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Chronic Kidney Disease Predisposes to Acute Congestive Heart Failure, Cardiogenic Shock, and Mortality in Patients
Meghana Iyer1, Khaled Ziada2, Leslie Cho2
1Cleveland Clinic Lerner College of Medicine, Cleveland Clinic, Cleveland, Ohio.
Insights
Chronic kidney disease (CKD) stages 3a and worse significantly increase congestive heart failure (CHF) events and mortality after percutaneous coronary intervention (PCI). Early identification and intervention for CKD patients undergoing PCI are crucial to prevent adverse outcomes.
Area of Science:
- Cardiology
- Nephrology
- Clinical Research
Background:
- The relationship between chronic kidney disease (CKD) severity and congestive heart failure (CHF) events post-percutaneous coronary intervention (PCI) requires further clarification.
- Understanding these associations is vital for managing cardiovascular risk in CKD patients.
Purpose of the Study:
- To investigate the association between different stages of CKD and acute CHF events (heart failure [HF], cardiogenic shock [CS]) after PCI.
- To evaluate the impact of CKD stages on all-cause mortality following PCI.
Main Methods:
- Retrospective analysis of patients undergoing PCI between 2009-2017 from the CathPCI Database.
- Patients stratified by CKD stage based on estimated glomerular filtration rate (eGFR).
- Primary endpoint: composite HF events (acute HF or CS within 30 days post-PCI) or in-hospital mortality, analyzed using multivariable regression.
Main Results:
- Patients with CKD stage 3a or worse experienced significantly more composite HF events compared to those with CKD stages 1-2.
- CKD stages 3a-5 were identified as independent predictors of composite HF events and in-hospital mortality after multivariable adjustment.
- Baseline eGFR demonstrated strong predictive capability for acute HF events, with a comprehensive model achieving an AUC of 0.92.
Conclusions:
- Baseline estimated glomerular filtration rate (eGFR) is a robust, independent predictor of acute heart failure (HF) events post-PCI.
- Advanced CKD stages (3a-5) independently predict HF events, including decompensation and cardiogenic shock, and in-hospital mortality.
- Patients with pre-existing CKD may benefit from targeted interventions to mitigate acute HF risks following PCI.
Abstract:
The relations between degrees of chronic kidney disease (CKD) and congestive heart failure (CHF) events after percutaneous coronary intervention (PCI) are not well characterized. We sought to determine the relation between different stages of CKD and acute CHF events, including HF and cardiogenic shock (CS), and the impact of CKD stages on all-cause mortality after PCI. Patients who underwent PCI from 2009 to 2017 were identified from our institution's National Cardiovascular Disease Registry CathPCI Database. Patients were stratified by CKD stage 1 (estimated glomerular filtration rate [eGFR] ≥90 ml/min/1.73 m2), 2 (60 to 89), 3a (45 to 59), 3b (30 to 44), 4 (16 to 29), 5 (≤15), and current dialysis. The primary end point was composite HF events defined as acute HF or CS within 30 days after PCI, or in-hospital mortality, stratified by CKD and analyzed by multivariable regression after screening with univariate analysis (p <0.05 entry criteria). Patients with CKD stage 3a or worse had more composite HF events, with an increase in all components, compared with patients with CKD stages 1 to 2 (p <0.0001 for all comparisons). After multivariable adjustment, CKD stages 3a to 5 remained independent predictors of composite HF or in-hospital mortality events. eGFR remained a strong predictor of acute HF events after multivariable adjustment, with a model including eGFR and baseline and procedural characteristics achieving excellent discriminatory ability with area under the curve 0.92. In conclusion, baseline eGFR is a strong, independent predictor of acute HF events after PCI. CKD stages 3a to 5 independently predict HF events including HF decompensation and CS and are predictors of in-hospital mortality after PCI. Patients with baseline CKD may benefit from targeted interventions to limit acute HF events after PCI.
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