| Literature DB >> 28863357 |
Sarah Diab1, Ahmad M Abdelaziz1, Peng Li1, Theodosia Teo1, Sunita K C Basnet1, Ben Noll1, Muhammed H Rahaman1, Jingfeng Lu1, Jinqiang Hou1, Mingfeng Yu1, Bich T Le1, Hugo Albrecht1, Robert W Milne1, Shudong Wang2.
Abstract
The discovery of novel anti-AML therapeutic agents is urgently needed, but the complex heterogeneity of the disease has so far hampered the development of a curative treatment. FLT3 inhibitors have shown therapeutic potential in clinical trials; but a monotherapy regimen has been associated with resistance mediated by the activation of parallel signalling circuitry, including MAPK and mTOR. Therefore, inhibiting a nexus of the two signalling pathways along with inhibition of FLT3 might be advantageous. Herein, we propose that a dual inhibition of FLT3 and Mnk would provide a better clinical option for AML patients compared to targeting FLT3 alone. Thus, a series of N-phenyl-4-(thiazol-5-yl)pyrimidin-2-amines and 4-(indol-3-yl)-N-phenylpyrimidin-2-amines were prepared. Potent Mnk2 inhibitors, FLT3 inhibitors, and dual inhibitors of Mnk2 and FLT3 were identified and their anti-proliferative activities assessed against MV4-11 AML cell lines. Dual inhibition of FLT3 and Mnk2 caused the increased apoptotic cell death of MV4-11 cells compared to inhibition of FLT3 or Mnk2 alone.Entities:
Keywords: AML; Anti-leukaemic agent; Drug discovery; Dual inhibitor; FLT3 inhibitor; Mnk inhibitor
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Year: 2017 PMID: 28863357 DOI: 10.1016/j.ejmech.2017.08.006
Source DB: PubMed Journal: Eur J Med Chem ISSN: 0223-5234 Impact factor: 6.514