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Dickkopf 3-a novel biomarker of the 'kidney injury continuum'
Stefan J Schunk1, Thimoteus Speer1, Ioannis Petrakis1
1Department of Internal Medicine IV - Nephrology and Hypertension, Saarland University Medical Center, Homburg/Saar, Germany.
Insights
Identifying chronic kidney disease (CKD) progression is challenging. Urinary Dickkopf-3 (DKK3) levels effectively identify patients at high risk for CKD progression and acute kidney injury, regardless of albuminuria.
Area of Science:
- Nephrology
- Biochemistry
- Molecular Biology
Background:
- Chronic kidney disease (CKD) presents a global health challenge with significant comorbidities and reduced life expectancy.
- Predicting individual CKD progression is difficult, as kidney function trajectories vary, and albuminuria is not always a reliable indicator, especially in non-proteinuric CKD.
- Dickkopf-3 (DKK3), a glycoprotein derived from renal tubular epithelial cells, has emerged as a stress-induced, pro-fibrotic molecule.
Purpose of the Study:
- To review the role of Dickkopf-3 (DKK3) in kidney disease progression.
- To evaluate DKK3 as a potential biomarker for identifying patients at risk of CKD progression and acute kidney injury.
Main Methods:
- Review of experimental CKD models investigating DKK3's role in renal fibrosis via Wnt/β-catenin signaling.
- Analysis of clinical studies correlating urinary DKK3 levels with CKD progression, acute kidney injury risk, and post-cardiac surgery kidney function loss.
Main Results:
- In experimental models, DKK3 promotes renal tubulointerstitial fibrosis by modulating the Wnt/β-catenin pathway.
- Elevated urinary DKK3 levels in patients predict short-term CKD progression irrespective of disease cause, baseline function, or albuminuria.
- Increased urinary DKK3 is linked to a higher risk of acute kidney injury and subsequent kidney function decline after cardiac surgery.
Conclusions:
- DKK3 acts as a mediator of renal tubular cell damage in kidney injury.
- Urinary DKK3 is a promising biomarker for predicting short-term kidney disease progression and acute kidney injury.
- DKK3 holds potential as a therapeutic target for mitigating kidney disease progression.
Abstract:
Chronic kidney disease (CKD) is a global public health problem accompanied by substantial comorbidities and reduced life expectancy. In this respect, progressive CKD leading to uraemia can be seen as a systemic disease with a critical impact on virtually all organ systems. Therefore, it is of particular importance to identify patients with ongoing CKD progression, which is challenging, because the individual course of CKD is difficult to predict. Patterns of progression in CKD patients include linear and non-linear trajectories of GFR loss, but kidney function can also remain stable for years. Moreover, a substantial GFR decline may occur in the absence of higher-grade albuminuria (non-proteinuric CKD), rendering the measurement of albuminuria less reliable for progression prediction in such individuals. In the present review, we focus on the recently identified glycoprotein Dickkopf-3 (DKK3) as a stress-induced, renal tubular epithelial cell-derived, pro-fibrotic molecule. In experimental CKD models, DKK3 promoted renal tubulointerstitial fibrosis through modulation of the canonical Wnt/β-catenin signalling pathway. In clinical studies, increased urinary DKK3 levels identified patients at high risk for short-term CKD progression, regardless of the cause of kidney disease, baseline kidney function and albuminuria. Moreover, increased urinary DKK3 levels are associated with a high risk for acute kidney injury and the subsequent loss of kidney function after cardiac surgery. These findings highlight DKK3 as a mediator of renal tubular cell damage in kidney injury and short-term progression of kidney disease, with potential therapeutic implications.
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