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Updated: May 5, 2026

A Large Animal Model for Acute Kidney Injury by Temporary Bilateral Renal Artery Occlusion
Published on: February 2, 2021
Postprocedural Contrast-Associated Acute Kidney Injury and Prognosis of Patients Undergoing Recanalization of Chronic
Kevin Hamzaraj1, Caglayan Demirel1, Mariann Gyöngyösi1
1Department of Internal Medicine II, Division of Cardiology, Medical University of Vienna, 1090 Vienna, Austria.
Insights
Contrast-associated acute kidney injury (CA-AKI) after chronic total occlusion (CTO) percutaneous coronary intervention (PCI) predicts one-year mortality. Procedural complexity, indicated by radiation dose, is linked to CA-AKI risk, not just contrast volume.
Area of Science:
- Cardiology
- Nephrology
- Interventional Cardiology
Background:
- Percutaneous coronary intervention (PCI) for chronic total occlusions (CTOs) is complex and uses high contrast volumes, potentially increasing contrast-associated acute kidney injury (CA-AKI) risk.
- Factors beyond contrast exposure may contribute to CA-AKI, but specific data for CTO PCI are limited.
Purpose of the Study:
- To investigate the incidence and predictors of CA-AKI after CTO PCI.
- To evaluate the association between CA-AKI and long-term mortality following CTO PCI.
Main Methods:
- A retrospective analysis of 145 patients undergoing CTO PCI.
- CA-AKI defined by KDIGO criteria; patients stratified by CA-AKI status.
- Comparison of baseline characteristics, procedural factors (contrast volume, radiation dose), and outcomes (1- and 3-year all-cause mortality).
Main Results:
- CA-AKI patients had numerically higher contrast volume and procedural duration.
- Patients who developed CA-AKI received significantly higher radiation doses (22.1 vs. 13.2 Gy·cm², p=0.041).
- CA-AKI was an independent predictor of one-year all-cause mortality (aHR 5.3, p=0.009) but not three-year mortality.
Conclusions:
- CA-AKI is an independent predictor of one-year mortality after CTO PCI.
- Procedural complexity, indicated by higher radiation exposure, is associated with increased CA-AKI risk.
- Baseline renal function and contrast volume alone did not predict CA-AKI in this cohort.
Abstract:
Introduction: Percutaneous coronary intervention (PCI) for chronic total occlusions (CTOs) requires advanced techniques and prolonged procedural efforts, often necessitating high contrast volumes, which may increase the risk of contrast-associated acute kidney injury (CA-AKI). However, evidence suggests that factors beyond contrast exposure contribute to CA-AKI, though data specific to CTO PCI remain limited. Methods: Patients undergoing contemporary CTO PCI at our university-affiliated tertiary care center were enrolled. CA-AKI was defined according to KDIGO criteria, and patients were stratified based on the presence of postprocedural CA-AKI. Baseline and procedural characteristics, including osmotic factors, were compared between the groups. The primary outcome was all-cause mortality at one year, and the secondary outcome was all-cause mortality at three years. Results: A total of 145 patients were enrolled, with a mean age of 67 years, and 75% were male. Baseline creatinine levels, electrolytes, and osmotic factors did not differ significantly between groups. Lesion parameters and J-CTO scores were also comparable. The contrast volume and procedural duration were numerically higher in patients who developed CA-AKI. Patients with CA-AKI received a higher radiation dose (22.1 vs. 13.2 Gy·cm2, p = 0.041). CA-AKI emerged as an independent predictor of all-cause mortality at one year (adjusted HR 5.3, CI [1.52-18.51], p = 0.009) but not at three years. Conclusions: In this retrospective analysis, CA-AKI was an independent predictor of all-cause mortality at one year following CTO PCI but lost predictive value at three years. Baseline renal function and contrast volume alone did not predict CA-AKI. Instead, procedural complexity, reflected by higher radiation exposure, was associated with an elevated risk of CA-AKI.
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