Anomalous Left Circumflex Artery in Valve Interventions: Surgical and Transcatheter Challenges
Koji Furukawa1, Hirohito Ishii1, Shuhei Sakaguchi1
1Division of Cardiovascular Surgery, Department of Surgery, Faculty of Medicine, University of Miyazaki, Miyazaki, Japan.
Insights
Anomalous origin of the left circumflex coronary artery (AOLCX) can be compressed during valve interventions. Pre-procedural imaging and a Heart Team approach are crucial for preventing iatrogenic injury and ensuring patient safety.
Area of Science:
- Cardiovascular Surgery
- Interventional Cardiology
- Cardiac Anatomy
Background:
- Anomalous origin of the left circumflex coronary artery (AOLCX) with a retro-aortic course poses a risk during valve interventions.
- Iatrogenic injury, though typically benign, can lead to severe ischemia, necessitating careful management.
- Expanding transcatheter aortic valve replacement (TAVR) use in lower-risk patients highlights the need to understand injury mechanisms in both surgical and TAVR settings.
Purpose of the Study:
- To review anatomical risks, injury mechanisms, and management strategies for AOLCX during valve interventions.
- To synthesize evidence from surgical and transcatheter procedures to inform clinical practice.
- To emphasize the importance of pre-procedural assessment and tailored preventive measures.
Main Methods:
- A narrative review of 45 relevant publications was conducted.
- Focus was placed on anatomical considerations, mechanisms of injury, and treatment options for AOLCX.
- Integration of technical and anatomical evidence from the literature.
Main Results:
- Left circumflex artery compromise depends on its proximity to the aortic and mitral annuli.
- Surgical injury is often caused by deep sutures or prosthetic rings; TAVR injury involves retro-aortic compression or ostial occlusion.
- Pre-procedural assessment (coronary height, sinus dimensions, calcification, annular proximity) and preventive strategies (mobilization, bypass, guidewire protection) are vital.
Conclusions:
- Pre-procedural computed tomography angiography is essential for quantifying anatomical risk.
- A Heart Team approach is required for optimal intervention selection and mechanism-specific protection.
- Long-term clinical and imaging surveillance is necessary to prevent acute and delayed AOLCX compromise.
Background:
Anomalous origin of the left circumflex coronary artery (AOLCX) with a retroaortic course is at risk of compression during valve interventions. Although AOLCX is typically benign, iatrogenic injury can cause catastrophic ischemia. As transcatheter aortic valve replacement (TAVR) expands to lower-risk populations, understanding mechanisms of injury in both surgical and transcatheter settings is becoming crucial.
Methods:
A narrative review was performed focusing on anatomic risks, injury mechanisms, and management of AOLCX. Forty-five relevant publications were synthesized to integrate technical and anatomic evidence.
Results:
Left circumflex artery compromise is determined by the vessel's proximity to the aortic and mitral annuli. In surgery, deep sutures and prosthetic rings are the primary causes. In TAVR, mechanisms involve retroaortic compression and ostial occlusion, necessitating preprocedural assessment of coronary height, sinus dimensions, calcification, and annular proximity. Preventive strategies include surgical mobilization, prophylactic bypass, and guidewire protection. Bailout strategies include bypass and emergency stenting. For aortic stenosis, procedure selection between surgery and TAVR should be individualized on the basis of age, calcification, and anatomic metrics. Late complications such as delayed coronary obstruction necessitate longitudinal surveillance.
Conclusions:
Preprocedural computed tomographic angiography is essential to quantify anatomic risk. A heart team approach is required to select the optimal intervention and implement mechanism-specific protection. Long-term clinical and imaging surveillance is warranted to prevent both acute and delayed left circumflex artery compromise.
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