Targeting ROS and cPLA2/COX2 Expressions Ameliorated Renal Damage in Obese Mice with Endotoxemia
Jia-Feng Chang1,2,3,4,5, Jih-Chen Yeh6,7, Chun-Ta Ho8
1Division of Nephrology, Department of Internal Medicine, En Chu Kong Hospital, New Taipei City 237, Taiwan. cjf6699@gamil.com.
Abstract:
Obesity is associated with metabolic endotoxemia, reactive oxygen species (ROS), chronic inflammation, and obese kidney fibrosis. Although the fat-intestine-kidney axis has been documented, the pathomechanism and therapeutic targets of obese kidney fibrosis remain unelucidated. To mimic obese humans with metabolic endotoxemia, high-fat-diet-fed mice (HF group) were injected with lipopolysaccharide (LPS) to yield the obese kidney fibrosis-metabolic endotoxemia mouse model (HL group). Therapeutic effects of ROS, cytosolic phospholipases A2 (cPLA2) and cyclooxygenase-2 (COX-2) inhibitors were analyzed with a quantitative comparison of immunohistochemistry stains and morphometric approach in the tubulointerstitium of different groups. Compared with basal and HF groups, the HL group exhibited the most prominent obese kidney fibrosis, tubular epithelial lipid vacuoles, and lymphocyte infiltration in the tubulointerstitium. Furthermore, inhibitors of nonspecific ROS, cPLA2 and COX-2 ameliorated the above renal damages. Notably, the ROS-inhibitor-treated group ameliorated not only oxidative injury but also the expression of cPLA2 and COX-2, indicating that ROS functions as the upstream signaling molecule in the inflammatory cascade of obese kidney fibrosis. ROS acts as a key messenger in the signaling transduction of obese kidney fibrosis, activating downstream cPLA2 and COX-2. The given antioxidant treatment ameliorates obese kidney fibrosis resulting from a combined high-fat diet and LPS-ROS could serve as a potential therapeutic target of obese kidney fibrosis with metabolic endotoxemia.
Insights
Reactive oxygen species (ROS) drive obese kidney fibrosis by activating cytosolic phospholipases A2 (cPLA2) and cyclooxygenase-2 (COX-2). Antioxidant therapy targeting ROS shows promise for treating this condition.
Area of Science:
- Nephrology
- Metabolic Research
- Inflammation Studies
Background:
- Obesity is linked to metabolic endotoxemia, reactive oxygen species (ROS), chronic inflammation, and kidney fibrosis.
- The precise mechanisms and therapeutic targets for obese kidney fibrosis remain unclear.
Purpose of the Study:
- To establish a mouse model of obese kidney fibrosis with metabolic endotoxemia.
- To investigate the therapeutic potential of targeting ROS, cPLA2, and COX-2 in this model.
Main Methods:
- A high-fat diet and lipopolysaccharide (LPS) were used to create a mouse model.
- Immunohistochemistry and morphometric analysis quantified renal damage.
- The effects of ROS, cPLA2, and COX-2 inhibitors were evaluated.
Main Results:
- The combined high-fat diet and LPS model showed significant kidney fibrosis, lipid vacuoles, and inflammation.
- Inhibitors of ROS, cPLA2, and COX-2 reduced these renal damages.
- ROS inhibition also decreased cPLA2 and COX-2 expression, suggesting ROS as an upstream mediator.
Conclusions:
- ROS act as a key signaling molecule in obese kidney fibrosis, activating downstream cPLA2 and COX-2.
- Antioxidant treatment targeting ROS can ameliorate kidney fibrosis associated with diet-induced obesity and metabolic endotoxemia.
- ROS represent a potential therapeutic target for obese kidney fibrosis.
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