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Hemodialysis access graft failure: time to revisit an unmet clinical need?
Joris I Rotmans1, Gerard Pasterkamp, Hence J M Verhagen
1Department of Vascular Medicine, Academic Medical Center, Amsterdam-The Netherlands.
Insights
Hemodialysis access graft failure, often due to intimal hyperplasia, remains a challenge. Local therapies and arteriovenous fistulas show promise for improving hemodialysis vascular access patency.
Area of Science:
- Vascular Surgery
- Nephrology
- Biomedical Engineering
Background:
- Hemodialysis access complications significantly impact patient morbidity.
- Arteriovenous graft failure is primarily caused by intimal hyperplasia at the venous anastomosis, leading to thrombosis.
Purpose of the Study:
- To review mechanisms of arteriovenous graft failure in hemodialysis patients.
- To discuss emerging strategies for optimizing arteriovenous graft patency.
Main Methods:
- Review of current literature on hemodialysis access complications.
- Analysis of mechanisms contributing to intimal hyperplasia.
- Evaluation of novel therapeutic strategies, including local interventions.
Main Results:
- Existing pharmacological and surgical interventions have failed to improve arteriovenous graft patency.
- Local therapeutic strategies targeting intimal hyperplasia show promise.
- Drug-eluting stents and brachytherapy are among promising candidates.
Conclusions:
- Local therapeutic strategies are the most promising interventions for improving arteriovenous graft patency.
- Translating experimental findings into clinical benefits remains a significant challenge.
- Increasing the use of arteriovenous fistulas is crucial for optimal vascular access in hemodialysis.
Abstract:
Hemodialysis (HD) access complications constitute a major cause of morbidity in HD patients. The failure of HD access grafts is predominantly due to progressive intimal hyperplasia (IH) at the venous anastomosis, resulting in a graft flow decline, which ultimately gives rise to graft thrombosis. To date, all tested pharmacological and surgical interventions have not resulted in increased arteriovenous (AV) graft patency rates in HD patients. In this review, we address the mechanisms contributing to AV graft failure and discuss several "emerging" strategies, which could hold promise for optimizing AV graft patency rates. In view of the failure of systemic therapies and the predictable localization of IH, local therapeutic strategies comprise the most promising interventions to improve AV graft patency rates. Based on the large number of promising candidates including drug-eluting stents and brachytherapy, the unmet clinical need for AV graft failure in HD patients is likely to be revisited in the very near future. The biggest challenge, however, remains to translate basic experimental findings into clinical benefits. Simultaneously, continuous efforts should be undertaken to increase the percentage of patients utilizing AV fistulas, which remains the best form of permanent vascular access (VA) for HD.
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