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Updated: Feb 16, 2026

A Zebrafish Model of Diabetes Mellitus and Metabolic Memory
Published on: February 28, 2013
Complement C5a inhibition moderates lipid metabolism and reduces tubulointerstitial fibrosis in diabetic nephropathy
Wai Han Yiu1, Rui Xi Li1, Dickson W L Wong1
1Division of Nephrology, Department of Medicine, Queen Mary Hospital, University of Hong Kong, Pokfulam, Hong Kong.
Background:
Complement C5 mediates pro-inflammatory responses in many immune-related renal diseases. Given that the C5a level is elevated in diabetes, we investigated whether activation of C5a/C5aR signalling plays a pathogenic role in diabetic nephropathy (DN) and the therapeutic potential of C5a inhibition for renal fibrosis.
Methods:
Human renal biopsies from patients with DN and control subjects were used for immunohistochemical staining of complement C5 components. Renal function and tubulointerstitial injury were compared between db/m mice, vehicle-treated mice and C5a inhibitor-treated db/db mice. A cell culture model of tubule epithelial cells (HK-2) was used to demonstrate the effect of C5a on the renal fibrotic pathway.
Results:
Increased levels of C5a, but not of its receptor C5aR, were detected in renal tubules from patients with DN. The intensity of C5a staining was positively correlated with the progression of the disease. In db/db mice, administration of a novel C5a inhibitor, NOX-D21, reduced the serum triglyceride level and attenuated the upregulation of diacylglycerolacyltransferase-1 and sterol-regulatory element binding protein-1 expression and lipid accumulation in diabetic kidney. NOX-D21-treated diabetic mice also had reduced serum blood urea nitrogen and creatinine levels with less glomerular and tubulointerstitial damage. Renal transforming growth factor beta 1 (TGF-β1), fibronectin and collagen type I expressions were reduced by NOX-D21. In HK-2 cells, C5a stimulated TGF-β production through the activation of the PI3K/Akt signalling pathway.
Conclusions:
Blockade of C5a signalling by NOX-D21 moderates altered lipid metabolism in diabetes and improved tubulointerstitial fibrosis by reduction of lipid accumulation and TGF-β-driven fibrosis in diabetic kidney.
Insights
Blocking C5a signaling with NOX-D21 improves kidney function and reduces fibrosis in diabetic nephropathy by controlling lipid accumulation and TGF-β pathways.
Area of Science:
- Nephrology
- Immunology
- Metabolic Diseases
Background:
- Complement C5a (C5a) drives inflammation in kidney diseases.
- Elevated C5a levels in diabetes suggest a role in diabetic nephropathy (DN).
- Investigating C5a/C5aR signaling in DN pathogenesis and C5a inhibition for renal fibrosis is crucial.
Purpose of the Study:
- To determine if C5a/C5aR signaling contributes to DN.
- To evaluate C5a inhibition as a therapeutic strategy for DN-related renal fibrosis.
Main Methods:
- Immunohistochemistry on human DN renal biopsies to detect C5a and C5aR.
- Comparing renal function and injury in db/m, vehicle-treated db/db, and NOX-D21-treated db/db mice.
- Using HK-2 cells to model C5a's effect on renal fibrotic pathways.
Main Results:
- Increased C5a, not C5aR, in DN tubules correlated with disease severity.
- NOX-D21 treatment in diabetic mice reduced lipid accumulation, improved renal function, and decreased tubulointerstitial damage.
- NOX-D21 inhibited renal TGF-β1, fibronectin, and collagen type I expression.
- C5a stimulated TGF-β production via PI3K/Akt signaling in HK-2 cells.
Conclusions:
- C5a inhibition with NOX-D21 ameliorates DN.
- NOX-D21 moderates diabetic lipid metabolism and reduces tubulointerstitial fibrosis.
- The therapeutic effect involves reducing lipid accumulation and TGF-β-driven fibrosis.
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