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Deciphering RTK-RAS and MAPK Pathway Dependencies in Gemcitabine-Treated Pancreatic Ductal Adenocarcinoma Through
Fernando C Diaz1, Brigette Waldrup2, Francisco G Carranza2
1Lineberger Comprehensive Cancer Center, University of North Carolina, Chapel Hill, NC 27514, USA.
Abstract:
Pancreatic ductal adenocarcinoma (PDAC) is a highly lethal malignancy marked by substantial molecular heterogeneity and variable response to gemcitabine-based therapy. While KRAS mutations are nearly universal, the broader RTK-RAS and MAPK signaling architecture and its relationship to treatment response remain incompletely defined. We conducted an integrative clinical-genomic analysis of 184 PDAC tumors stratified by age at diagnosis and gemcitabine exposure, interrogating somatic alterations across curated RTK-RAS/MAPK gene sets. Conversational artificial intelligence agents (AI-HOPE-RTK-RAS and AI-HOPE-MAPK) enabled dynamic cohort construction and pathway-level analyses, with findings validated using standard statistical methods. In late-onset PDAC, ERBB2 and RET mutations were significantly enriched in gemcitabine-treated tumors. Early-onset cases demonstrated differential enrichment of CACNA2D family alterations in non-treated tumors and higher frequencies of FLNB and TP53 mutations in treated disease. Importantly, late-onset patients not treated with gemcitabine who lacked RTK-RAS or MAPK alterations exhibited significantly improved overall survival. These findings reveal age- and treatment-dependent pathway dependencies beyond canonical KRAS status and support a precision oncology framework in PDAC. Conversational AI facilitated rapid, multidimensional clinical-genomic integration to uncover clinically relevant signaling substructures.
Insights
This study reveals age- and treatment-specific signaling pathways in pancreatic ductal adenocarcinoma (PDAC). Beyond KRAS mutations, specific RTK-RAS/MAPK alterations impact survival, guiding precision oncology for PDAC patients.
Area of Science:
- Oncology
- Genomics
- Molecular Biology
Background:
- Pancreatic ductal adenocarcinoma (PDAC) is a lethal cancer with significant molecular diversity.
- Treatment response to gemcitabine varies, and the role of RTK-RAS/MAPK signaling is not fully understood.
- KRAS mutations are common, but other pathway alterations may influence outcomes.
Purpose of the Study:
- To investigate the RTK-RAS/MAPK signaling architecture in PDAC.
- To identify age- and treatment-dependent genomic alterations.
- To explore the relationship between these alterations and patient survival.
Main Methods:
- Integrative clinical-genomic analysis of 184 PDAC tumors.
- Stratification by age at diagnosis and gemcitabine exposure.
- Use of conversational AI (AI-HOPE-RTK-RAS, AI-HOPE-MAPK) for cohort construction and pathway analysis, validated statistically.
Main Results:
- Late-onset PDAC showed ERBB2 and RET mutations in gemcitabine-treated tumors.
- Early-onset PDAC had differential CACNA2D family alterations in untreated tumors and FLNB/TP53 mutations in treated tumors.
- Late-onset PDAC patients without RTK-RAS/MAPK alterations, not treated with gemcitabine, had improved survival.
Conclusions:
- PDAC exhibits age- and treatment-specific pathway dependencies beyond KRAS.
- These findings support a precision oncology approach for PDAC.
- Conversational AI effectively integrates clinical and genomic data to identify signaling vulnerabilities.
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