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Published on: July 12, 2024
The impact of coronary angiography on renal transplant function
J S Lees1,2, M D Findlay2, P B Mark1,2
1Institute of Cardiovascular and Medical Sciences, University of Glasgow, Glasgow, UK.
Insights
Coronary angiography in kidney transplant patients is safe. Acute kidney injury (AKI) is rare and usually temporary after the procedure, with no long-term impact on kidney transplant function.
Area of Science:
- Nephrology
- Cardiology
- Transplantation Medicine
Background:
- Kidney transplant recipients have a higher risk of cardiovascular disease.
- Contrast-induced nephropathy is a concern for performing coronary angiography in these patients.
- This study addresses the safety of coronary angiography in renal transplant recipients.
Purpose of the Study:
- To evaluate the impact of coronary angiography on renal transplant function.
- To assess the incidence and severity of acute kidney injury (AKI) post-procedure.
- To determine the long-term effects on graft function.
Main Methods:
- Retrospective analysis of 127 coronary angiographies in 90 renal transplant recipients.
- Monitoring of serum creatinine (SCr) levels at 7, 30, and 180 days post-procedure.
- Definition of significant renal decline based on SCr increase (>26 micromol/l).
Main Results:
- Acute kidney injury (AKI) occurred in 18.9% of cases within 7 days.
- In most cases (83.3%), SCr returned to baseline or AKI had alternative causes.
- Progressive renal decline was rare, and no patient required dialysis or extended hospitalization for contrast-associated AKI.
Conclusions:
- Coronary angiography is generally safe in renal transplant recipients.
- AKI is infrequent and typically transient, with minimal long-term impact on graft function.
- Renal transplant status should not be a contraindication for necessary coronary angiography.
Introduction:
There may be reluctance to perform coronary angiography in kidney transplant patients due to perceived risk of iodinated contrast, despite an increased risk of cardiovascular disease compared with the general population.
Aim:
We sought to determine if renal transplant function was adversely affected within 7, 30 and 180 days of coronary angiography.
Design And Methods:
Renal transplant recipients undergoing coronary angiography in a single centre (01/2006-02/2018) were identified retrospectively. Baseline and highest SCr within 7, 30 and 180 days of coronary angiography were extracted from the electronic patient record. Rise in creatinine >26 micromol/l was considered significant [equivalent to Acute Kidney Injury (AKI) Network criteria stage 1 AKI] and case note review performed to determine circumstance of renal decline.
Results:
There were 127 coronary angiographies conducted in 90 patients: 67.7% were male and mean age was 58.0 (±10.1) years. There was AKI within 7 days in 18.9% cases, but SCr returned to baseline within 7 days or there was an alternative explanation for AKI in 83.3% of these. In the remaining four cases, there was progressive decline in renal transplant function. In the absence of critical illness, no patient required dialysis or extended hospital stay for contrast-associated AKI.
Conclusions:
In this cohort of renal transplant recipients undergoing coronary angiography, AKI occurred in a minority of cases, and in more than 95% of such cases this effect was transient, with progressive renal decline a rare and predictable event. Renal transplant should not be regarded as a contraindication to coronary angiography.
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