PF-06843195
目录号 : GC62556PF-06843195 是一种高度选择性的 PI3Kα 抑制剂,在 Rat1 成纤维细胞中,其 IC50 为 18 nM。PF-06843195 作用于 PI3Kα 和 PI3Kδ 的 Ki 分别小于 0.018 nM 和 0.28 nM。PF-06843195对 PI3K/mTOR 信号通路有明显抑制作用,且具有持久的抗肿瘤作用。
Cas No.:2067281-51-8
Sample solution is provided at 25 µL, 10mM.
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PF-06843195 is a highly selective PI3Kα inhibitor with an IC50 of 18 nM in Rat1 fibroblasts. The Kis of PF-06843195 for PI3Kα and PI3Kδ in biochemical kinase assay are less than 0.018 nM and 0.28 nM, respectively. PF-06843195 has great suppression of the PI3K/mTOR signaling pathway and durable antitumor efficacy[1].
PF-06843195 inhibits the breast cancer cell lines MCF7 and T47D proliferation with IC50s of 62 nM and 32 nM, respectively[1].PF-06843195 inhibits pAKT (T308) in MCF7 and T47D cells with IC50s of 7.8 nM and 8.7 nM, respectively[1].
In rats, PF-06843195 can rapidly and quantitatively transform from PF-06862309[1].PF-06843195 exhibits oral bioavailability (rat 25 %) following oral administration (rat 10 mg/kg)[1].PF-06843195 exhibits a moderate half-life (rat 3.6 h) due to high plasma clearance (30 mL/min/kg) combined with large volumes of distribution (3.0 L/kg) following intravenous administration (rat 2 mg/kg)[1].
[1]. Hengmiao Cheng, et al. Structure-Based Drug Design and Synthesis of PI3Kα-Selective Inhibitor (PF-06843195). J Med Chem. 2021 Jan 14;64(1):644-661.
Cas No. | 2067281-51-8 | SDF | |
分子式 | C20H25F3N8O4 | 分子量 | 498.46 |
溶解度 | 储存条件 | Store at -20°C | |
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1 mM | 2.0062 mL | 10.0309 mL | 20.0618 mL |
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10 mM | 0.2006 mL | 1.0031 mL | 2.0062 mL |
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Structure-Based Drug Design and Synthesis of PI3Kα-Selective Inhibitor (PF-06843195)
J Med Chem 2021 Jan 14;64(1):644-661.PMID:33356246DOI:10.1021/acs.jmedchem.0c01652
The phosphoinositide 3-kinase (PI3K)/mammalian target of rapamycin (mTOR) signaling pathway is a frequently dysregulated pathway in human cancer, and PI3Kα is one of the most frequently mutated kinases in human cancer. A PI3Kα-selective inhibitor may provide the opportunity to spare patients the side effects associated with broader inhibition of the class I PI3K family. Here, we describe our efforts to discover a PI3Kα-selective inhibitor by applying structure-based drug design (SBDD) and computational analysis. A novel series of compounds, exemplified by 2,2-difluoroethyl (3S)-3-{[2'-amino-5-fluoro-2-(morpholin-4-yl)-4,5'-bipyrimidin-6-yl]amino}-3-(hydroxymethyl)pyrrolidine-1-carboxylate (1) (PF-06843195), with high PI3Kα potency and unique PI3K isoform and mTOR selectivity were discovered. We describe here the details of the design and synthesis program that lead to the discovery of 1.