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Published on: August 24, 2019
KRAS inhibition is an effective therapy for appendiceal adenocarcinoma
Saikat Chowdhury1, Ichiaki Ito1, Vinay K Pattalachinti1
1Department of Gastrointestinal Medical Oncology, The University of Texas MD Anderson Cancer Center, 1515 Holcombe BLVD, Houston, TX, 77030, USA.
Background:
Appendiceal adenocarcinoma (AA) is a rare cancer with limited treatment options. KRAS is the most commonly mutated gene in AA and a promising therapeutic target, but its preclinical and translational relevance in AA remains unclear.
Methods:
We evaluated KRASG12D-specific (MRTX1133) and pan-KRAS inhibitor (RMC-6236) in KRASmut organoid and PDX models of AA. Tumor-intrinsic and microenvironmental responses were characterized using multi-omics profiling. Clinical outcomes were also assessed in cohort of 15 patients with AA treated with KRAS inhibitors.
Results:
MRTX1133 was highly effective for KRASG12D organoids (IC50 = 4.1 nM); both KRASG12D and KRASG12V organoids were sensitive to RMC-6236 (IC50 = 4.4 nM vs. 0.5 nM, respectively). In PDX models of peritoneal carcinomatosis from AA, MRTX1133 reduced tumor growth in the KRASG12D model TM00351, and RMC-6236 reduced tumor growth in KRASG12V model AAPDX-16. Pathologic evaluation showed dramatically reduced tumor cellularity, proliferation, and pERK expression as well as induction of apoptosis. Gene Set Enrichment Analysis (GSEA) demonstrated consistent downregulation of E2F targets and RAS/ERK signaling across both models, confirming on-target KRAS inhibition, alongside upregulation of EMT (Epithelial-to-Mesenchymal Transition), suggesting a shared resistance-associated transcriptional program. Interferon-alpha and interferon-gamma signaling were significantly upregulated following pan-KRAS inhibition, implicating TME (Tumor Microenvironment) immunomodulation as a downstream consequence of KRAS inhibition in AA. scRNA-seq analysis of the TME showed a dramatic shift from normal to inflammatory cancer-associated fibroblasts (CAFs) following KRAS inhibition. Upregulation of interferon alpha and gamma pathways was also observed, suggesting that KRAS inhibition can activate innate immune response in the setting of peritoneal metastases. Among 15 patients treated with KRAS inhibitors (8 G12D, 5 G12C, 2 pan-KRAS), all evaluable pateints had a biochemical response by serum markers and clinical benefit by imaging criteria (1 CR, 1 PR, 12 SD).
Conclusions:
While effective suppression of RAS/ERK signaling by KRAS inhibitors reduces tumor growth, adaptive activation of EMT pathway may mediate resistance in KRASmut AA. Additionally, KRAS inhibition remodels TME and may enhance innate immune signaling. These findings support the continued clinical development of KRAS inhibitors in AA and provide a rationale for combination strategies targeting resistance pathways and stromal remodeling.
Insights
KRAS inhibitors show promise for appendiceal adenocarcinoma (AA) by reducing tumor growth and activating immune responses. However, resistance may develop through EMT pathways, suggesting combination therapies are needed.
Area of Science:
- Oncology
- Cancer Therapeutics
- Molecular Biology
Background:
- Appendiceal adenocarcinoma (AA) is rare with limited treatment options.
- KRAS mutations are common in AA and represent a potential therapeutic target.
- The preclinical and translational relevance of targeting KRAS in AA is not well understood.
Purpose of the Study:
- To evaluate KRAS inhibitors in preclinical models of appendiceal adenocarcinoma.
- To characterize tumor-intrinsic and microenvironmental responses to KRAS inhibition.
- To assess the clinical efficacy of KRAS inhibitors in patients with AA.
Main Methods:
- Utilized KRAS mutant organoid and patient-derived xenograft (PDX) models of AA.
- Administered KRASG12D-specific (MRTX1133) and pan-KRAS inhibitors (RMC-6236).
- Performed multi-omics profiling, pathologic evaluation, and single-cell RNA sequencing (scRNA-seq).
- Assessed clinical outcomes in 15 patients with AA treated with KRAS inhibitors.
Main Results:
- KRAS inhibitors demonstrated potent anti-tumor activity in organoid and PDX models.
- Inhibition of KRAS signaling reduced tumor cellularity, proliferation, and pERK expression, while inducing apoptosis.
- Transcriptional analysis revealed on-target KRAS inhibition and upregulation of Epithelial-to-Mesenchymal Transition (EMT) pathways.
- Pan-KRAS inhibition modulated the tumor microenvironment (TME), increasing interferon signaling and inflammatory cancer-associated fibroblasts (CAFs).
- All evaluable patients (n=15) treated with KRAS inhibitors achieved biochemical response and/or clinical benefit.
Conclusions:
- KRAS inhibitors effectively suppress RAS/ERK signaling and reduce tumor growth in AA.
- Adaptive activation of EMT pathways may mediate resistance to KRAS inhibitors.
- KRAS inhibition remodels the TME, potentially enhancing innate immune signaling.
- Findings support further clinical development of KRAS inhibitors in AA, with a rationale for combination strategies targeting resistance and stromal remodeling.
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