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Updated: Jun 4, 2026

Implementation of In Vitro Drug Resistance Assays: Maximizing the Potential for Uncovering Clinically Relevant Resistance Mechanisms
Published on: December 9, 2015
Targeted therapy in GIST: in silico modeling for prediction of resistance
Marco A Pierotti1, Elena Tamborini, Tiziana Negri
1Fondazione IRCCS Istituto Nazionale dei Tumori-Milano, via Venezian 1, 20133 Milano, Italy.
Abstract:
Elucidation of the genetic processes leading to neoplastic transformation has identified cancer-promoting molecular alterations that can be selectively targeted by rationally designed therapeutic agents. Protein kinases are druggable targets and have been studied intensively. New methodologies--including crystallography and three-dimensional modeling--have allowed the rational design of potent and selective kinase inhibitors that have already reached the clinical stage. However, despite the clinical success of kinase-targeted therapies, most patients that respond eventually relapse as a result of acquired resistance. Darwinian-type selection of secondary mutations seems to have a major role in this resistance. The emergence and/or expansion of tumor clones containing new mutations in the target kinase and that are drug-insensitive have been observed after chronic treatment. The resistance mechanisms to tyrosine kinase inhibitors, in particular secondary resistant mutations as a consequence of treatment, will be discussed in detail. In particular, this Review will focus on KIT and PDGFRA mutations, which are involved in the pathogenesis of gastrointestinal stromal tumors. Harnessing the selection of mutated variants developed to overcome these resistance mechanisms is an ongoing goal of current research and new strategies to overcome drug resistance is being envisaged.
Insights
Targeted cancer therapies, like kinase inhibitors, are effective but often lead to drug resistance through secondary mutations. Research focuses on overcoming these resistance mechanisms, particularly in gastrointestinal stromal tumors.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Neoplastic transformation involves genetic alterations targeting cancer-promoting molecules.
- Protein kinases are key druggable targets in cancer therapy.
- Rational drug design, aided by crystallography and 3D modeling, has yielded potent kinase inhibitors.
Purpose of the Study:
- To discuss resistance mechanisms to tyrosine kinase inhibitors (TKIs).
- To focus on KIT and PDGFRA mutations in gastrointestinal stromal tumors (GIST).
- To explore strategies for overcoming acquired drug resistance.
Main Methods:
- Review of existing literature on cancer genetics and targeted therapies.
- Analysis of resistance mechanisms, including secondary mutations.
- Focus on specific mutations in KIT and PDGFRA relevant to GIST.
Main Results:
- Kinase inhibitors show clinical success but acquired resistance is common.
- Secondary mutations in target kinases drive acquired resistance.
- KIT and PDGFRA mutations are critical in GIST pathogenesis and resistance.
Conclusions:
- Acquired resistance, driven by secondary mutations, limits the long-term efficacy of kinase inhibitors.
- Understanding these resistance mechanisms is crucial for developing effective cancer treatments.
- New strategies are needed to overcome drug resistance and improve patient outcomes in GIST.
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