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Published on: April 25, 2014
Urgent Pericardiocentesis Is More Frequently Needed After Left Circumflex Coronary Artery Perforation
Michał A Surdacki1, Marcin Major1, Michał Chyrchel2,3,4
1Students' Scientific Group at the Second Department of Cardiology, Jagiellonian University Medical College, 30-688 Cracow, Poland.
Insights
Coronary artery perforation (CAP) in the left circumflex coronary artery (LCx) increases the risk of cardiac tamponade after percutaneous coronary interventions (PCIs). This finding highlights the importance of considering the specific artery involved in PCI complications.
Area of Science:
- Interventional Cardiology
- Cardiovascular Research
- Medical Complications
Background:
- Coronary artery perforation (CAP) is a rare but serious complication of percutaneous coronary interventions (PCIs).
- While predictors of CAP are well-studied, predictors of cardiac tamponade following CAP are less understood.
- This study investigates factors associated with acute cardiac tamponade after iatrogenic CAP.
Purpose of the Study:
- To identify clinical and periprocedural characteristics linked to acute cardiac tamponade in patients with iatrogenic coronary artery perforation (CAP).
- Specifically, to evaluate the role of the involved coronary artery in the development of tamponade after CAP.
Main Methods:
- Retrospective analysis of 81 patients with type III CAP (visible extravasation) from nine centers over 15 years.
- Comparison of clinical, angiographic, and periprocedural data between patients who developed tamponade requiring pericardiocentesis and those who did not.
- Analysis focused on the location of CAP, including the left anterior descending (LAD), right coronary artery (RCA), and left circumflex coronary artery (LCx) territories.
Main Results:
- Coronary artery perforation (CAP) occurred most frequently in the LAD territory (51%), followed by RCA (24%) and LCx (16%).
- Acute cardiac tamponade occurred in 24% of LAD CAPs, 21% of RCA CAPs, and 37% of LCx CAPs.
- Urgent pericardiocentesis was significantly more frequent in patients with CAP in the LCx (54%) compared to other arteries (21%) (p=0.03), suggesting a higher risk of tamponade.
Conclusions:
- Coronary artery perforation (CAP) in the left circumflex coronary artery (LCx) territory is associated with a significantly higher risk of developing acute cardiac tamponade.
- This increased risk may be related to the unique anatomical features of the LCx or potential delays in diagnosing and managing LCx-related complications.
- Further research is needed to elucidate the specific mechanisms and optimize management strategies for LCx-related CAP and tamponade.
Abstract:
Background: Coronary artery perforation (CAP) is a rare but potentially life-threatening complication of percutaneous coronary interventions (PCIs) due to the risk of cardiac tamponade. Strikingly, in contrast to numerous analyses of CAP predictors, only few studies were focused on the predictors of tamponade after PCI, once iatrogenic CAP has occurred. Our aim was to search for clinical and periprocedural characteristics, including the coronary artery involved, associated with the development of acute cardiac tamponade among patients experiencing CAP. Methods: From the medical records of nine centers of invasive cardiology in southern Poland, we retrospectively selected 81 patients (80% with acute myocardial infarction) who had iatrogenic CAP with a visible extravasation jet during angiography (corresponding to type III CAP by the Ellis classification, CAPIII) over a 15-year period (2005-2019). Clinical, angiographic and periprocedural characteristics were compared between the patients who developed acute cardiac tamponade requiring urgent pericardiocentesis in the cathlab (n = 21) and those with CAPIII and without tamponade (n = 60). Results: CAPIII were situated in the left anterior descending artery (LAD) or its diagonal branches (51%, n = 41), right coronary artery (RCA) (24%, n = 19), left circumflex coronary artery (LCx) (16%, n = 13), its obtuse marginal branches (7%, n = 6) and left main coronary artery (2%, n = 2). Acute cardiac tamponade occurred in 24% (10 of 41), 21% (4 of 19) and 37% (7 of 19) patients who experienced CAPIII in the territory of LAD, RCA and LCx, respectively. There were no significant differences in the need for urgent pericardiocentesis (37%) in patients with CAPIII in LCx territory (i.e., the LCx or its obtuse marginal branches) compared to CAPIII in the remaining coronary arteries (23%) (p = 0.24). However, when CAPIII in the LCx were separated from CAPIII in obtuse marginal branches, urgent pericardiocentesis was more frequently performed in patients with CAPIII in the LCx (54%, 7 of 13) compared to subjects with CAPIII in an artery other than the LCx (21%, 14 of 68) (p = 0.03). The direction of this tendency remained consistent regardless of CAP management: prolonged balloon inflation only (n = 26, 67% vs. 13%, p = 0.08) or balloon inflation with subsequent stent implantation (n = 55, 50% vs. 24%, p = 0.13). Besides LCx involvement, no significant differences in other characteristics were observed between patients according to the need of urgent pericardiocentesis. Conclusions: CAPIII in the LCx appears to lead to a higher risk of acute cardiac tamponade compared to perforations involving other coronary arteries. This association may possibly be linked to distinct features of LCx anatomy and/or well-recognized delays in diagnosis and management of LCx-related acute coronary syndromes.
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