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Pirfenidone regulates obesity-related renal injury through the SIRT3 signaling pathway
Shan Yang1, Cheng Chen2, Yang Xiong3
1Department of Nephrology, The Second Affiliated Hospital, Chongqing Medical University, Chongqing 400010, China.
Objective:
Pirfenidone (PFD) has been used to treat kidney fibrosis. However, the effects of PFD on obesity-related kidney injury and the underlying mechanisms are still poorly understood.
Methods:
Male C57BL/6 J mice were fed a high-fat diet (HFD) for 20 weeks to induce kidney injury, and PFD was added to the feed of the mice in the PFD group beginning at 8 weeks. The controls were fed a normal control diet (NCD), and half of the mice were similarly treated with PFD. Indicators associated with lipid metabolism and kidney injury were assessed in vivo. Furthermore, human proximal tubular epithelial (HK-2) cells and human primary renal proximal tubule epithelial cells (PTECs) were incubated with palmitate (PA) and PFD, to investigate the effect of PFD on tubule cell injury in vitro. Single-cell sequencing analysis, molecular docking, and coimmunoprecipitation were subsequently used to explore the mechanisms of PFD action.
Results:
PFD ameliorated metabolic abnormalities, inflammatory responses and oxidative stress induced by an HFD. PFD alleviated renal fatty acid oxidation and injury indicators in the HFD-fed mice and PA-treated renal tubular cells. PFD reversed the HFD/PA-induced decrease in SIRT3 protein expression. Moreover, transfection with si-SIRT3 abolished the beneficial effects of PFD on kidney injury and lipid metabolism in HK-2 cells.
Conclusion:
In summary, our data revealed that PFD could mitigate obesity-related kidney injury in a SIRT3-dependent manner.
Insights
Pirfenidone (PFD) helps treat kidney fibrosis. This study shows PFD can mitigate obesity-related kidney injury by increasing SIRT3 protein expression, offering a potential therapeutic strategy for metabolic dysfunction.
Area of Science:
- Nephrology
- Metabolic Diseases
- Pharmacology
Background:
- Obesity-related kidney injury is a growing concern with unclear treatment mechanisms.
- Pirfenidone (PFD) is known for treating kidney fibrosis, but its role in obesity-induced kidney damage requires investigation.
Purpose of the Study:
- To investigate the efficacy of Pirfenidone (PFD) in mitigating obesity-related kidney injury.
- To elucidate the underlying molecular mechanisms of PFD action in kidney damage.
Main Methods:
- High-fat diet (HFD) induced kidney injury in C57BL/6J mice, with PFD administration.
- In vitro studies used palmitate (PA)-treated human renal tubular cells (HK-2, PTECs).
- Assessed lipid metabolism, kidney injury markers, and explored mechanisms via single-cell sequencing and coimmunoprecipitation.
Main Results:
- PFD ameliorated HFD-induced metabolic abnormalities, inflammation, and oxidative stress.
- PFD alleviated renal fatty acid oxidation and injury markers in vivo and in vitro.
- PFD reversed HFD/PA-induced decrease in SIRT3 protein; SIRT3 knockdown abolished PFD's benefits.
Conclusions:
- Pirfenidone (PFD) mitigates obesity-related kidney injury.
- The protective effects of PFD are dependent on SIRT3 expression.
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