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Impact of APE1/Ref-1 redox inhibition on pancreatic tumor growth
Melissa L Fishel1, Yanlin Jiang, N V Rajeshkumar
1Department of Pediatrics, Herman B Wells Center for Pediatric Research, Indiana University of School of Medicine, 980 W. Walnut, R3-548, Indianapolis, IN 46202, USA. mfishel@iupui.edu
Abstract:
Pancreatic cancer is especially a deadly form of cancer with a survival rate less than 2%. Pancreatic cancers respond poorly to existing chemotherapeutic agents and radiation, and progress for the treatment of pancreatic cancer remains elusive. To address this unmet medical need, a better understanding of critical pathways and molecular mechanisms involved in pancreatic tumor development, progression, and resistance to traditional therapy is therefore critical. Reduction-oxidation (redox) signaling systems are emerging as important targets in pancreatic cancer. AP endonuclease1/Redox effector factor 1 (APE1/Ref-1) is upregulated in human pancreatic cancer cells and modulation of its redox activity blocks the proliferation and migration of pancreatic cancer cells and pancreatic cancer-associated endothelial cells in vitro. Modulation of APE1/Ref-1 using a specific inhibitor of APE1/Ref-1's redox function, E3330, leads to a decrease in transcription factor activity for NFκB, AP-1, and HIF1α in vitro. This study aims to further establish the redox signaling protein APE1/Ref-1 as a molecular target in pancreatic cancer. Here, we show that inhibition of APE1/Ref-1 via E3330 results in tumor growth inhibition in cell lines and pancreatic cancer xenograft models in mice. Pharmacokinetic studies also show that E3330 attains more than10 micromol/L blood concentrations and is detectable in tumor xenografts. Through inhibition of APE1/Ref-1, the activity of NFκB, AP-1, and HIF1α that are key transcriptional regulators involved in survival, invasion, and metastasis is blocked. These data indicate that E3330, inhibitor of APE1/Ref-1, has potential in pancreatic cancer and clinical investigation of APE1/Ref-1 molecular target is warranted.
Insights
Targeting AP endonuclease1/Redox effector factor 1 (APE1/Ref-1) with E3330 inhibits pancreatic cancer growth. This approach blocks key transcription factors, showing potential for new pancreatic cancer treatments.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Pancreatic cancer has a poor prognosis with limited treatment options.
- Understanding molecular mechanisms driving tumor growth and therapy resistance is critical.
- Redox signaling pathways are increasingly recognized as crucial in pancreatic cancer.
Purpose of the Study:
- To establish the redox signaling protein APE1/Ref-1 as a viable molecular target for pancreatic cancer therapy.
- To evaluate the efficacy of the APE1/Ref-1 inhibitor E3330 in preclinical models of pancreatic cancer.
Main Methods:
- Inhibition of APE1/Ref-1 redox activity using the specific inhibitor E3330.
- Assessment of E3330's impact on pancreatic cancer cell proliferation and migration in vitro.
- Evaluation of E3330's effect on tumor growth in pancreatic cancer xenograft models in mice.
- Pharmacokinetic analysis of E3330 blood and tumor concentrations.
- Measurement of transcription factor activity (NFκB, AP-1, HIF1α) following E3330 treatment.
Main Results:
- E3330 treatment significantly inhibited pancreatic cancer cell proliferation and migration in vitro.
- Inhibition of APE1/Ref-1 by E3330 led to decreased tumor growth in mouse xenograft models.
- E3330 achieved therapeutic blood concentrations (>10 µmol/L) and was detectable in tumor xenografts.
- E3330 effectively blocked the activity of key transcription factors NFκB, AP-1, and HIF1α.
Conclusions:
- The APE1/Ref-1 inhibitor E3330 demonstrates significant preclinical efficacy in inhibiting pancreatic cancer growth.
- Blocking APE1/Ref-1 disrupts critical transcriptional pathways involved in cancer survival, invasion, and metastasis.
- These findings support further clinical investigation of APE1/Ref-1 as a therapeutic target in pancreatic cancer.
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