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Updated: Mar 23, 2026

Unilateral Ureteral Obstruction Model for Investigating Kidney Interstitial Fibrosis
Published on: April 25, 2025
TWEAK-Fn14 Signaling Activates Myofibroblasts to Drive Progression of Fibrotic Kidney Disease
Ivan G Gomez1,2, Allie M Roach1,2, Naoki Nakagawa2
1Research & Development, Biogen, Cambridge, Massachusetts.
Abstract:
The identification of the cellular origins of myofibroblasts has led to the discovery of novel pathways that potentially drive myofibroblast perpetuation in disease. Here, we further investigated the role of innate immune signaling pathways in this process. In mice, renal injury-induced activation of pericytes, which are myofibroblast precursors attached to endothelial cells, led to upregulated expression of TNF receptor superfamily member 12a, also known as fibroblast growth factor-inducible 14 (Fn14), by these cells. In live rat kidney slices, administration of the Fn14 ligand, TNF-related weak inducer of apoptosis (TWEAK), promoted pericyte-dependent vasoconstriction followed by pericyte detachment from capillaries. In vitro, administration of TWEAK activated and differentiated pericytes into cytokine-producing myofibroblasts, and further activated established myofibroblasts in a manner requiring canonical and noncanonical NF-κB signaling pathways. Deficiency of Fn14 protected mouse kidneys from fibrogenesis, inflammation, and associated vascular instability after in vivo injury, and was associated with loss of NF-κB signaling. In a genetic model of spontaneous CKD, therapeutic delivery of anti-TWEAK blocking antibodies attenuated disease progression, preserved organ function, and increased survival. These results identify the TWEAK-Fn14 signaling pathway as an important factor in myofibroblast perpetuation, fibrogenesis, and chronic disease progression.
Insights
The TWEAK-Fn14 pathway drives myofibroblast activation and kidney fibrosis. Blocking this pathway protects against chronic kidney disease progression and improves survival.
Area of Science:
- Nephrology
- Immunology
- Cell Biology
Background:
- Myofibroblast activation is central to fibrotic diseases.
- Innate immune signaling pathways are implicated in myofibroblast perpetuation.
Purpose of the Study:
- Investigate the role of the TWEAK-Fn14 signaling pathway in myofibroblast activation and kidney disease.
- Determine the therapeutic potential of targeting this pathway.
Main Methods:
- Studies in mouse models of renal injury and chronic kidney disease (CKD).
- Experiments using live rat kidney slices and in vitro cell cultures.
- Analysis of pericyte and myofibroblast activation, NF-κB signaling, and fibrogenesis.
Main Results:
- Renal injury upregulated Fn14 on pericytes, which are myofibroblast precursors.
- TWEAK activated pericytes, promoting vasoconstriction, detachment, and differentiation into myofibroblasts via NF-κB signaling.
- Fn14 deficiency protected kidneys from injury-induced fibrogenesis and inflammation.
- Anti-TWEAK antibody therapy attenuated CKD progression, improved organ function, and increased survival in a genetic CKD model.
Conclusions:
- The TWEAK-Fn14 pathway is a key driver of myofibroblast perpetuation and kidney fibrogenesis.
- Targeting the TWEAK-Fn14 pathway represents a promising therapeutic strategy for chronic kidney disease.
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