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TWEAK and RIPK1 mediate a second wave of cell death during AKI
Diego Martin-Sanchez1, Miguel Fontecha-Barriuso1, Susana Carrasco1
1Red de Investigacion Renal (REDINREN), Research Institute-Fundación Jiménez Díaz, Autonomous University of Madrid (UAM), 28040 Madrid, Spain.
Abstract:
Acute kidney injury (AKI) is characterized by necrotic tubular cell death and inflammation. The TWEAK/Fn14 axis is a mediator of renal injury. Diverse pathways of regulated necrosis have recently been reported to contribute to AKI, but there are ongoing discussions on the timing or molecular regulators involved. We have now explored the cell death pathways induced by TWEAK/Fn14 activation and their relevance during AKI. In cultured tubular cells, the inflammatory cytokine TWEAK induces apoptosis in a proinflammatory environment. The default inhibitor of necroptosis [necrostatin-1 (Nec-1)] was protective, while caspase inhibition switched cell death to necroptosis. Additionally, folic acid-induced AKI in mice resulted in increased expression of Fn14 and necroptosis mediators, such as receptor-interacting protein kinase 1 (RIPK1), RIPK3, and mixed lineage domain-like protein (MLKL). Targeting necroptosis with Nec-1 or by genetic RIPK3 deficiency and genetic Fn14 ablation failed to be protective at early time points (48 h). However, a persistently high cell death rate and kidney dysfunction (72-96 h) were dependent on an intact TWEAK/Fn14 axis driving necroptosis. This was prevented by Nec-1, or MLKL, or RIPK3 deficiency and by Nec-1 stable (Nec-1s) administered before or after induction of AKI. These data suggest that initial kidney damage and cell death are amplified through recruitment of inflammation-dependent necroptosis, opening a therapeutic window to treat AKI once it is established. This may be relevant for clinical AKI, since using current diagnostic criteria, severe injury had already led to loss of renal function at diagnosis.
Insights
Acute kidney injury involves inflammation and cell death. The TWEAK/Fn14 pathway drives necroptosis, a form of regulated necrosis, offering a therapeutic window for established kidney injury.
Area of Science:
- Nephrology
- Molecular Biology
- Immunology
Background:
- Acute kidney injury (AKI) is a clinical syndrome characterized by rapid loss of kidney function.
- The TWEAK/Fn14 signaling axis is implicated in mediating renal injury.
- Regulated necrosis pathways, including necroptosis, are increasingly recognized in AKI pathogenesis.
Purpose of the Study:
- To investigate the specific cell death pathways activated by TWEAK/Fn14 signaling during AKI.
- To determine the role and timing of necroptosis in the progression of kidney injury.
- To evaluate the therapeutic potential of targeting necroptosis in AKI.
Main Methods:
- In vitro studies using cultured tubular cells exposed to TWEAK.
- In vivo mouse model of folic acid-induced AKI.
- Assessment of apoptosis and necroptosis markers (RIPK1, RIPK3, MLKL).
- Pharmacological inhibition (Necrostatin-1) and genetic ablation (RIPK3, MLKL, Fn14 deficiency) of necroptosis and TWEAK/Fn14 axis.
Main Results:
- TWEAK induced apoptosis in inflammatory conditions, switching to necroptosis upon caspase inhibition.
- Folic acid-induced AKI showed increased Fn14 expression and necroptosis mediators.
- Early inhibition of necroptosis or Fn14 did not prevent initial kidney damage.
- Delayed targeting of necroptosis or Fn14 significantly reduced kidney dysfunction and cell death at later time points (72-96 h).
Conclusions:
- Initial kidney injury is amplified by inflammation-dependent necroptosis mediated by the TWEAK/Fn14 axis.
- Targeting necroptosis offers a therapeutic window for established AKI, even after initial damage.
- These findings highlight the clinical relevance of necroptosis in severe AKI at diagnosis.
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