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A high-content EMT screen identifies multiple receptor tyrosine kinase inhibitors with activity on TGFβ receptor. | LitMetric

AI Article Synopsis

  • An epithelial to mesenchymal transition (EMT) allows tumor cells to leave the primary tumor and spread to other parts of the body, making it a key process in cancer metastasis.
  • Researchers developed a high-content microscopy assay to screen over 3,400 chemical compounds to find potential drugs that could inhibit EMT, identifying 19 effective ones that block TGFβ-induced EMT in normal mammary cells.
  • Among these, several multi-kinase inhibitors were found to target TGFβ receptors, revealing new "off-target" effects that could enhance therapeutic strategies in cancer treatment.

Article Abstract

An epithelial to mesenchymal transition (EMT) enables epithelial tumor cells to break out of the primary tumor mass and to metastasize. Understanding the molecular mechanisms driving EMT in more detail will provide important tools to interfere with the metastatic process. To identify pharmacological modulators and druggable targets of EMT, we have established a novel multi-parameter, high-content, microscopy-based assay and screened chemical compounds with activities against known targets. Out of 3423 compounds, we have identified 19 drugs that block transforming growth factor beta (TGFβ)-induced EMT in normal murine mammary gland epithelial cells (NMuMG). The active compounds include inhibitors against TGFβ receptors (TGFBR), Rho-associated protein kinases (ROCK), myosin II, SRC kinase and uridine analogues. Among the EMT-repressing compounds, we identified a group of inhibitors targeting multiple receptor tyrosine kinases, and biochemical profiling of these multi-kinase inhibitors reveals TGFBR as a thus far unknown target of their inhibitory spectrum. These findings demonstrate the feasibility of a multi-parameter, high-content microscopy screen to identify modulators and druggable targets of EMT. Moreover, the newly discovered "off-target" effects of several receptor tyrosine kinase inhibitors have important consequences for in vitro and in vivo studies and might beneficially contribute to the therapeutic effects observed in vivo.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5041959PMC
http://dx.doi.org/10.18632/oncotarget.8418DOI Listing

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