化学
药理学
效力
虚拟筛选
体外
药品
药物发现
伊立替康
癌症
化疗
药代动力学
小分子
计算生物学
生物化学
医学
结直肠癌
内科学
生物
作者
Dexin Deng,Yingxue Yang,Yurong Zou,Kongjun Liu,Chufeng Zhang,Minghai Tang,Tao Yang,Yong Chen,Yuan Xue,Yong Guo,Shunjie Zhang,Wenting Si,Bin Peng,Qing Xu,Wen He,Dingguo Xu,Mingli Xiang,Lijuan Chen
标识
DOI:10.1021/acs.jmedchem.3c00082
摘要
ATM plays an important role in DNA damage response and is considered a potential target in cancer therapies. In this study, a goal-directed molecular generation approach based on ligand similarity and target specificity was applied to sample active molecules, and they were screened virtually to identify the theoretical lead compound 7a, which was later shown to inhibit ATM adequately. However, there is a main concern about its poor metabolic stability in vitro. Subsequent optimization was performed to improve the potency and selectivity toward ATM and attenuate the hepatic clearance in vitro, culminating in the identification of 10r with nanomolar ATM inhibition, excellent cellular sensitivity to radiation and chemotherapy drugs, and impressive pharmacokinetic profiles. Furthermore, 10r combined with irinotecan demonstrated a synergistic antitumor efficacy in SW620 xenograft models, suggesting that it could be a promising candidate drug combined with chemotherapy for the treatment of cancer.
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