One-Year Outcome of Patients with Coronary Artery Ectasia Undergoing Percutaneous Coronary Intervention: Clinical
Alireza Amirzadegan1, Seyed-Ali Sadre-Bafghi1, Saeed Ghodsi1
1Tehran Heart Center, Tehran University of Medical Sciences, Tehran, Iran.
Insights
Coronary artery ectasia (CAE) does not impact short-term outcomes after angioplasty but increases the risk of urgent revascularization long-term. Close monitoring is essential for patients with CAE post-PCI.
Area of Science:
- Cardiology
- Interventional Cardiology
Background:
- Coronary artery ectasia (CAE) is a rare condition with poorly understood pathophysiology, treatment, and prognosis.
- The prognostic implications of CAE following percutaneous coronary intervention (PCI) require further investigation.
Purpose of the Study:
- To determine the prognostic implications of coronary artery ectasia (CAE) in patients undergoing percutaneous coronary intervention (PCI).
Main Methods:
- Retrospective cohort study of 385 patients, including 87 with CAE, who underwent PCI.
- Major adverse cardiovascular events (MACE) defined as mortality, myocardial infarction (MI), repeat revascularization, and stroke.
- Cox-regression and multivariate regression analyses were used to assess outcomes.
Main Results:
- CAE was not a predictor of suboptimal post-PCI thrombolysis in myocardial infarction (TIMI) flow.
- CAE, higher body mass index, and family history of MI were risk factors for MACE.
- CAE significantly increased the risk of urgent repeat revascularization (HR: 2.40, P=0.013) but not all-cause mortality or nonfatal MI in the long term.
Conclusions:
- Coronary artery ectasia (CAE) shows no significant short-term impact on post-PCI TIMI flow.
- Extended follow-up reveals considerable concerns for adverse outcomes, particularly urgent revascularization.
- Stringent follow-up protocols are crucial for patients with CAE post-PCI due to the elevated risk of repeat revascularization.
Abstract:
Background: Coronary artery ectasia (CAE) is a rare condition with unclear pathophysiology, optimal treatment, and prognosis. We aimed to determine the prognostic implications of CAE following coronary angioplasty. Methods: We conducted a retrospective cohort study on 385 patients, including 87 subjects with CAE, who underwent percutaneous coronary intervention (PCI). Major adverse cardiovascular events (MACE) were considered to consist of mortality, nonfatal myocardial infarction (MI), repeated revascularization, and stroke. Results: The mean age of the participants was 57.31±6.70 years. Multivariate regression analysis revealed that patients with diabetes, ST-segment-elevation MI at presentation, and high thrombus grades were more likely to have suboptimal post-PCI thrombolysis in myocardial infarction (TIMI) flow. However, CAE was not a predictor of a decreased TIMI flow (OR: 1.46, 95% CI: 0.78-8.32; P=0.391). The Cox-regression model showed that CAE, the body mass index, and a family history of MI were risk factors for MACE, while short lesion lengths (<20 vs >20 mm) had an inverse relationship. The adjusted hazard ratio (HR) for the prediction of MACE in the presence of CAE was 1.65 (95% CI: 1.08-4.78; P=0.391). All-cause mortality (HR: 1.69, 95% CI: 0.12-3.81; P=0.830) and nonfatal MI (HR: 1.03, 95% CI: 0.72-4.21; P=0.341) occurred similarly in the CAE and non-CAE groups. Conversely, CAE increased urgent repeat revascularization (HR: 2.40; 95% CI: 1.13-5.86; P=0.013). Conclusion: Although CAE had no substantial short-term prognostic effects on post-PCI TIMI flow, considerable concerns regarding adverse outcomes emerged during our extended follow-up. Stringent follow-ups of these patients should be underscored due to the high likelihood of urgent revascularization.
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