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Updated: Feb 11, 2026

Multianimal Magnetic Resonance Imaging for Tumor Measurements in Pancreatic Cancer Mouse Models
Published on: February 3, 2026
A novel tricarbonylmethane agent (CMC2.24) reduces human pancreatic tumor growth in mice by targeting Ras
Naveen A Mallangada1, Joselin M Vargas1, Swaroopa Thomas1
1Department of Family, Population and Preventive Medicine, Stony Brook University, Stony Brook, New York.
Abstract:
Pancreatic Cancer (PC) is a deadly disease in need of new therapeutic options. We recently developed a novel tricarbonylmethane agent (CMC2.24) as a therapeutic agent for PC, and evaluated its efficacy in preclinical models of PC. CMC2.24 inhibited the growth of various human PC cell lines in a concentration and time-dependent manner. Normal human pancreatic epithelial cells were resistant to CMC2.24, indicating selectivity. CMC2.24 reduced the growth of subcutaneous and orthotopic PC xenografts in mice by up to 65% (P < 0.02), and the growth of a human patient-derived tumor xenograft by 47.5% (P < 0.03 vs vehicle control). Mechanistically, CMC2.24 inhibited the Ras-RAF-MEK-ERK pathway. Based on Ras Pull-Down Assays, CMC2.24 inhibited Ras-GTP, the active form of Ras, in MIA PaCa-2 cells and in pancreatic acinar explants isolated from Kras mutant mice, by 90.3% and 89.1%, respectively (P < 0.01, for both). The inhibition of active Ras led to an inhibition of c-RAF, MEK, and ERK phosphorylation by 93%, 91%, and 87%, respectively (P < 0.02, for all) in PC xenografts. Furthermore, c-RAF overexpression partially rescued MIA PaCa-2 cells from the cell growth inhibition by CMC2.24. In addition, downstream of ERK, CMC2.24 inhibited STAT3 phosphorylation levels at the serine 727 residue, enhanced the levels of superoxide anion in mitochondria, and induced intrinsic apoptosis as shown by the release of cytochrome c from the mitochondria to the cytosol and the further cleavage of caspase 9 in PC cells. In conclusion, CMC2.24, a potential Ras inhibitor, is an efficacious agent for PC treatment in preclinical models, deserving further evaluation.
Insights
A novel agent, CMC2.24, shows promise in treating pancreatic cancer (PC) by inhibiting the Ras pathway. This compound effectively reduced tumor growth in preclinical models with minimal impact on normal cells, indicating its therapeutic potential.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Pancreatic cancer (PC) remains a significant challenge with limited therapeutic options.
- Novel therapeutic strategies are urgently needed to improve patient outcomes.
Purpose of the Study:
- To evaluate the efficacy and mechanism of action of a novel tricarbonylmethane agent, CMC2.24, as a potential treatment for pancreatic cancer.
Main Methods:
- Assessed CMC2.24's effect on human PC cell lines and normal pancreatic cells in vitro.
- Evaluated CMC2.24's efficacy in subcutaneous and orthotopic PC xenograft mouse models and patient-derived xenografts.
- Investigated the molecular mechanism, including Ras pathway inhibition, using Ras Pull-Down Assays and Western blotting.
- Analyzed downstream effects on STAT3 phosphorylation, mitochondrial function, and apoptosis.
Main Results:
- CMC2.24 demonstrated dose- and time-dependent inhibition of PC cell growth, with selectivity over normal cells.
- Significant reduction in tumor growth observed in xenograft models (up to 65% in mice, 47.5% in patient-derived xenografts).
- CMC2.24 effectively inhibited Ras-GTP, c-RAF, MEK, and ERK phosphorylation, indicating Ras pathway blockade.
- Downstream effects included inhibition of STAT3 phosphorylation, increased mitochondrial superoxide, and induction of apoptosis.
Conclusions:
- CMC2.24 exhibits potent anti-cancer activity in preclinical pancreatic cancer models.
- The agent functions by inhibiting the Ras-RAF-MEK-ERK pathway, leading to apoptosis.
- CMC2.24 represents a promising therapeutic candidate for pancreatic cancer requiring further clinical investigation.
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