Boire Timothy C, Balikov Daniel A, Lee Yunki, Guth Christy M, Cheung-Flynn Joyce, Sung Hak-Joon
Department of Biomedical Engineering, Vanderbilt University, 37235, Nashville, TN, USA.
Division of Vascular Surgery, Department of Surgery, Vanderbilt University Medical Center, Nashville, TN, 37235, USA.
Macromol Rapid Commun. 2016 Dec;37(23):1860-1880. doi: 10.1002/marc.201600412. Epub 2016 Sep 27.
Veins used as grafts in heart bypass or as access points in hemodialysis exhibit high failure rates, thereby causing significant morbidity and mortality for patients. Interventional or revisional surgeries required to correct these failures have been met with limited success and exorbitant costs, particularly for the US Centers for Medicare & Medicaid Services. Vein stenosis or occlusion leading to failure is primarily the result of neointimal hyperplasia. Systemic therapies have achieved little long-term success, indicating the need for more localized, sustained, biomaterial-based solutions. Numerous studies have demonstrated the ability of external stents to reduce neointimal hyperplasia. However, successful results from animal models have failed to translate to the clinic thus far, and no external stent is currently approved for use in the US to prevent vein graft or hemodialysis access failures. This review discusses current progress in the field, design considerations, and future perspectives for biomaterial-based external stents. More comparative studies iteratively modulating biomaterial and biomaterial-drug approaches are critical in addressing mechanistic knowledge gaps associated with external stent application to the arteriovenous environment. Addressing these gaps will ultimately lead to more viable solutions that prevent vein graft and hemodialysis access failures.
在心脏搭桥手术中用作移植物或在血液透析中用作接入点的静脉,其故障率很高,从而给患者带来了显著的发病率和死亡率。为纠正这些故障而进行的介入性手术或修复性手术取得的成功有限且成本高昂,尤其是对美国医疗保险和医疗补助服务中心而言。导致故障的静脉狭窄或闭塞主要是内膜增生的结果。全身治疗在长期内收效甚微,这表明需要更多基于生物材料的局部、持续的解决方案。大量研究表明外部支架有减少内膜增生的能力。然而,到目前为止,动物模型的成功结果尚未转化到临床应用,而且目前美国没有外部支架被批准用于预防静脉移植物或血液透析接入故障。本综述讨论了基于生物材料的外部支架领域的当前进展、设计考量和未来展望。更多反复调节生物材料和生物材料 - 药物方法的比较研究对于解决与外部支架应用于动静脉环境相关的机制知识空白至关重要。填补这些空白最终将带来更多可行的解决方案,以预防静脉移植物和血液透析接入故障。