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Discovery and Evaluation of 3-Quinoxalin Urea Derivatives as Potent, Selective, and Orally Available ATM Inhibitors Combined with Chemotherapy for the Treatment of Cancer via Goal-Oriented Molecule Generation and Virtual Screening.

Dexin DengYingxue YangYurong ZouKongjun LiuChufeng ZhangMinghai TangTao YangYong ChenXue YuanYong GuoShunjie ZhangWenting SiBin PengQing XuWen HeDingguo XuMingli XiangLi-Juan Chen
Published in: Journal of medicinal chemistry (2023)
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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