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Discovery and Optimization of 4‑Aminopteridin-7(8H)‑one Derivatives as Potent and Selective mTOR Inhibitors with Favorable Pharmacodynamic and Safety Characteristics

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Figshare2026-02-05 更新2026-04-28 收录
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https://figshare.com/articles/dataset/Discovery_and_Optimization_of_4_Aminopteridin-7_8H_one_Derivatives_as_Potent_and_Selective_mTOR_Inhibitors_with_Favorable_Pharmacodynamic_and_Safety_Characteristics/31260655
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The mechanistic target of rapamycin (mTOR) is a central regulator of cell growth and a promising cancer therapeutic target. Using structure-guided design, we developed novel 4-aminopteridin-7(8H)-one derivatives as ATP-competitive mTOR inhibitors. The lead compound T133 (51) demonstrated exceptional mTOR inhibition (Ki = 0.17 nM) with high selectivity, effectively suppressing phosphorylation of downstream effectors, such as AKT, S6K1, and 4EBP1. In HGC-27 gastric cancer cells, T133 potently inhibited proliferation and migration while inducing apoptosis, cell cycle arrest, and autophagy. This efficacy extended to NCI-H1299 lung cancer and T-47D breast cancer cells. In the HGC-27 xenograft mouse model, oral administration of T133 exhibited dose-dependent efficacy comparable to clinical-stage inhibitor PF-04691502, while exhibiting significantly reduced hepatotoxicity, nephrotoxicity, and pulmonary toxicity. Moreover, assessments of T133 on cytochrome P450, hERG, and AMES indicate a favorable safety profile. These findings suggest T133 is a promising mTOR inhibitor, warranting further investigation for cancer therapy.
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2026-02-05
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