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Updated: Jul 4, 2025

A Real-time Potency Assay for Chimeric Antigen Receptor T Cells Targeting Solid and Hematological Cancer Cells
Published on: November 12, 2019
New Ref-1/APE1 targeted inhibitors demonstrating improved potency for clinical applications in multiple cancer types
Silpa Gampala1, Hye-Ran Moon2, Randall Wireman3
1Department of Pediatrics and Herman B Wells Center for Pediatric Research, Indiana University School of Medicine, Indianapolis, IN 46202, USA; Indiana University Simon Comprehensive Cancer Center, Indiana University School of Medicine, Indianapolis, IN 46202, USA.
Abstract:
AP endonuclease-1/Redox factor-1 (APE1/Ref-1 or Ref-1) is a multifunctional protein that is overexpressed in most aggressive cancers and impacts various cancer cell signaling pathways. Ref-1's redox activity plays a significant role in activating transcription factors (TFs) such as NFκB, HIF1α, STAT3 and AP-1, which are crucial contributors to the development of tumors and metastatic growth. Therefore, development of potent, selective inhibitors to target Ref-1 redox function is an appealing approach for therapeutic intervention. A first-generation compound, APX3330 successfully completed phase I clinical trial in adults with progressing solid tumors with favorable response rate, pharmacokinetics (PK), and minimal toxicity. These positive results prompted us to develop more potent analogs of APX3330 to effectively target Ref-1 in solid tumors. In this study, we present structure-activity relationship (SAR) identification and validation of lead compounds that exhibit a greater potency and a similar or better safety profile to APX3330. In order to triage and characterize the most potent and on-target second-generation Ref-1 redox inhibitors, we assayed for PK, mouse and human S9 fraction metabolic stability, in silico ADMET properties, ligand-based WaterLOGSY NMR measurements, pharmacodynamic markers, cell viability in multiple cancer cell types, and two distinct 3-dimensional (3D) cell killing assays (Tumor-Microenvironment on a Chip and 3D spheroid). To characterize the effects of Ref-1 inhibition in vivo, global proteomics was used following treatment with the top four analogs. This study identified and characterized more potent inhibitors of Ref-1 redox function (that outperformed APX3330 by 5-10-fold) with PK studies demonstrating efficacious doses for translation to clinic.
Insights
Researchers developed novel, potent inhibitors targeting AP endonuclease-1/Redox factor-1 (APE1/Ref-1) for cancer therapy. These second-generation compounds show significantly improved efficacy and safety over the first-generation drug, paving the way for clinical translation.
Area of Science:
- Biochemistry
- Molecular Biology
- Oncology
Background:
- AP endonuclease-1/Redox factor-1 (APE1/Ref-1) is overexpressed in aggressive cancers.
- Ref-1's redox activity influences key cancer signaling pathways, including NFκB and HIF1α.
- Targeting Ref-1's redox function presents a promising therapeutic strategy.
Purpose of the Study:
- To identify and validate potent, selective second-generation inhibitors of Ref-1 redox function.
- To develop analogs with improved potency and safety compared to the first-generation compound APX3330.
- To assess the therapeutic potential of these inhibitors in solid tumors.
Main Methods:
- Structure-activity relationship (SAR) studies were conducted.
- In vitro assays included pharmacokinetic (PK) profiling, metabolic stability (S9 fraction), in silico ADMET prediction, WaterLOGSY NMR, and cell viability assays.
- In vivo characterization involved 3D cell killing assays, pharmacodynamic marker analysis, and global proteomics.
Main Results:
- New Ref-1 inhibitors demonstrated 5-10 fold greater potency than APX3330.
- Compounds exhibited favorable PK profiles and comparable or improved safety.
- In vivo studies confirmed Ref-1 inhibition and potential for therapeutic efficacy.
Conclusions:
- Potent second-generation Ref-1 redox inhibitors were successfully identified and characterized.
- These compounds show significant promise for treating solid tumors.
- Further clinical development is warranted based on efficacy and safety data.
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