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设计、合成及吡啶并嘧啶骨架作为新型 PI3K/mTOR 双重抑制剂的生物活性。

Design, synthesis, and biological activity of pyridopyrimidine scaffolds as novel PI3K/mTOR dual inhibitors.

机构信息

Institut de Chimie Organique et Analytique, Université d'Orléans, UMR CNRS 7311 , Rue de Chartres, BP 6759, 45067 OrléansCedex 2, France.

出版信息

J Med Chem. 2014 Feb 13;57(3):613-31. doi: 10.1021/jm401138v. Epub 2014 Jan 21.

Abstract

The design, synthesis, and screening of dual PI3K/mTOR inhibitors that gave nanomolar enzymatic and cellular activities on both targets with an acceptable kinase selectivity profile are described. A docking study was performed to understand the binding mode of the compounds and to explain the differences in biological activity. In addition, cellular effects of the best dual inhibitors were determined on six cancer cell lines and compared to those on a healthy diploid cell line for cellular cytotoxicity. Two compounds are highly potent on cancer cells in the submicromolar range without any toxicity on healthy cells. A more detailed analysis of the cellular effect of these PI3K/mTOR dual inhibitors demonstrated that they induce G1-phase cell cycle arrest in breast cancer cells and trigger apoptosis. These compounds show an interesting kinase profile as dual PI3K/mTOR tool compounds or as a chemical series for further optimization to progress into in vivo experiments.

摘要

描述了双重 PI3K/mTOR 抑制剂的设计、合成和筛选,这些抑制剂在两个靶点上均具有纳摩尔级的酶和细胞活性,激酶选择性谱可接受。进行了对接研究以了解化合物的结合模式,并解释生物活性的差异。此外,还测定了最佳双重抑制剂对六种癌细胞系的细胞效应,并与健康二倍体细胞系的细胞毒性进行了比较。两种化合物对亚微摩尔范围内的癌细胞具有高活性,而对健康细胞没有毒性。对这些 PI3K/mTOR 双重抑制剂的细胞效应进行更详细的分析表明,它们在乳腺癌细胞中诱导 G1 期细胞周期停滞并触发细胞凋亡。这些化合物作为双重 PI3K/mTOR 工具化合物或作为进一步优化以推进体内实验的化学系列显示出有趣的激酶谱。

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