‐3 was established by experimental electronic circular dichroism with the aid of theoretical calculations.
机译: >光诱导的单电子转移环化方法,用于合成一系列3-hydroxy描述了含有双药细胞(环四肽和邻苯二甲酰亚胺部分)的异吲哚啉酮的环状肽,以开发新的抗肿瘤环肽药物。结果表明,我们的提出方法可用于以中等速率合成高度区域高度区域的各种异吲哚醌环肽。此外,评估了靶环肽的人宫颈癌Hela细胞和线性三肽前体的抑制性效力,并且观察到大部分化合物以抗肿瘤生长的有效抑制能力。具体地,发现化合物 6C 抑制HeLa细胞,其IC 50 值为32Ωμ m ,其可以作为潜在的候选者药物发展。此外,选择3-羟基异吲哚酮-CNO-GLY-ALA-PRO( 6A <亚Z> 1 /倍> )从得到的环庚酯中选择绝对构型通过实验电子圆形二分列为借助理论计算,建立了C-3的 s C-3的配置。

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    Key Laboratory of Photochemical Biomaterials and Energy Storage Materials Heilongjiang Province College of Chemistry &

    Chemical EngineeringHarbin Normal UniversityHarbin 150025 China;

    Key Laboratory of Photochemical Biomaterials and Energy Storage Materials Heilongjiang Province College of Chemistry &

    Chemical EngineeringHarbin Normal UniversityHarbin 150025 China;

    Key Laboratory of Photochemical Biomaterials and Energy Storage Materials Heilongjiang Province College of Chemistry &

    Chemical EngineeringHarbin Normal UniversityHarbin 150025 China;

    Key Laboratory of Photochemical Biomaterials and Energy Storage Materials Heilongjiang Province College of Chemistry &

    Chemical EngineeringHarbin Normal UniversityHarbin 150025 China;

    Key Laboratory of Photochemical Biomaterials and Energy Storage Materials Heilongjiang Province College of Chemistry &

    Chemical EngineeringHarbin Normal UniversityHarbin 150025 China;

    Key Laboratory of Photochemical Biomaterials and Energy Storage Materials Heilongjiang Province College of Chemistry &

    Chemical EngineeringHarbin Normal UniversityHarbin 150025 China;

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  • 正文语种 eng
  • 中图分类 有机化学;
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