拓扑异构酶
化学
遗传毒性
细胞毒性
DNA损伤
毒性
药理学
拓扑异构酶抑制剂
癌变
癌细胞
癌症研究
体外
癌症
DNA
生物化学
生物
遗传学
有机化学
基因
作者
Xinwei Li,Shu-Jun Fang,Ying-Ze Li,Li-Qing Qin,Nan‐Ying Chen,Bin Zheng,Dong‐Liang Mo,Gui‐Fa Su,Jun‐Cheng Su,Cheng‐Xue Pan
标识
DOI:10.1016/j.bioorg.2023.107015
摘要
Conventional topoisomerase (Topo) inhibitors typically usually exert their cytotoxicity by damaging the DNAs, which exhibit high toxicity and tend to result in secondary carcinogenesis risk. Molecules that have potent topoisomerase inhibitory activity but involve less DNA damage provide more desirable scaffolds for developing novel chemotherapeutic agents. In this work, we broke the rigid pentacyclic system of luotonin A and synthesized thirty-three compounds as potential Topo inhibitors based on the devised molecular motif. Further investigation disclose that two compounds with the highest antiproliferation activity against cancer cells, 5aA and 5dD, had a distinct Topo I inhibitory mechanism different from those of the classic Topo I inhibitors CPT or luteolin, and were able to obviate the obvious cellular DNA damage typically associated with clinically available Topo inhibitors. The animal model experiments demonstrated that even in mice treated with a high dosage of 50 mg/kg 5aA, there were no obvious signs of toxicity or loss of body weight. The tumor growth inhibition (TGI) rate was 54.3 % when 20 mg/kg 5aA was given to the T24 xenograft mouse model, and 5aA targeted the cancer tissue precisely without causing damage to the liver and other major organs.
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