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A Method for Screening and Validation of Resistant Mutations Against Kinase Inhibitors
Published on: December 7, 2014
Oncogenic mechanism-based pharmaceutical validation of therapeutics targeting MET receptor tyrosine kinase
Hang-Ping Yao1, Xiang-Min Tong2, Ming-Hai Wang3
1State Key Laboratory for Diagnosis and Treatment of Infectious Diseases, First Affiliated Hospital, Zhejiang University School of Medicine, Hangzhou, China.
Abstract:
Aberrant expression and/or activation of the MET receptor tyrosine kinase is characterized by genomic recombination, gene amplification, activating mutation, alternative exon-splicing, increased transcription, and their different combinations. These dysregulations serve as oncogenic determinants contributing to cancerous initiation, progression, malignancy, and stemness. Moreover, integration of the MET pathway into the cellular signaling network as an addiction mechanism for survival has made this receptor an attractive pharmaceutical target for oncological intervention. For the last 20 years, MET-targeting small-molecule kinase inhibitors (SMKIs), conventional therapeutic monoclonal antibodies (TMABs), and antibody-based biotherapeutics such as bispecific antibodies, antibody-drug conjugates (ADC), and dual-targeting ADCs have been under intensive investigation. Outcomes from preclinical studies and clinical trials are mixed with certain successes but also various setbacks. Due to the complex nature of MET dysregulation with multiple facets and underlying mechanisms, mechanism-based validation of MET-targeting therapeutics is crucial for the selection and validation of lead candidates for clinical trials. In this review, we discuss the importance of various types of mechanism-based pharmaceutical models in evaluation of different types of MET-targeting therapeutics. The advantages and disadvantages of these mechanism-based strategies for SMKIs, conventional TMABs, and antibody-based biotherapeutics are analyzed. The demand for establishing new strategies suitable for validating novel biotherapeutics is also discussed. The information summarized should provide a pharmaceutical guideline for selection and validation of MET-targeting therapeutics for clinical application in the future.
Insights
Aberrant MET receptor tyrosine kinase signaling drives cancer. This review analyzes mechanism-based models for validating MET-targeting drugs, including small-molecule inhibitors and antibody-based biotherapeutics, to improve cancer treatment selection.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Aberrant MET receptor tyrosine kinase signaling, driven by genetic and transcriptional alterations, promotes cancer initiation, progression, and stemness.
- The MET pathway's role in cancer cell survival makes it a key pharmaceutical target for oncological interventions.
- Extensive research over 20 years has focused on MET-targeting therapies, including small-molecule kinase inhibitors (SMKIs) and various antibody-based biotherapeutics.
Purpose of the Study:
- To review the importance of mechanism-based pharmaceutical models in evaluating MET-targeting therapeutics.
- To analyze the advantages and disadvantages of different validation strategies for SMKIs, conventional therapeutic monoclonal antibodies (TMABs), and antibody-based biotherapeutics.
- To discuss the need for new strategies to validate novel biotherapeutics targeting the MET pathway.
Main Methods:
- Review of preclinical and clinical trial outcomes for MET-targeting agents.
- Analysis of mechanism-based pharmaceutical models for therapeutic evaluation.
- Comparative assessment of validation strategies for different classes of MET inhibitors.
Main Results:
- Outcomes of MET-targeting therapies in clinical trials show mixed success, highlighting challenges in drug validation.
- Mechanism-based validation is crucial due to the complex and multifaceted nature of MET dysregulation.
- Existing validation strategies have limitations for novel biotherapeutics, necessitating new approaches.
Conclusions:
- Mechanism-based pharmaceutical models are essential for selecting and validating MET-targeting drug candidates.
- A critical evaluation of current strategies is needed to address the mixed clinical outcomes.
- Developing novel validation strategies is crucial for advancing MET-targeted cancer therapy.
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