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Updated: Jul 13, 2026

Multianimal Magnetic Resonance Imaging for Tumor Measurements in Pancreatic Cancer Mouse Models
Published on: February 3, 2026
Selective sigma-2 ligands preferentially bind to pancreatic adenocarcinomas: applications in diagnostic imaging and
Hiroyuki Kashiwagi1, Jonathan E McDunn, Peter O Simon
1Department of Surgery, Washington University School of Medicine, Saint Louis, USA. kashiwagih@wudosis.wustl.edu
Background:
Resistance to modern adjuvant treatment is in part due to the failure of programmed cell death. Therefore the molecules that execute the apoptotic program are potential targets for the development of anti-cancer therapeutics. The sigma-2 receptor has been found to be over-expressed in some types of malignant tumors, and, recently, small molecule ligands to the sigma-2 receptor were found to induce cancer cell apoptosis.
Results:
The sigma-2 receptor was expressed at high levels in both human and murine pancreas cancer cell lines, with minimal or limited expression in normal tissues, including: brain, kidney, liver, lung, pancreas and spleen. Micro-PET imaging was used to demonstrate that the sigma-2 receptor was preferentially expressed in tumor as opposed to normal tissues in pancreas tumor allograft-bearing mice. Two structurally distinct sigma-2 receptor ligands, SV119 and WC26, were found to induce apoptosis to mice and human pancreatic cancer cells in vitro and in vivo. Sigma-2 receptor ligands induced apoptosis in a dose dependent fashion in all pancreatic cell lines tested. At the highest dose tested (10 muM), all sigma-2 receptor ligands induced 10-20% apoptosis in all pancreatic cancer cell lines tested (p < 0.05). In pancreas tumor allograft-bearing mice, a single bolus dose of WC26 caused approximately 50% apoptosis in the tumor compared to no appreciable apoptosis in tumor-bearing, vehicle-injected control animals (p < 0.0001). WC26 significantly slowed tumor growth after a 5 day treatment compared to vehicle-injected control animals (p < 0.0001) and blood chemistry panels suggested that there is minimal peripheral toxicity.
Conclusion:
We demonstrate a novel therapeutic strategy that induces a significant increase in pancreas cancer cell death. This strategy highlights a new potential target for the treatment of pancreas cancer, which has little in the way of effective treatments.
Insights
Targeting the sigma-2 receptor with novel ligands effectively induces apoptosis in pancreatic cancer cells. This research presents a promising new therapeutic strategy for pancreatic cancer, a disease with limited treatment options.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Programmed cell death (apoptosis) failure contributes to treatment resistance in modern adjuvant therapies.
- The sigma-2 receptor is over-expressed in malignant tumors and its ligands can induce cancer cell apoptosis.
- Pancreatic cancer has limited effective treatment options, necessitating novel therapeutic strategies.
Purpose of the Study:
- To investigate the expression of the sigma-2 receptor in pancreatic cancer.
- To evaluate the efficacy of sigma-2 receptor ligands in inducing apoptosis and inhibiting tumor growth in pancreatic cancer.
- To assess the potential of sigma-2 receptor-targeted therapy for pancreatic cancer treatment.
Main Methods:
- Assessed sigma-2 receptor expression in human and murine pancreatic cancer cell lines and normal tissues.
- Utilized Micro-PET imaging to visualize sigma-2 receptor expression in vivo.
- Administered sigma-2 receptor ligands (SV119 and WC26) to cancer cells in vitro and in tumor-bearing mice.
- Quantified apoptosis induction and tumor growth inhibition.
- Monitored peripheral toxicity through blood chemistry panels.
Main Results:
- High sigma-2 receptor expression was observed in pancreatic cancer cell lines, with minimal expression in normal tissues.
- Micro-PET imaging confirmed preferential sigma-2 receptor expression in tumors.
- Sigma-2 receptor ligands (SV119 and WC26) induced dose-dependent apoptosis in pancreatic cancer cells both in vitro and in vivo.
- A single dose of WC26 induced approximately 50% apoptosis in tumors and significantly slowed tumor growth.
- Minimal peripheral toxicity was observed in treated mice.
Conclusions:
- The sigma-2 receptor is a viable therapeutic target for pancreatic cancer.
- Small molecule ligands targeting the sigma-2 receptor represent a novel strategy for inducing pancreatic cancer cell death.
- This approach offers a promising new avenue for treating pancreatic cancer.
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