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Contrast-Induced Nephropathy in STEMI Patients With and Without Chronic Kidney Disease
Insights
Contrast-induced nephropathy (CIN) is more common in ST-elevation myocardial infarction (STEMI) patients with chronic kidney disease (CKD). CIN leads to worse short-term and long-term outcomes, regardless of baseline kidney function.
Area of Science:
- Cardiology
- Nephrology
- Interventional Cardiology
Background:
- Contrast-induced nephropathy (CIN) is a significant complication following percutaneous coronary intervention (PCI).
- Limited data exist on CIN outcomes in ST-elevation myocardial infarction (STEMI) patients, particularly comparing those with and without chronic kidney disease (CKD).
Purpose of the Study:
- To assess the incidence, clinical predictors, and outcomes of post-PCI CIN in STEMI patients.
- To compare CIN incidence and outcomes between STEMI patients with and without pre-existing CKD.
Main Methods:
- Retrospective observational cohort study of 554 STEMI patients undergoing PCI.
- CKD defined as eGFR ≤60 mL/min; CIN defined as creatinine increase ≥25% or ≥0.5 mg/dL within 72 hours post-contrast.
- Analysis of predictors and short-term/long-term clinical outcomes.
Main Results:
- Overall CIN incidence was 16%; higher in CKD patients (19.7%) vs. non-CKD (11.1%).
- Diabetes was a key CIN predictor in CKD patients, while Mehran score predicted CIN in non-CKD patients.
- CIN patients experienced higher inpatient mortality, longer hospitalization, increased need for dialysis, and worse long-term renal function.
Conclusions:
- STEMI patients with CKD have a higher incidence of CIN post-PCI.
- CIN is associated with adverse short-term and long-term clinical outcomes, irrespective of baseline renal function.
Introduction:
Contrast-induced nephropathy (CIN) following percutaneous coronary intervention (PCI) is associated with adverse outcomes; however, there are scarce data comparing clinical outcomes of post-PCI CIN in ST elevation myocardial infarction (STEMI) patients with and without chronic kidney disease (CKD). We sought to assess the incidence, clinical predictors, and short-term and long-term clinical outcomes of post-PCI CIN in STEMI patients with and without CKD.
Methods:
We performed a retrospective observational cohort study involving 554 patients who underwent PCI for STEMI from February 2010 to November 2013. CKD was defined as estimated glomerular filtration rate ≤60 mL/min and CIN as creatinine increase by ≥25% or ≥0.5 mg/dL from baseline within 72 hours after catheterization contrast exposure.
Results:
In the entire population, CIN developed in 89 (16%) patients. The incidence of CIN was 19.7% (27/137) in CKD patients and 11.1% (62/417) in non-CKD patients, P < 0.05. Univariate analysis predictors of CIN were older age (65 vs. 60 years), diabetes (35% vs. 21%), peripheral artery disease (11% vs. 5%), cardiogenic shock (24% vs. 13%), hemodynamic support placement (34% vs. 14%), and Mehran score (9.4 ± 7 vs. 5.4 ± 5.2) with all P < 0.05. The predictors of CIN were the same across the CKD and non-CKD cohort with the exception of diabetes. In multivariate analysis, the strongest predictor of CIN in CKD patients was diabetes (odds ratio, 5.8; CI, 1.8-18.6); however, diabetes was not a predictor in the non-CKD population. In the non-CKD population, each single unit increase in the Mehran score was associated with a 1.1 times greater likelihood of CIN (odds ratio, 1.1; CI, 1.01-1.2). Patients with CIN had higher rates of inpatient mortality (14.6% vs. 2.8%), longer length of hospitalization (8 ± 11 vs. 3.4 ± 4.4 days), need for inpatient dialysis (11.2% vs. 0%), higher 30-day mortality (14.6% vs. 3.0%), and higher incidence of long-term serum creatinine >0.5 mg/dL from baseline (16.9% vs. 2.4%) with all P < 0.05.
Conclusions:
Overall, we found that CKD patients undergoing PCI for STEMI have a higher incidence of CIN than non-CKD patients. CIN confers worse short-term and long-term outcomes irrespective of baseline renal function.
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