Why the study?
Stiff aortic endografts alter native flow hemodynamics and may cause adverse cardiovascular outcomes, yet level one evidence comparing stent-graft materials like PTFE versus polyester is lacking.
Does endovascular aneurysm repair and the choice of stent-graft material impact cardiovascular hemodynamics and clinical outcomes in patients with aortic aneurysms?
Does endovascular aneurysm repair and the choice of stent-graft material impact cardiovascular hemodynamics and clinical outcomes in patients with aortic aneurysms?
Aortic endografts alter native hemodynamics leading to increased cardiac strain, and stent-graft materials like polyester may increase the risk of post-implantation syndrome, highlighting the need for more compliant, bio-inspired endoprostheses.
No direct PTFE-polyester comparison exists in EVAR; leaves open optimal material choice for hemodynamics.
This review discusses the impact of endovascular aneurysm repair on cardiovascular (CV) hemodynamics and the role of stent-graft material, i.e., polytetrafluoroethylene (PTFE) vs. polyester in post-procedural outcomes. Endovascular aneurysm repair has been widely employed in the last decades for thoracic and abdominal aneurysm repair. However, aortic endografts are stiff and alter the native flow hemodynamics. This failure to simulate the native aorta could lead to added strain on the heart, manifesting as increased left ventricular strain, higher pulse pressure, and congestive heart failure later. This could result in adverse CV outcomes. Also, evidence is mounting to support the implication of stent-graft materials, i.e., PTFE vs. polyester, in adverse post-procedural outcomes. However, there is an absence of level one evidence. Therefore, the only way forward is to plan and perform a randomised controlled trial to demonstrate the alterations in the CV hemodynamics in the short and long run and compare the available stent-graft materials regarding procedural and clinical outcomes. We believe the best solution, for now, would be to reduce the stented length of the aorta. At the same time, in the longer term, encourage continuous improvement in stent-graft materials and design.
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Sultan et al. (2022) studied this question.
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