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CCN2 Activates RIPK3, NLRP3 Inflammasome, and NRF2/Oxidative Pathways Linked to Kidney Inflammation
Sandra Rayego-Mateos1,2, Laura Marquez-Exposito1,2, Pamela Basantes1,2
1Cellular Biology in Renal Diseases Laboratory, IIS-Fundación Jiménez Díaz, Universidad Autónoma Madrid, 28040 Madrid, Spain.
Abstract:
Inflammation is a key characteristic of both acute and chronic kidney diseases. Preclinical data suggest the involvement of the NLRP3/Inflammasome, receptor-interacting protein kinase-3 (RIPK3), and NRF2/oxidative pathways in the regulation of kidney inflammation. Cellular communication network factor 2 (CCN2, also called CTGF in the past) is an established fibrotic biomarker and a well-known mediator of kidney damage. CCN2 was shown to be involved in kidney damage through the regulation of proinflammatory and profibrotic responses. However, to date, the potential role of the NLRP3/RIPK3/NRF2 pathways in CCN2 actions has not been evaluated. In experimental acute kidney injury induced with folic acid in mice, CCN2 deficiency diminished renal inflammatory cell infiltration (monocytes/macrophages and T lymphocytes) as well as the upregulation of proinflammatory genes and the activation of NLRP3/Inflammasome-related components and specific cytokine products, such as IL-1β. Moreover, the NRF2/oxidative pathway was deregulated. Systemic administration of CCN2 to C57BL/6 mice induced kidney immune cell infiltration and activated the NLRP3 pathway. RIPK3 deficiency diminished the CCN2-induced renal upregulation of proinflammatory mediators and prevented NLRP3 modulation. These data suggest that CCN2 plays a fundamental role in sterile inflammation and acute kidney injury by modulating the RIKP3/NLRP3/NRF2 inflammatory pathways.
Insights
Cellular communication network factor 2 (CCN2) drives kidney inflammation by activating NLRP3 inflammasome and NRF2 pathways. Targeting CCN2 may offer new treatments for acute kidney injury.
Area of Science:
- Nephrology
- Immunology
- Molecular Biology
Background:
- Inflammation is central to acute and chronic kidney diseases.
- Cellular communication network factor 2 (CCN2) is a mediator of kidney damage.
- The roles of NLRP3/Inflammasome, RIPK3, and NRF2 pathways in CCN2-mediated kidney injury are unclear.
Purpose of the Study:
- To investigate the role of CCN2 in regulating kidney inflammation.
- To determine if CCN2 modulates the NLRP3/RIPK3/NRF2 inflammatory pathways in acute kidney injury.
Main Methods:
- Experimental acute kidney injury model induced by folic acid in mice.
- Assessment of renal inflammatory cell infiltration, gene expression, and inflammasome activation.
- Evaluation of CCN2 and RIPK3 deficiency effects on kidney injury and inflammation.
Main Results:
- CCN2 deficiency reduced inflammatory cell infiltration and proinflammatory gene upregulation in acute kidney injury.
- CCN2 administration activated the NLRP3 inflammasome pathway and induced immune cell infiltration.
- RIPK3 deficiency attenuated CCN2-induced inflammation and NLRP3 pathway modulation.
Conclusions:
- CCN2 plays a critical role in sterile inflammation and acute kidney injury.
- CCN2 modulates kidney inflammation by interacting with the RIPK3/NLRP3/NRF2 pathways.
- Targeting CCN2 may represent a therapeutic strategy for acute kidney injury.
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