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A Method for Screening and Validation of Resistant Mutations Against Kinase Inhibitors
Published on: December 7, 2014
Protein kinases as targets for anticancer agents: from inhibitors to useful drugs
Doriano Fabbro1, Stephan Ruetz, Elisabeth Buchdunger
1Department of Oncology, Novartis Pharma Inc., WKL-125.4.10, CH-4002, Basel, Switzerland. doriano.fabrio@pharma.novartis.com
Abstract:
Many components of mitogenic signaling pathways in normal and neoplastic cells have been identified, including the large family of protein kinases, which function as components of signal transduction pathways, playing a central role in diverse biological processes, such as control of cell growth, metabolism, differentiation, and apoptosis. The development of selective protein kinase inhibitors that can block or modulate diseases caused by abnormalities in these signaling pathways is widely considered a promising approach for drug development. Because of their deregulation in human cancers, protein kinases, such as Bcr-Abl, those in the epidermal growth factor-receptor (HER) family, the cell cycle regulating kinases such as the cyclin-dependent kinases, as well as the vascular endothelial growth factor-receptor kinases involved in the neo-vascularization of tumors, are among the protein kinases considered as prime targets for the development of selective inhibitors. These drug-discovery efforts have generated inhibitors and low-molecular weight therapeutics directed against the ATP-binding site of various protein kinases that are in various stages of development (up to Phase II/III clinical trials). Three examples of inhibitors of protein kinases are reviewed, including low-molecular weight compounds targeting the cell cycle kinases; a potent and selective inhibitor of the HER1/HER2 receptor tyrosine kinase, the pyrollopyrimidine PKI166; and the 2-phenyl-aminopyrimidine STI571 (Glivec(R), Gleevec) a targeted drug therapy directed toward Bcr-Abl, the key player in chronic leukemia (CML). Some members of the HER family of receptor tyrosine kinases, in particular HER1 and HER2, have been found to be overexpressed in a variety of human tumors, suggesting that inhibition of HER signaling would be a viable antiproliferative strategy. The pyrrolo-pyrimidine PKI166 was developed as an HER1/HER2 inhibitor with potent in vitro antiproliferative and in vivo antitumor activity. Based upon its clear association with disease, the Bcr-Abl tyrosine kinase in CML represents the ideal target to validate the clinical utility of protein kinase inhibitors as therapeutic agents. In a preclinical model, STI571 (Glivec(R), Gleevec) showed potent in vitro and in vivo antitumor activity that was selective for Abl, c-Kit, and the platelet-derived growth factor-receptor. Phase I/II studies demonstrated that STI571 is well tolerated, and that it showed promising hematological and cytogenetic responses in CML and clinical responses in the c-Kit-driven gastrointestinal tumors.
Insights
Protein kinase inhibitors are promising cancer drug candidates. STI571 (Gleevec) and PKI166 show potent antitumor activity, validating targeted therapies for chronic leukemia and HER-driven tumors.
Area of Science:
- Oncology
- Pharmacology
- Molecular Biology
Background:
- Protein kinases are crucial in cell signaling, growth, and apoptosis.
- Deregulation of protein kinases, like Bcr-Abl and HER family kinases, drives human cancers.
- Targeting these kinases with selective inhibitors is a key drug development strategy.
Purpose of the Study:
- To review the development and efficacy of selective protein kinase inhibitors as targeted cancer therapies.
- To highlight examples of kinase inhibitors in clinical development, focusing on their mechanisms and therapeutic potential.
Main Methods:
- Review of preclinical and clinical data for protein kinase inhibitors.
- Focus on small-molecule inhibitors targeting the ATP-binding site of kinases.
- Examination of specific inhibitors: cell cycle kinase inhibitors, PKI166 (HER1/HER2 inhibitor), and STI571 (Bcr-Abl inhibitor).
Main Results:
- PKI166 demonstrates potent in vitro antiproliferative and in vivo antitumor activity against HER1/HER2.
- STI571 (Gleevec) shows selective activity against Bcr-Abl, c-Kit, and PDGF-R, with promising clinical responses in CML and gastrointestinal tumors.
- Phase I/II trials indicate STI571 is well-tolerated with significant hematologic and cytogenetic responses in CML.
Conclusions:
- Selective protein kinase inhibitors represent a viable and promising therapeutic strategy for various cancers.
- Targeted therapies like STI571 offer effective treatment options for diseases driven by specific kinase abnormalities.
- Further development of kinase inhibitors holds significant potential for advancing cancer treatment.
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