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Updated: Feb 4, 2026

Bioluminescence Imaging of NADPH Oxidase Activity in Different Animal Models
Published on: October 22, 2012
The novel NADPH oxidase 4 selective inhibitor GLX7013114 counteracts human islet cell death in vitro
Xuan Wang1, Andris Elksnis1, Per Wikström2
1Science for Life Laboratory, Department of Medical Cell Biology, Uppsala University, Uppsala, Sweden.
Abstract:
It has been proposed that pancreatic beta-cell dysfunction in type 2 diabetes is promoted by oxidative stress caused by NADPH oxidase (Nox) over-activity. The aim of the present study was to evaluate the efficacy of novel Nox inhibitors as protective agents against cytokine- or high glucose + palmitate-induced human beta-cell death. The Nox2 protein was present mainly in the cytoplasm and was induced by cytokines. Nox4 protein immunoreactivity, with some nuclear accumulation, was observed in human islet cells, and was not affected by islet culture in the presence of cytokines or high glucose + palmitate. Nox inhibitors with partial or no isoform selectivity (DPI, dapsone, GLX351322, and GLX481372) all reduced ROS production of human islet cells exposed to high glucose + palmitate. This was paralleled by improved viability and reduced caspase 3 activation. The Nox1 selective inhibitor ML171 failed to reduce human islet cell death in response to both cytokines and high glucose + palmitate. The selective Nox2 inhibitor Phox-I2 also failed to protect against cytokines, but protected partially against high glucose + palmitate-induced cellular death. The highly selective Nox4 inhibitor GLX7013114 protected islet cells against both cytokines and high glucose + palmitate. However, as no osmotic control for high glucose was used, we cannot exclude the possibility that the high glucose effect was due to osmosis. It is concluded that Nox4 may participate in stress-induced islet cell death in human islets in vitro. We propose that Nox4 mediates pro-apoptotic effects in intact islets under stressful conditions and that selective Nox4-inhibition may be a therapeutic strategy in type 2 diabetes.
Insights
Novel NADPH oxidase (Nox) inhibitors show promise in protecting human beta-cells from death. Selective inhibition of Nox4 may offer a therapeutic strategy for type 2 diabetes by reducing oxidative stress.
Area of Science:
- Biochemistry
- Cell Biology
- Endocrinology
Background:
- Pancreatic beta-cell dysfunction is linked to oxidative stress from NADPH oxidase (Nox) over-activity in type 2 diabetes.
- Understanding Nox isoforms' roles is crucial for developing targeted therapies.
Purpose of the Study:
- To assess novel Nox inhibitors' efficacy in protecting human beta-cells from cytokine- or high glucose + palmitate-induced death.
- To investigate the specific roles of Nox1, Nox2, and Nox4 isoforms in beta-cell apoptosis.
Main Methods:
- Human islet cells were exposed to cytokines or high glucose + palmitate.
- Cellular responses were measured using reactive oxygen species (ROS) production, viability assays, and caspase 3 activation.
- Various Nox inhibitors, including isoform-selective ones, were tested.
Main Results:
- Non-selective and partially selective Nox inhibitors reduced ROS and protected cells from high glucose + palmitate.
- Selective Nox1 and Nox2 inhibitors showed limited protective effects.
- A highly selective Nox4 inhibitor (GLX7013114) effectively protected beta-cells against both stress conditions.
Conclusions:
- Nox4 appears to play a significant role in stress-induced human beta-cell death in vitro.
- Targeting Nox4 with selective inhibitors could be a potential therapeutic approach for type 2 diabetes.
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