Key result
Severe aortic stenosis linked to ~79% higher 30-day MACE risk after non-cardiac surgery, but not mortality.
Why the study?
Severe aortic stenosis is a major risk factor for death after non-cardiac surgery, but most supporting data are from studies over a decade old.
Does severe aortic stenosis increase the risk of 30-day mortality and MACE in patients undergoing intermediate or high-risk non-cardiac surgery?
Case-Control (n=512)
Does severe aortic stenosis increase the risk of 30-day mortality and MACE in patients undergoing intermediate or high-risk non-cardiac surgery?
Absolute Event Rate: 5.9% vs 3.1%
p-value: p=0.13
In contemporary practice, severe aortic stenosis increases the risk of perioperative MACE (mainly heart failure) during non-cardiac surgery, but 30-day mortality is lower than previously reported and not significantly different from matched controls.
Supports perioperative MACE vigilance in severe AS; leaves open whether valve intervention improves outcomes.
AIMS: Severe aortic stenosis (SAS) is a major risk factor for death after non-cardiac surgery, but most supporting data are from studies over a decade old. We evaluated the risk of non-cardiac surgery in patients with SAS in contemporary practice. METHODS AND RESULTS: SAS patients (valve area ≤1 cm(2), mean gradient ≥40 mmHg or peak aortic velocity ≥4 m/s) undergoing intermediate or high-risk surgery were identified from surgical and echo databases of 2000-2010. Controls were matched for age, sex, and year of surgery. Post-operative (30 days) death and major adverse cardiovascular events (MACE), including death, stroke, myocardial infarction, ventricular tachycardia/fibrillation, and new or worsening heart failure, and 1-year survival were determined. There were 256 SAS patients and 256 controls (age 76 ± 11, 54.3% men). There was no significant difference in 30-day mortality (5.9% vs. 3.1%, P = 0.13). Severe aortic stenosis patients had more MACE (18.8% vs. 10.5%, P = 0.01), mainly due to heart failure. Emergency surgery, atrial fibrillation, and serum creatinine levels of >2 mg/dL were predictors of post-operative death by multivariate analysis [area under the curve: 0.81, 95% confidence intervals: 0.71-0.91]; emergency surgery was the strongest predictor of 30-day mortality for both SAS and controls. Severe aortic stenosis was the strongest predictor of 1-year mortality. CONCLUSION: Severe aortic stenosis is associated with increased risk of MACE. In contemporary practice, perioperative mortality of patients with SAS is lower than previously reported and the difference from controls did not reach statistical significance. Emergency surgery is the strongest predictor of post-operative death. These results have implications for perioperative risk assessment and management strategies in patients with SAS.
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Tashiro et al. (2014) conducted a case-control in Severe aortic stenosis undergoing non-cardiac surgery (n=512). Severe aortic stenosis vs. Matched controls without severe aortic stenosis was evaluated on 30-day mortality (p=0.13). Severe aortic stenosis was associated with increased 30-day MACE (18.8% vs. 10.5%, P=0.01) but not 30-day mortality (5.9% vs. 3.1%, P=0.13) compared to matched controls after non-cardiac surgery.
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