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采用新型聚合物人工心脏瓣膜的杂交方法进行经导管肺动脉瓣置换:绵羊实验的概念验证

Transcatheter pulmonary valve replacement by hybrid approach using a novel polymeric prosthetic heart valve: proof of concept in sheep.

作者信息

Zhang Ben, Chen Xiang, Xu Tong-yi, Zhang Zhi-gang, Li Xin, Han Lin, Xu Zhi-yun

机构信息

Department of Cardiothoracic Surgery, Changhai Hospital, Second Military Medical University, Shanghai, China; Centre of Cardiovascular Surgery, Guangzhou General Hospital of Guangzhou Military Region, Guangzhou, China.

Department of Cardiology, Changhai Hospital, Second Military Medical University, Shanghai, China.

出版信息

PLoS One. 2014 Jun 13;9(6):e100065. doi: 10.1371/journal.pone.0100065. eCollection 2014.

Abstract

BACKGROUND

Since 2000, transcatheter pulmonary valve replacement has steadily advanced. However, the available prosthetic valves are restricted to bioprosthesis which have defects like poor durability. Polymeric heart valve is thought as a promising alternative to bioprosthesis. In this study, we introduced a novel polymeric transcatheter pulmonary valve and evaluated its feasibility and safety in sheep by a hybrid approach.

METHODS

We designed a novel polymeric trileaflet transcatheter pulmonary valve with a balloon-expandable stent, and the valve leaflets were made of 0.1-mm expanded polytetrafluoroethylene (ePTFE) coated with phosphorylcholine. We chose glutaraldehyde-treated bovine pericardium valves as control. Pulmonary valve stents were implanted in situ by a hybrid transapical approach in 10 healthy sheep (8 for polymeric valve and 2 for bovine pericardium valve), weighing an average of 22.5±2.0 kg. Angiography and cardiac catheter examination were performed after implantation to assess immediate valvular functionality. After 4-week follow-up, angiography, echocardiography, computed tomography, and cardiac catheter examination were used to assess early valvular function. One randomly selected sheep with polymeric valve was euthanized and the explanted valved stent was analyzed macroscopically and microscopically.

FINDINGS

Implantation was successful in 9 sheep. Angiography at implantation showed all 9 prosthetic valves demonstrated orthotopic position and normal functionality. All 9 sheep survived at 4-week follow-up. Four-week follow-up revealed no evidence of valve stent dislocation or deformation and normal valvular and cardiac functionality. The cardiac catheter examination showed the peak-peak transvalvular pressure gradient of the polymeric valves was 11.9±5.0 mmHg, while that of two bovine pericardium valves were 11 and 17 mmHg. Gross morphology demonstrated good opening and closure characteristics. No thrombus or calcification was seen macroscopically.

CONCLUSIONS

This design of the novel ePTFE transcatheter pulmonary valve is safe and effective to deploy in sheep by hybrid approach, and the early valvular functionality is good.

摘要

背景

自2000年以来,经导管肺动脉瓣置换术一直在稳步发展。然而,现有的人工瓣膜仅限于生物瓣膜,其存在耐久性差等缺陷。聚合物心脏瓣膜被认为是生物瓣膜的一种有前途的替代品。在本研究中,我们引入了一种新型聚合物经导管肺动脉瓣,并通过一种混合方法评估了其在绵羊中的可行性和安全性。

方法

我们设计了一种带有球囊可扩张支架的新型聚合物三叶经导管肺动脉瓣,瓣膜小叶由涂有磷酸胆碱的0.1毫米膨体聚四氟乙烯(ePTFE)制成。我们选择戊二醛处理的牛心包瓣膜作为对照。通过经心尖混合方法将肺动脉瓣支架原位植入10只健康绵羊(8只植入聚合物瓣膜,2只植入牛心包瓣膜),平均体重为22.5±2.0千克。植入后进行血管造影和心导管检查以评估瓣膜的即时功能。4周随访后,使用血管造影、超声心动图、计算机断层扫描和心导管检查来评估早期瓣膜功能。随机选择一只植入聚合物瓣膜的绵羊实施安乐死,并对取出的带瓣支架进行宏观和微观分析。

结果

9只绵羊植入成功。植入时的血管造影显示,所有9个人工瓣膜均处于正常位置且功能正常。9只绵羊在4周随访时均存活。4周随访未发现瓣膜支架脱位或变形以及瓣膜和心脏功能正常的证据。心导管检查显示,聚合物瓣膜的峰-峰跨瓣压差为11.9±5.0毫米汞柱,而两个牛心包瓣膜的峰-峰跨瓣压差分别为11和17毫米汞柱。大体形态显示开闭特征良好。宏观上未见血栓或钙化。

结论

这种新型ePTFE经导管肺动脉瓣设计通过混合方法在绵羊中部署是安全有效的,且早期瓣膜功能良好。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dd20/4057289/349e4f90e5e4/pone.0100065.g001.jpg

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