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Targeting RAS-RAF-MEK-ERK signaling in mucinous ovarian cancer: a translational evidence synthesis and clinical
Thomas Bartl1, Dan Cacsire Castillo-Tong2
1University of Vienna, Department of Obstetrics and Gynecology, Translational Gynecology Group, Medical Vienna, Austria; Medical University of Vienna, Comprehensive Cancer Center, Department of Obstetrics and Gynecology, Division of General Gynecology and Gynecologic Oncology, Vienna, Austria.
Abstract:
Mucinous ovarian cancer is a rare and molecularly distinct sub-type of epithelial ovarian cancer, characterized by intrinsic resistance to cytotoxic chemotherapy and poor prognosis in advanced stages, with a median overall survival of 12 to 34 months. Its low incidence (<3% of advanced epithelial ovarian cancers) limits the feasibility of large-scale clinical trials, underscoring the need for molecularly informed therapeutic strategies. Oncogenic activation of the mitogen-activated protein kinase (MAPK) pathway (most commonly through KRAS mutations [50%-65%] and near-universal MAPK hyperactivation) constitutes a defining feature of mucinous ovarian cancer biology and a rational therapeutic target. Despite this, there are no clinical data specifically evaluating MAPK-targeted therapies to date. Insights from other KRAS-driven malignancies reveal major challenges, including adaptive resistance, activation of compensatory signaling pathways (eg, PI3K/AKT), and intratumoral heterogeneity. This review synthesizes translational evidence for MAPK pathway targeting in mucinous ovarian cancer and proposes a clinical framework for treatment selection by integrating KRAS/MAPK activation with epidermal growth factor receptor/human epidermal growth factor receptor 2 (EGFR/HER2) signaling, PI3K pathway alterations, and tumor-immune features. As comprehensive molecular profiling advances, integrated targeting of the rat sarcoma-rapidly accelerated fibrosarcoma-mitogen-activated protein kinase kinase-extracellular signal-regulated kinase (RAS-RAF-MEK-ERK) cascade may offer promising and urgently needed therapeutic strategies for this rare malignancy.
Insights
Mucinous ovarian cancer, often resistant to chemotherapy, shows high MAPK pathway activation. Targeting this pathway, alongside others like EGFR/HER2, may offer new therapeutic strategies for this rare cancer.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Mucinous ovarian cancer (MOC) is a rare epithelial ovarian cancer subtype with poor prognosis and chemotherapy resistance.
- KRAS mutations and MAPK pathway hyperactivation are hallmarks of MOC, presenting a potential therapeutic target.
- Limited clinical trials due to low incidence necessitate molecularly driven treatment strategies.
Purpose of the Study:
- To review translational evidence for targeting the MAPK pathway in MOC.
- To propose a clinical framework for MOC treatment selection based on molecular profiling.
- To explore integrated therapeutic strategies for MOC.
Main Methods:
- Literature review of translational evidence for MAPK pathway targeting in MOC.
- Synthesis of data on KRAS/MAPK activation, EGFR/HER2 signaling, PI3K pathway alterations, and tumor-immune features.
- Development of a clinical framework for treatment selection.
Main Results:
- MAPK pathway activation, driven by KRAS mutations, is a defining feature of MOC.
- Challenges in MAPK-targeted therapy include adaptive resistance and pathway heterogeneity.
- Integration of molecular profiling data is crucial for effective treatment selection.
Conclusions:
- Targeting the RAS-RAF-MEK-ERK cascade offers a promising therapeutic avenue for MOC.
- Integrated targeting strategies considering multiple signaling pathways and tumor-immune features are needed.
- Further research and clinical trials are essential to validate these approaches for MOC.
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