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Updated: May 23, 2026

Bioluminescence Imaging of NADPH Oxidase Activity in Different Animal Models
Published on: October 22, 2012
Deficiency in the NADPH oxidase 4 predisposes towards diet-induced obesity
1Department of Cellular Physiology and Metabolism, University of Geneva, Geneva, Switzerland.
Objective:
NADPH oxidase 4 (NOX4) is a reactive oxygen species (ROS) producing NADPH oxidase that regulates redox homeostasis in diverse insulin-sensitive cell types. In particular, NOX4-derived ROS is a key modulator of adipocyte differentiation and mediates insulin receptor signaling in mature adipocytes in vitro. Our study was aimed at investigating the role of NOX4 in adipose tissue differentiation, whole body metabolic homeostasis and insulin sensitivity in vivo.
Design:
Mice with genetic ablation of NOX4 (NOX4-deficient mice) were subjected to chow or high-fat-containing diet for 12 weeks. Body weight gain, adiposity, insulin sensitivity, and adipose tissue and liver gene and protein expression were analyzed and compared with similarly treated wild-type mice.
Results:
Here, we report that NOX4-deficient mice display latent adipose tissue accumulation and are susceptible to diet-induced obesity and early onset insulin resistance. Obesity results from accelerated adipocyte differentiation and hypertrophy, and an increase in whole body energy efficiency. Insulin resistance is associated with increased adipose tissue hypoxia, inflammation and adipocyte apoptosis. In the liver, more severe diet-induced steatosis was observed due to the lack of proper upregulation of mitochondrial fatty acid β-oxidation.
Conclusion:
These findings identify NOX4 as a regulator of metabolic homeostasis. Moreover, they indicate an anti-adipogenic role for NOX4 in vivo and reveal its function as a protector against the development of diet-induced obesity, insulin resistance and hepatosteatosis.
Insights
NADPH oxidase 4 (NOX4) deficiency accelerates adipocyte differentiation, leading to diet-induced obesity and insulin resistance. NOX4 protects against metabolic dysfunction and liver steatosis in vivo.
Area of Science:
- Biochemistry
- Metabolic research
- Cell biology
Background:
- NADPH oxidase 4 (NOX4) produces reactive oxygen species (ROS) crucial for redox homeostasis.
- NOX4-derived ROS modulates adipocyte differentiation and insulin receptor signaling in vitro.
Purpose of the Study:
- Investigate NOX4's role in adipose tissue differentiation.
- Determine NOX4's function in whole-body metabolic homeostasis and insulin sensitivity in vivo.
Main Methods:
- Utilized NOX4-deficient mice and wild-type controls.
- Administered chow or high-fat diet for 12 weeks.
- Analyzed body weight, adiposity, insulin sensitivity, and gene/protein expression in adipose tissue and liver.
Main Results:
- NOX4-deficient mice showed increased adiposity, diet-induced obesity, and early insulin resistance.
- Accelerated adipocyte differentiation and hypertrophy contributed to obesity.
- Insulin resistance was linked to adipose hypoxia, inflammation, and apoptosis, with exacerbated liver steatosis.
Conclusions:
- NOX4 regulates metabolic homeostasis.
- NOX4 exhibits an anti-adipogenic role in vivo.
- NOX4 protects against diet-induced obesity, insulin resistance, and hepatosteatosis.
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