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Novel substituted quinazolines for potent EGFR tyrosine kinase inhibitors
O Cruz-López1, A Conejo-García, M C Núñez
1Departamento de Química Farmacéutica y Orgánica, Facultad de Farmacia, c/ Campus de Cartuja s/n, 18071 Granada, Spain. jmcampos@ugr.es
Abstract:
The type I receptor tyrosine kinases (RTKs) are involved in various aspects of cell growth, survival, and differentiation. Among the known RTKs, the epidermal growth factor receptor (EGFR) and ErbB-2 (HER-2) are two widely studied proteins that are prototypic members of the ErbB family which also includes ErbB-3 (Her-3) and ErbB-4 (Her-4). Overexpression of ErbB-2 and EGFR has been associated with aggressive disease and poor patient prognosis in a range of human tumour types (e.g. breast, lung, ovarian, prostate, and squamous carcinoma of head and neck). Disruption of signal transduction of these kinases has been shown to have an antiproliferative effect. Various approaches have been developed to target the ErbB signalling pathways including monoclonal antibodies (trastuzumab/Herceptin™ and cetuximab/Erbitux™) directed against the receptor, and synthetic tyrosine kinase inhibitors (gefitinib/Iressa™ and erlotinib/Tarceva™). Since many tumours overexpress ErbB receptors, simultaneous targeting of multiple ErbB receptors therefore becomes a promising approach to cancer treatment. Lapatinib (Tykerb™), a potent dual EGFR/ErbB-2 inhibitor, was approved for the treatment of ErbB-2-positive breast cancer. Despite years of intensive research on EGFR inhibitors, there is a surprising dearth of chemically distinct small inhibitors with a high degree of selectivity. There is also a need for new scaffolds due to the recent finding of EGFR mutations which render the kinase resistant to gefinitib and erlotinib. The structures under study will be quinazolines with different substituents. The structure-activity relationships and biological evaluation of compounds published during the last four years will be reviewed herein.
Insights
This review explores novel quinazoline-based inhibitors targeting multiple ErbB receptors, addressing resistance to current therapies for aggressive cancers like breast and lung cancer.
Area of Science:
- Oncology
- Molecular Biology
- Medicinal Chemistry
Background:
- Type I receptor tyrosine kinases (RTKs), including epidermal growth factor receptor (EGFR) and ErbB-2 (HER-2), are crucial for cell growth and differentiation.
- Overexpression of EGFR and ErbB-2 is linked to aggressive cancers and poor prognosis across various tumor types.
- Current therapies like monoclonal antibodies and tyrosine kinase inhibitors target ErbB signaling, but resistance and lack of selectivity are challenges.
Purpose of the Study:
- To review structure-activity relationships and biological evaluations of novel quinazoline-based compounds.
- To identify new scaffolds for developing selective inhibitors against EGFR and ErbB-2.
- To address resistance mechanisms arising from EGFR mutations.
Main Methods:
- Literature review of compounds published within the last four years.
- Analysis of structure-activity relationships for quinazoline derivatives.
- Evaluation of biological activity and selectivity of potential inhibitors.
Main Results:
- Identified a need for chemically distinct small molecule inhibitors with high selectivity for ErbB receptors.
- Highlighted the emergence of EGFR mutations conferring resistance to existing drugs like gefitinib and erlotinib.
- Explored quinazoline scaffolds as a promising structural basis for new inhibitors.
Conclusions:
- Simultaneous targeting of multiple ErbB receptors offers a promising strategy for cancer treatment.
- Development of novel quinazoline-based inhibitors is crucial to overcome resistance and improve therapeutic outcomes.
- Further research into structure-activity relationships is needed to design potent and selective ErbB-targeted therapies.
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