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Elafibranor Inhibits Chronic Kidney Disease Progression in NASH Mice
Hung-Cheng Tsai1,2, Fu-Pang Chang2,3, Tzu-Hao Li2,4,5,6
1Department of Medicine, Taipei Veterans General Hospital, Taipei, Taiwan.
Abstract:
Identification of new pharmacological approaches to inhibit the excessive fat intake-induced steatohepatitis and chronic kidney disease (CKD) is important. High-fat diet (HFD)-induced steatohepatitis and CKD share common pathogenesis involving peroxisome proliferator-activated receptor (PPAR)-α and -δ. Elafibranor, a dual PPARα/δ agonist, can ameliorate the HFD-induced steatohepatitis. Nonetheless, the effects of HFD-induced CKD had not yet explored. This study investigated the effects of elafibranor (elaf) on the progression of HFD-induced CKD in mice. In vivo and in vitro renal effects were evaluated in HFD-elaf mice receiving 12 weeks of elafibranor (from 13th to 24th week of HFD feeding) treatment. In elafibranor-treated HFD mice, increased insulin sensitivity, reduced obesity and body fat mass, decreased severity of steatohepatitis, increased renal expression of PPARα, PPARδ, SIRT1, and autophagy (Beclin-1 and LC3-II) as well as glomerular/renal tubular barrier markers [synaptopodin (podocyte marker), zona occludin-1, and cubulin], reduced renal oxidative stress and caspase-3, and less urinary 8-isoprostanes excretion were observed. Aforementioned benefits of elafibranor were associated with low renal tubular injury and tubulointerstitial fibrosis scores, less albuminuria, low urinary albumin-to-creatinine ratio, and preserved glomerular filtration rate. Acute incubation of podocytes and HK-2 cells with elafibranor or recombinant SIRT1 reversed the HFD-sera-induced oxidative stress, autophagy dysfunction, cell apoptosis, barrier marker loss, albumin endocytosis, and reuptake reduction. Besides hepatoprotective and metabolic beneficial effects, current study showed that elafibranor inhibited the progression of HFD-induced CKD through activation of renal PPARα, PPARδ, SIRT1, autophagy, reduction of oxidative stress, and apoptosis in mice with steatohepatitis.
Insights
Elafibranor, a dual peroxisome proliferator-activated receptor (PPAR) agonist, shows promise in treating high-fat diet-induced chronic kidney disease (CKD) by improving renal function and reducing injury. This study highlights elafibranor
Area of Science:
- Nephrology
- Metabolic Diseases
- Pharmacology
Background:
- High-fat diet (HFD)-induced steatohepatitis and chronic kidney disease (CKD) share common pathogenic pathways involving peroxisome proliferator-activated receptor (PPAR) alpha and delta.
- Elafibranor, a dual PPARα/δ agonist, is known to ameliorate HFD-induced steatohepatitis, but its effects on HFD-induced CKD remain unexplored.
Purpose of the Study:
- To investigate the effects of elafibranor on the progression of high-fat diet-induced chronic kidney disease in mice.
- To evaluate the in vivo and in vitro renal effects of elafibranor treatment in a mouse model of HFD-induced CKD.
Main Methods:
- Mice were fed a high-fat diet (HFD) and treated with elafibranor for 12 weeks.
- Renal effects were assessed through biochemical analyses, histological examination, and evaluation of key molecular markers.
- In vitro studies involved acute incubation of podocytes and HK-2 cells with elafibranor or recombinant SIRT1.
Main Results:
- Elafibranor treatment improved insulin sensitivity, reduced obesity, and decreased steatohepatitis severity.
- Renal benefits included increased expression of PPARα, PPARδ, SIRT1, and autophagy markers, alongside reduced oxidative stress, apoptosis, and albuminuria.
- Elafibranor preserved glomerular filtration rate and reduced renal tubular injury and fibrosis.
Conclusions:
- Elafibranor inhibits the progression of HFD-induced CKD in mice with steatohepatitis.
- The protective effects are mediated through the activation of renal PPARα, PPARδ, SIRT1, and autophagy, with a concurrent reduction in oxidative stress and apoptosis.
- Elafibranor demonstrates potential as a therapeutic agent for metabolic-related kidney disease.
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