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State-of-the-Art Strategies for Targeting RET-Dependent Cancers
Vivek Subbiah1,2,3, Dong Yang4, Vamsidhar Velcheti5
1Department of Investigational Cancer Therapy, The University of Texas MD Anderson Cancer Center, Houston, TX.
Abstract:
Activating receptor tyrosine kinase RET (rarranged during transfection) gene alterations have been identified as oncogenic in multiple malignancies. RET gene rearrangements retaining the kinase domain are oncogenic drivers in papillary thyroid cancer, non-small-cell lung cancer, and multiple other cancers. Activating RET mutations are associated with different phenotypes of multiple endocrine neoplasia type 2 as well as sporadic medullary thyroid cancer. RET is thus an attractive therapeutic target in patients with oncogenic RET alterations. Multikinase inhibitors with RET inhibitor activity, such as cabozantinib and vandetanib, have been explored in the clinic for tumors with activating RET gene alterations with modest clinical efficacy. As a result of the nonselective nature of these multikinase inhibitors, patients had off-target adverse effects, such as hypertension, rash, and diarrhea. This resulted in a narrow therapeutic index of these drugs, limiting ability to dose for clinically effective RET inhibition. In contrast, the recent discovery and clinical validation of highly potent selective RET inhibitors (pralsetinib, selpercatinib) demonstrating improved efficacy and a more favorable toxicity profile are poised to alter the landscape of RET-dependent cancers. These drugs appear to have broad activity across tumors with activating RET alterations. The mechanisms of resistance to these next-generation highly selective RET inhibitors is an area of active research. This review summarizes the current understanding of RET alterations and the state-of-the-art treatment strategies in RET-dependent cancers.
Insights
Activating RET gene alterations drive various cancers. Selective RET inhibitors offer improved efficacy and safety over older drugs, changing treatment for RET-dependent cancers.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Activating alterations in the rearranged during transfection (RET) gene are oncogenic drivers in multiple cancers, including thyroid and lung cancer.
- RET alterations, such as rearrangements and mutations, are implicated in various malignancies and represent key therapeutic targets.
- Previous multikinase inhibitors targeting RET showed modest efficacy and significant off-target toxicities.
Purpose of the Study:
- To review the current understanding of RET alterations in cancer.
- To summarize state-of-the-art treatment strategies for RET-dependent cancers.
- To highlight the advancements in selective RET inhibitors.
Main Methods:
- Literature review of studies on RET gene alterations and targeted therapies.
- Analysis of clinical trial data for existing and novel RET inhibitors.
- Synthesis of information on mechanisms of action, efficacy, and toxicity profiles.
Main Results:
- Activating RET alterations are confirmed oncogenic drivers in diverse cancers.
- Selective RET inhibitors (e.g., pralsetinib, selpercatinib) demonstrate superior efficacy and a better safety profile compared to older multikinase inhibitors.
- These newer agents show broad activity across various RET-altered tumors.
Conclusions:
- Selective RET inhibitors are transforming the treatment landscape for RET-dependent cancers.
- Further research is ongoing to understand and overcome resistance mechanisms to these targeted therapies.
- RET remains a critical therapeutic target, with ongoing development of novel inhibitors.
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