Anti-microRNA-21 oligonucleotides prevent Alport nephropathy progression by stimulating metabolic pathways
Abstract:
MicroRNA-21 (miR-21) contributes to the pathogenesis of fibrogenic diseases in multiple organs, including the kidneys, potentially by silencing metabolic pathways that are critical for cellular ATP generation, ROS production, and inflammatory signaling. Here, we developed highly specific oligonucleotides that distribute to the kidney and inhibit miR-21 function when administered subcutaneously and evaluated the therapeutic potential of these anti-miR-21 oligonucleotides in chronic kidney disease. In a murine model of Alport nephropathy, miR-21 silencing did not produce any adverse effects and resulted in substantially milder kidney disease, with minimal albuminuria and dysfunction, compared with vehicle-treated mice. miR-21 silencing dramatically improved survival of Alport mice and reduced histological end points, including glomerulosclerosis, interstitial fibrosis, tubular injury, and inflammation. Anti-miR-21 enhanced PPARα/retinoid X receptor (PPARα/RXR) activity and downstream signaling pathways in glomerular, tubular, and interstitial cells. Moreover, miR-21 silencing enhanced mitochondrial function, which reduced mitochondrial ROS production and thus preserved tubular functions. Inhibition of miR-21 was protective against TGF-β-induced fibrogenesis and inflammation in glomerular and interstitial cells, likely as the result of enhanced PPARα/RXR activity and improved mitochondrial function. Together, these results demonstrate that inhibition of miR-21 represents a potential therapeutic strategy for chronic kidney diseases including Alport nephropathy.
Insights
MicroRNA-21 (miR-21) inhibition shows promise for treating chronic kidney disease. Silencing miR-21 in a mouse model reduced disease severity and improved survival without adverse effects.
Area of Science:
- Nephrology
- Molecular Biology
- Biochemistry
Background:
- MicroRNA-21 (miR-21) is implicated in kidney fibrotic disease pathogenesis.
- miR-21 may silence critical metabolic pathways affecting ATP generation, ROS production, and inflammation.
Purpose of the Study:
- To develop and evaluate the therapeutic potential of anti-miR-21 oligonucleotides for chronic kidney disease.
- To investigate the effects of miR-21 inhibition on kidney function and pathology in a murine model.
Main Methods:
- Developed specific oligonucleotides to inhibit miR-21 function.
- Administered anti-miR-21 oligonucleotides subcutaneously in a murine model of Alport nephropathy.
- Assessed kidney disease markers, histology, survival, cellular signaling, and mitochondrial function.
Main Results:
- miR-21 silencing in Alport mice showed no adverse effects and significantly reduced kidney disease.
- Improved survival, reduced albuminuria, and attenuated histological damage including glomerulosclerosis and fibrosis.
- Enhanced PPARα/RXR activity, improved mitochondrial function, and reduced mitochondrial ROS production.
Conclusions:
- Inhibition of miR-21 is a potential therapeutic strategy for chronic kidney diseases, including Alport nephropathy.
- miR-21 silencing offers protection against fibrogenesis and inflammation via enhanced PPARα/RXR activity and mitochondrial function.
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