Background: There are limited data on acute myocardial infarction with cardiogenic shock (AMI-CS) stratified by chronic kidney disease (CKD) stages. Objective: To assess clinical outcomes in AMI-CS stratified by CKD stages. Methods: A retrospective cohort of AMI-CS during 2005–2016 from the National Inpatient Sample was categorized as no CKD, CKD stage-III (CKD-III), CKD stage-IV (CKD-IV) and end-stage renal disease (ESRD). CKD-I/II were excluded. Outcomes included in-hospital mortality, use of coronary angiography, percutaneous coronary intervention (PCI) and mechanical circulatory support (MCS). We also evaluated acute kidney injury (AKI) and acute hemodialysis in non-ESRD admissions. Results: Of 372,412 AMI-CS admissions, CKD-III, CKD-IV and ESRD comprised 20,380 (5.5%), 7367 (2.0%) and 18,109 (4.9%), respectively. Admissions with CKD were, on average, older, of the White race, bearing Medicare insurance, of a lower socioeconomic stratum, with higher comorbidities, and higher rates of acute organ failure. Compared to the cohort without CKD, CKD-III, CKD-IV and ESRD had lower use of coronary angiography (72.7%, 67.1%, 56.9%, 61.1%), PCI (53.7%, 43.8%, 38.4%, 37.6%) and MCS (47.9%, 38.3%, 33.3%, 34.2%), respectively (all p < 0.001). AKI and acute hemodialysis use increased with increase in CKD stage (no CKD–38.5%, 2.6%; CKD-III–79.1%, 6.5%; CKD-IV–84.3%, 12.3%; p < 0.001). ESRD (adjusted odds ratio [OR] 1.25 [95% confidence interval {CI} 1.21–1.31]; p < 0.001), but not CKD-III (OR 0.72 [95% CI 0.69–0.75); p < 0.001) or CKD-IV (OR 0.82 [95 CI 0.77–0.87] was predictive of in-hospital mortality. Conclusions: CKD/ESRD is associated with lower use of evidence-based therapies. ESRD was an independent predictor of higher in-hospital mortality in AMI-CS.
Refractory ventricular tachycardia (VT) and electrical storm are frequently associated with hemodynamic compromise requiring mechanical support. This study sought to review the current literature on the use of venoarterial extracorporeal membrane oxygenation (VA-ECMO) for hemodynamic support during VT ablation. This was a systematic review of all published literature from 2000 to 2019 evaluating patients with VT undergoing ablation with VA-ECMO support. Studies that reported mortality, safety, and efficacy outcomes in adult (>18 years) patients were included. The primary outcome was short-term mortality (intensive care unit stay, hospital stay, or ≤30 days). The literature search identified 4,802 citations during the study period, of which seven studies comprising 867 patients met the inclusion criteria. Periprocedural VA-ECMO was used in 129 (15%) patients and all were placed peripherally. Average inducible VTs were 2–3 per procedure and ablation time varied between 34 mins and 4.7 hours. Median ages were between 61 and 68 years with 93% males. Median duration of VA-ECMO varied between 140 minutes and 6 days. Short-term mortality was 15% (19 patients), with the most frequent causes being refractory VT, cardiac arrest, and acute heart failure. All-cause mortality at the longest follow-up was 25%. Major bleeding, vascular/access complications, limb ischemia, stroke, and acute kidney injury were reported with varying frequency of 1–6%. In conclusion, VA-ECMO is used infrequently for hemodynamic support for VT ablation. Further data on patient selection, procedural optimization, and clinical outcomes are needed to evaluate the efficacy of this strategy.
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