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Updated: Jun 6, 2025

Fully Endoscopic Mitral Valve Repair with Percutaneous Cannulation of Groin Vessels
Published on: May 26, 2023
Gastrointestinal complications and visceral circulation changes after intentional celiac artery embolization during
Arash Fereydooni1, Claudia Trogolo Franca1, Sabina M Sorondo1
1Division of Vascular and Endovascular Surgery, Department of Surgery, Stanford University, Stanford, CA.
Insights
Intentional celiac artery embolization (CAE) during complex endovascular aortic repair can lead to mesenteric complications in 14% of patients, impacting long-term survival. Monitoring collateral circulation post-CAE is crucial for managing these risks.
Area of Science:
- Vascular Surgery
- Interventional Radiology
- Gastroenterology
Background:
- Intentional celiac artery embolization (CAE) is utilized in complex endovascular aortic repair to enhance seal zones.
- Gastrointestinal complications post-CAE are documented, but changes in collateral circulation remain poorly understood.
Purpose of the Study:
- To evaluate long-term outcomes and adaptive changes in collateral visceral circulation after CAE during complex endovascular aortic repair.
Main Methods:
- A retrospective review of 70 patients undergoing CAE during complex EVAR/TEVAR over 12 years.
- Analysis of pre- and postoperative data to identify mesenteric complications and assess collateral anatomy changes.
- Multivariable logistic regression to correlate collateral vessel diameter changes with mesenteric complications.
Main Results:
- 14% of patients experienced 90-day mesenteric complications, including GI bleed, ulcer, cholecystitis, pancreatitis, and ischemic hepatitis.
- Patients with 90-day mesenteric complications had significantly lower 2-year survival (42.5% vs. 75.0%).
- Increased collateral diameter at SMA and celiac junctions post-CAE was associated with fewer complications; SMA junction diameter increase was protective (OR 0.93).
Conclusions:
- CAE is a valuable adjunct for seal zone extension in select EVAR cases but carries a risk of mesenteric complications and reduced long-term survival.
- Careful patient selection and early surveillance of collateral pathways are essential for mitigating CAE-related visceral complications.
Objective:
Intentional celiac artery embolization (CAE) is an oft-used strategy to extend proximal or distal seal during complex endovascular aortic repair. Prior reports document a wide range of gastointestinal-related complications. However, associated changes in collateral circulation are poorly defined. We sought to report the long-term outcomes and adaptive changes in collateral visceral circulation following CAE during complex endovascular aortic repair.
Methods:
All patients undergoing complex endovascular aortic procedures (endovascular aortic repair [EVAR] and thoracic EVAR) with CAE at a single institution over a 12-year period were included. Pre- and postoperative clinical, radiologic, and laboratory data were reviewed to identify mesenteric complications related to CAE and to assess long-term survival and radiologic changes in collateral anatomy. Multivariable logistic regression was used to determine the association between collateral vessel diameter change and mesenteric complications.
Results:
From 2011 to 2023, 70 patients underwent planned CAE during complex EVAR. With regards to mesenteric complications not attributable to the superior mesenteric artery (SMA) stent, 11.4% had 30-day mesenteric complications, including upper gastrointestinal bleed or perforated ulcer (n = 3), cholecystitis (n = 2), pancreatitis (n = 2), and ischemic hepatitis (n = 1). During 31 to 90 days after CAE, two additional patients (2.9%) had upper gastrointestinal bleed. With regards to 90-day mesenteric complications related to the SMA stent, four additional patients (5.7%) had SMA stent complications leading to mesenteric ischemia. On Kaplan-Meier analysis, patients with any 90-day mesenteric complication had significantly lower overall 2-year survival (42.5% vs 75.0%; P = .002). On preoperative imaging, 20% of patients had variant SMA anatomy with the gastroduodenal artery as the dominant SMA-celiac collateral pathway in 68.6%. Postoperatively, patients without mesenteric complications had a greater increase in the collateral diameter at both SMA and celiac junctions at 1, 3 to 6, 12, and 24 months, with a statistically significant difference in diameter at 1 month compared with patients with complications (median: 16.2% vs -2.1% at celiac; P = .006 and 20.8% vs 7.7% at SMA; P = .021). On adjusted multivariate regression, increase in collateral diameter at the SMA junction on first postoperative computed tomography was significantly protective of 90-day mesenteric complications (odds ratio, 0.93; 95% confidence interval, 0.87-0.96; P = .046).
Conclusions:
CAE during complex EVAR is a useful adjunct to increase seal zone in select patients; however, mesenteric complications occur in 14% of the patients over a 90-day postoperative period, and patients with mesenteric complications have a higher long-term all-cause mortality. CAE should be a technique within the toolbox of vascular surgeons for urgent circumstances that do not allow for celiac preservation. Careful selection of candidates for CAE and early postoperative surveillance of collateral pathways may help with prevention and early identification of long-term visceral complications.
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