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Updated: Jul 2, 2026

Molecular and Immunologic Techniques in a Genetically Engineered Mouse Model of Gastrointestinal Stromal Tumor
Published on: May 2, 2022
Molecular targets in Gastrointestinal Stromal Tumors (GIST) therapy
C Braconi1, R Bracci, R Cellerino
1Centro Regionale di Genetica Oncologica-Oncologia Medica, Università Politecnica delle Marche, Ancona, Italy.
Abstract:
Gastrointestinal Stromal Tumors (GISTs) are the most common mesenchimal tumors of the gastrointestinal tract. Such tumors usually have activating mutations in either KIT (75-80%) or Platelet Derived Growth Factor Receptor alpha (PDGFRa) (5-10%) which lead to ligand-independent signal transduction. Targeting these activated proteins with Imatinib mesylate, a small-molecule kinase inhibitor, has proven useful in the treatment of recurrent or metastatic GISTs. However, more than half of patients develop resistance to Imatinib after about 2 years. Therefore, other targets have been studying in order to implement the therapeutical armamentarium for this disease. Sunitinib malate is an oral multikinase inhibitor that targets several receptor tyrosine kinases and has proved to prolong survival in Imatinib-resistant patients. Other molecules, such as Nilotinib, Sorafenib and Dasatinib were shown to be useful in Imatinib resistant mutant cell lines and the results of their activity in humans are being awaited. Recent evidence suggests that GIST cells acquire the capability to escape from the control of KIT and PDGFRa through the activation of alternative pathways. Therefore, further effort should be invested in the discovery of new signaling pathways, such as AXL, MET, IGF-R, which might be involved in the evolution of the disease. After a description of KIT and PDGFRa as known targets of anti-GIST treatments, we review other mechanisms and mediators that might be potential targets of new therapies, providing a comprehensive revision of the new molecular strategies under investigation.
Insights
Gastrointestinal Stromal Tumors (GISTs) are common. While Imatinib is effective, resistance develops. New therapies targeting alternative pathways like AXL, MET, and IGF-R are crucial for GIST treatment.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Gastrointestinal Stromal Tumors (GISTs) are the most common mesenchymal tumors of the GI tract.
- Activating mutations in KIT (75-80%) or PDGFRa (5-10%) drive GISTs, leading to uncontrolled signaling.
- Imatinib mesylate is a first-line treatment but resistance emerges in over half of patients within two years.
Purpose of the Study:
- To review established and emerging molecular targets for GIST treatment.
- To explore alternative signaling pathways driving GIST progression and resistance.
- To provide a comprehensive overview of new therapeutic strategies for GIST.
Main Methods:
- Literature review of GIST pathogenesis and targeted therapies.
- Analysis of mechanisms underlying Imatinib resistance.
- Identification of novel signaling pathways implicated in GIST evolution.
Main Results:
- KIT and PDGFRa are primary targets, but resistance necessitates alternative strategies.
- Sunitinib malate prolongs survival in Imatinib-resistant GIST patients.
- Emerging targets include AXL, MET, and IGF-R, alongside other kinase inhibitors like Nilotinib, Sorafenib, and Dasatinib.
Conclusions:
- GIST treatment requires continuous adaptation due to acquired resistance.
- Targeting alternative pathways is essential to overcome therapeutic limitations.
- Further research into novel molecular targets like AXL, MET, and IGF-R holds promise for improved GIST management.
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