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Macrophage MST1/2 Disruption Impairs Post-Infarction Cardiac Repair via LTB4 Burden of 30-Day Readmissions After Percutaneous Coronary Intervention in 833,344 Patients in the United States: Predictors, Causes, and Cost Long-Term Effect of Ultrathin-Strut Versus Thin-Strut Drug-Eluting Stents in Patients With Small Vessel Coronary Artery Disease Undergoing Percutaneous Coronary Intervention: A Subgroup Analysis of the BIOSCIENCE Randomized Trial Frequency, Regional Variation, and Predictors of Undetermined Cause of Death in Cardiometabolic Clinical Trials: A Pooled Analysis of 9259 Deaths in 9 Trials Percutaneous coronary intervention using a combination of robotics and telecommunications by an operator in a separate physical location from the patient: an early exploration into the feasibility of telestenting (the REMOTE-PCI study) A Novel Algorithm for Treating Chronic Total Coronary Artery Occlusion Biolimus-A9 polymer-free coated stent in high bleeding risk patients with acute coronary syndrome: a Leaders Free ACS sub-study A Randomized Trial to Assess Regional Left Ventricular Function After Stent Implantation in Chronic Total Occlusion The REVASC Trial Transverse partial stent ablation with rotational atherectomy for suboptimal culotte technique in left main stem bifurcation Percutaneous Support Devices for Percutaneous Coronary Intervention

Original Research2019 Apr 16;73(14):1781-1791.

JOURNAL:J Am Coll Cardiol. Article Link

Acute Noncardiac Organ Failure in Acute Myocardial Infarction With Cardiogenic Shock

Vallabhajosyula S, Dunlay SM, Prasad A et al.

ABSTRACT


BACKGROUND - There are limited data on acute noncardiac multiorgan failure in cardiogenic shock complicating acute myocardial infarction (AMI-CS).


OBJECTIVES - The authors sought to evaluate the 15-year national trends, resource utilization, and outcomes of single and multiple noncardiac organ failures in AMI-CS.


METHODS - This was a retrospective cohort study of AMI-CS using the National Inpatient Sample database from 2000 to 2014. Previously validated codes for respiratory, renal, hepatic, hematologic, and neurological failure were used to identify single or multiorgan (2 organ systems) noncardiac organ failure. Outcomes of interest were in-hospital mortality, temporal trends, and resource utilization. The effects of every additional organ failure on in-hospital mortality and resource utilization were assessed.


RESULTS - In 444,253 AMI-CS admissions, noncardiac single or multiorgan failure was noted in 32.4% and 31.9%, respectively. Multiorgan failure was seen more commonly in admissions with non-ST-segment elevation AMI-CS, nonwhite race, and higher baseline comorbidity. There was a steady increase in the prevalence of single and multiorgan failure. Coronary angiography and revascularization were performed less commonly in multiorgan failure. Single-organ failure (odds ratio: 1.28; 95% confidence interval: 1.26 to 1.30) and multiorgan failure (odds ratio: 2.23; 95% confidence interval: 2.19 to 2.27) were independently associated with higher in-hospital mortality, greater resource utilization, and fewer discharges to home. There was a stepwise increase in in-hospital mortality and resource utilization with each additional organ failure.


CONCLUSIONS - There has been a steady increase in the prevalence of multiorgan failure in AMI-CS. Presence of multiorgan failure was independently associated with higher in-hospital mortality and greater resource utilization.

 

Copyright © 2019 American College of Cardiology Foundation. Published by Elsevier Inc. All rights reserved.