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Deficiency of growth factor midkine exacerbates necrotizing glomerular injuries in progressive glomerulonephritis
Hiroshi Kojima1, Tomoki Kosugi, Waichi Sato
1Department of Biochemistry, Nagoya University Graduate School of Medicine, Nagoya 466-8550, Japan.
Insights
Midkine (MK) is a novel factor in crescentic glomerulonephritis (GN). MK deficiency worsens kidney injury by increasing plasminogen activator inhibitor-1 (PAI-1), suggesting MK suppresses GN progression.
Area of Science:
- Nephrology
- Immunology
- Molecular Biology
Background:
- Crescentic glomerulonephritis (GN) involves inflammatory cells and fibrin deposition.
- Coagulation activation is critical for crescent formation, but mechanisms remain unclear.
Purpose of the Study:
- To identify novel molecular mechanisms in crescentic GN pathogenesis.
- To investigate the role of midkine (MK) in anti-glomerular basement membrane antibody-induced GN.
Main Methods:
- Utilized MK-deficient (Mdk(-/-)) and wild-type (Mdk(+/+)) mice in an anti-GBM antibody-induced GN model.
- Assessed glomerular and tubulointerstitial injury, inflammatory cell infiltration, and fibrin deposition.
- Analyzed plasminogen activator inhibitor-1 (PAI-1) expression and fibrinolysis in vivo and in vitro.
Main Results:
- MK-deficient mice exhibited more severe necrotizing glomerular and tubulointerstitial injuries.
- PAI-1 was significantly induced in injured glomeruli and crescents of Mdk(-/-) mice.
- Mdk(-/-) endothelial cells showed increased PAI-1 expression and reduced fibrinolysis upon fibrin challenge.
Conclusions:
- Midkine (MK) plays a protective role in crescentic GN.
- MK deficiency enhances GN by upregulating PAI-1, leading to impaired fibrinolysis and increased inflammation.
- MK blockade is associated with the suppression of crescentic GN progression.
Abstract:
Inflammatory cell infiltration and fibrin deposition play important roles in the development of crescentic glomerulonephritis (GN). In particular, activation of coagulation is an indispensable factor in crescent formation. However, the mechanisms underlying the pathogenesis of crescent formation have not been completely elucidated. We identified the growth factor midkine (MK) as a novel key molecule in the progression of crescentic GN induced by anti-glomerular basement membrane antibody. Despite the lack of significant differences in autologous and heterologous reactions, MK-deficient (Mdk(-/-)) mice unexpectedly showed a greater number of necrotizing glomerular injuries than wild-type (Mdk(+/+)) mice. Likewise, more tubulointerstitial damage was observed in Mdk(-/-) mice, and this damage positively correlated with glomerular injury. Plasminogen activator inhibitor (PAI)-1 was strongly induced in the injured glomerulus of Mdk(-/-) mice, particularly in crescents and endothelial cells. This enhanced PAI-1 production was associated with an increase in inflammatory cell infiltration and matrix deposition in the glomerulus and the interstitium of Mdk(-/-) mice. In line with these in vivo data, primary cultured endothelial cells derived from Mdk(-/-) mice exhibited higher PAI-1 mRNA expression on fibrin challenge and less fibrinolysis than Mdk(+/+) mice. In contrast, the expression of plasminogen activators was not affected. Our combined data suggest that MK leads to a blockade of PAI-1, which is closely associated with the suppression of crescentic GN.
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