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SailValve自膨胀式深静脉瓣膜系统在猪模型中的概念验证评估。

Proof-of-Concept Evaluation of the SailValve Self-Expanding Deep Venous Valve System in a Porcine Model.

作者信息

Boersma Doeke, Vink Aryan, Moll Frans L, de Borst Gert J

机构信息

1 Department of Vascular Surgery, University Medical Centre, Utrecht, the Netherlands.

2 Department of Surgery, Jeroen Bosch Ziekenhuis, Den Bosch, the Netherlands.

出版信息

J Endovasc Ther. 2017 Jun;24(3):440-446. doi: 10.1177/1526602817700120. Epub 2017 Mar 30.

Abstract

PURPOSE

To evaluate the SailValve, a new self-expanding deep venous valve concept based on a single polytetrafluoroethylene cusp floating up and down in the bloodstream like a sail, acting as a flow regulator and allowing minimal reflux to reduce thrombogenicity.

METHODS

Both iliac veins of 5 pigs were implanted with SailValve devices; the first animal was an acute pilot experiment to show the feasibility of accurately positioning the SailValve via a femoral access. The other 4 animals were followed for 2 weeks (n=2) or 4 weeks (n=2) under a chronic implantation protocol. Patency and valve function were evaluated directly in all animals using ascending and descending phlebography after device placement and at termination in the chronic implant animals. For reasons of clinical relevance, a regimen of clopidogrel and calcium carbasalate was administered. Histological analysis was performed according to a predefined protocol by an independent pathologist.

RESULTS

Deployment was technically feasible in all 10 iliac veins, and all were patent directly after placement. No perioperative or postoperative complications occurred. Ascending phlebograms in the follow-up animals confirmed the patency of all valves after 2 or 4 weeks. Descending phlebograms showed full function in 5 of 8 valves. Limited reflux was seen in 1 valve (4-week group), and the function in the remaining 2 valves (2-week group) was insufficient because of malpositioning. No macroscopic thrombosis was noted on histology. Histology in the follow-up groups revealed a progressive inflammatory reaction to the valves.

CONCLUSION

This animal study shows the potential of the SailValve concept with sufficient valve function after adequate positioning and no (thrombogenic) occlusions after short-term follow-up. Future research is essential to optimize valve material and long-term patency.

摘要

目的

评估SailValve,这是一种新型的自膨胀式深静脉瓣膜概念,它基于单个聚四氟乙烯瓣叶在血流中像帆一样上下浮动,起到流量调节器的作用,并允许最小程度的反流以降低血栓形成倾向。

方法

对5头猪的双侧髂静脉植入SailValve装置;第一只动物进行急性先导实验,以展示通过股动脉入路精确放置SailValve的可行性。其他4只动物按照慢性植入方案分别随访2周(n = 2)或4周(n = 2)。在装置植入后以及慢性植入动物实验结束时,使用顺行和逆行静脉造影直接评估所有动物的通畅情况和瓣膜功能。出于临床相关性考虑,给予氯吡格雷和卡巴匹林钙治疗方案。由独立病理学家按照预定义方案进行组织学分析。

结果

在所有10条髂静脉中,技术上均可行放置,且放置后所有静脉均直接通畅。未发生围手术期或术后并发症。随访动物的顺行静脉造影证实,2周或4周后所有瓣膜均通畅。逆行静脉造影显示,8个瓣膜中有5个功能完全正常。1个瓣膜(4周组)出现有限反流,其余2个瓣膜(2周组)因位置不当功能不足。组织学检查未发现明显血栓形成。随访组的组织学检查显示对瓣膜有渐进性炎症反应。

结论

这项动物研究表明,SailValve概念具有潜力,在适当放置后具有足够的瓣膜功能,短期随访后无(血栓形成性)闭塞。未来的研究对于优化瓣膜材料和长期通畅性至关重要。

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