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Updated: May 16, 2026

Use of Ultra-high Field MRI in Small Rodent Models of Polycystic Kidney Disease for In Vivo Phenotyping and Drug Monitoring
Published on: June 23, 2015
Looking at the (w)hole: magnet resonance imaging in polycystic kidney disease
Max Christoph Liebau1, Andreas Lucas Serra
1Department of Pediatrics, University Hospital of Cologne, Cologne, Germany. max.liebau@uk-koeln.de
Insights
Autosomal dominant polycystic kidney disease (ADPKD) lacks disease-modifying treatments. Total kidney volume (TKV) measured by MRI shows promise as a surrogate marker for monitoring ADPKD progression and evaluating new therapies.
Area of Science:
- Nephrology
- Medical Imaging
- Genetics
Background:
- Inherited cystic kidney diseases like ADPKD and ARPKD are leading causes of ESRD.
- ADPKD is common, progressive, and currently lacks disease-modifying treatments.
- Effective surrogate markers are needed to assess therapeutic efficacy in ADPKD.
Purpose of the Study:
- To review novel insights into polycystic kidney disease (PKD).
- To discuss the utility of MRI and TKV measurement in PKD diagnosis and follow-up.
- To explore emerging therapeutic strategies for ADPKD.
Main Methods:
- Review of current literature on PKD, MRI, and TKV.
- Analysis of TKV as a surrogate marker for ADPKD severity and progression.
- Discussion of ongoing therapeutic investigations for ADPKD.
Main Results:
- Total kidney volume (TKV) is a validated surrogate marker for ADPKD severity.
- MRI is a key tool for measuring TKV and monitoring disease progression.
- Several therapeutic approaches, including V2 receptor antagonists, are under investigation.
Conclusions:
- TKV measured by MRI is crucial for assessing ADPKD progression and therapeutic response.
- Novel treatments are emerging for ADPKD, offering hope for improved patient outcomes.
- Continued research into PKD pathogenesis and treatment is essential.
Abstract:
Inherited cystic kidney diseases, including autosomal dominant polycystic kidney disease (ADPKD) and autosomal recessive polycystic kidney disease (ARPKD), are the most common monogenetic causes of end-stage renal disease (ESRD) in children and adults. While ARPKD is a rare and usually severe pediatric disease, the more common ADPKD typically shows a slowly progressive course leading to ESRD in adulthood. At the present time there is no established disease-modifying treatment for either ARPKD or ADPKD. Various therapeutic approaches are currently under investigation, such as V2 receptor antagonists, somatostatins, and mTOR inhibitors. Renal function remains stable for decades in ADPKD, and thus clinically meaningful surrogate markers to assess therapeutic efficacy are needed. Various studies have pointed out that total kidney volume (TKV) is a potential surrogate parameter for disease severity in ADPKD. Recent trials have therefore measured TKV by magnet resonance imaging (MRI) to monitor and to predict disease progression. Here, we discuss novel insights on polycystic kidney disease (PKD), the value of MRI, and the measurement of TKV in the diagnosis and follow-up of PKD, as well as novel emerging therapeutic strategies for ADPKD.
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