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TNF-α Deficiency Prevents Renal Inflammation and Oxidative Stress in Obese Mice
Huaiguo Wang1, Jian Li2, Zhibo Gai3
1Department of Nephrology, Liaocheng, China.
Background/Aims:
Obese patients and experimental animals exhibit high levels of inflammatory cytokines, such as tumor necrosis factor (TNF)-α. However, the role of TNF-α in the pathophysiologic process in obesity induced kidney damage is still unknown.
Methods:
We used TNF-α deficient mice and wild-type (WT) C57/BJ6 mice controls to study the effect of TNF-α on inflammation and oxidative stress in kidney by the model of high-fat diet (HFD) and primary isolated mouse renal proximal tubule cells treated with a mixture of free fatty acids (FFA).
Results:
Compared with the chow diet group, HFD-fed WT mice had higher urinary albumin and increased levels of renal fibrosis, glomerulosclerosis, inflammation, oxidative stress and apoptosis in the kidney. These changes were co-related with increased expression of TNF-α in the kidney and were attenuated by TNF-α deficiency. In vitro, accumulation of intracellular lipids induced TNF-α expression and oxidative stress in FFA treated primary proximal tubule cells. However, TNF-α inhibition with siRNA or TNF-α deficiency decreased the lipid induced oxidative stress in these cells.
Conclusion:
These findings suggest that TNF-α plays an important role in the HFD induced kidney damage, and targeting TNF-α and/or its receptors could be a promising therapeutic regimen for progressive nephropathy.
Insights
Tumor necrosis factor-alpha (TNF-α) drives kidney damage in obesity. TNF-α deficiency protects against high-fat diet-induced kidney injury, suggesting it as a therapeutic target for progressive nephropathy.
Area of Science:
- Nephrology
- Immunology
- Metabolic Diseases
Background:
- Obesity is linked to elevated inflammatory cytokines like tumor necrosis factor-alpha (TNF-α).
- The specific role of TNF-α in obesity-related kidney damage remains unclear.
Purpose of the Study:
- To investigate the role of TNF-α in kidney damage induced by a high-fat diet (HFD).
- To explore the impact of TNF-α on inflammation and oxidative stress in the kidneys.
Main Methods:
- Utilized TNF-α deficient mice and wild-type controls fed a HFD.
- Employed a model of primary mouse renal proximal tubule cells treated with free fatty acids (FFA).
Main Results:
- HFD-induced kidney damage (albuminuria, fibrosis, inflammation, oxidative stress, apoptosis) was reduced in TNF-α deficient mice.
- In vitro, FFAs increased TNF-α and oxidative stress in kidney cells; TNF-α deficiency or inhibition mitigated this.
- Kidney TNF-α expression correlated with HFD-induced kidney injury.
Conclusions:
- TNF-α is a key mediator of HFD-induced kidney damage.
- Targeting TNF-α or its receptors may offer a therapeutic strategy for progressive nephropathy.
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