在绵羊中使用新型三叶机械心脏瓣膜假体进行主动脉瓣置换且无需抗凝。

Aortic valve replacement in sheep with a novel trileaflet mechanical heart valve prosthesis without anticoagulation.

作者信息

Schaller Tim, Scharfschwerdt Michael, Schubert Kathrin, Prinz Cornelia, Lembke Ulrich, Sievers Hans-Hinrich

机构信息

Department of Cardiac and Thoracic Vascular Surgery, University of Luebeck, Luebeck, Germany.

DOT GmbH, Rostock, Germany.

出版信息

JTCVS Open. 2021 May 29;7:76-88. doi: 10.1016/j.xjon.2021.05.011. eCollection 2021 Sep.

Abstract

BACKGROUND

Even after decades of intensive research, an ideal heart valve prosthesis remains elusive. Shortcomings of conventional devices include reduced durability of bioprostheses and the thrombogenicity of mechanical substitutes, necessitating anticoagulation and resulting in imperfect hemodynamics. Here we present in vivo results of a novel mechanical heart valve prosthesis aiming for freedom from anticoagulation.

METHODS

Four female sheep had their aortic valves replaced using the novel mechanical heart valve (size 21 mm), with no postoperative anticoagulation treatment. This trileaflet heart valve was designed with the pivots in the systolic central flow. Hemodynamics, biochemistry, hematology, and macroscopy and microscopy were studied at 90 days in 2 sheep and at 1 year in the other 2 sheep.

RESULTS

Mean (<6 mm Hg) and peak (<10 mm Hg) aortic transvalvular gradients remained low during the study period. Aortic regurgitation was trivial, and central traces were only rarely observed. The rate of thrombotic events was very low, with none macroscopically and microscopically visible thrombotic material on the device. Biochemistry and hemotology were unchanged without hemolysis. In 3 sheep, the fibrous pannus and mitral leaflet were partially folded over the edge of the annular body. Apart from organic/inorganic deposits on the leaflets after 1 year, the ultrastructurally evaluated leaflets were similar to those of nonimplanted controls.

CONCLUSIONS

The preliminary in vivo results of this novel anticoagulation-free aortic mechanical heart valve are promising with excellent hemodynamics and a very low risk of thrombotic events.

摘要

背景

即便经过数十年的深入研究,理想的心脏瓣膜假体仍未找到。传统装置的缺点包括生物假体耐久性降低以及机械替代品的血栓形成性,这就需要进行抗凝治疗,且会导致血流动力学不理想。在此,我们展示了一种旨在无需抗凝的新型机械心脏瓣膜假体的体内实验结果。

方法

4只雌性绵羊使用新型机械心脏瓣膜(尺寸为21毫米)置换主动脉瓣,术后未进行抗凝治疗。这种三叶心脏瓣膜的枢轴设计在收缩期中心血流处。对2只绵羊在90天时以及另外2只绵羊在1年时进行了血流动力学、生物化学、血液学以及大体和显微镜检查。

结果

在研究期间,平均(<6毫米汞柱)和峰值(<10毫米汞柱)主动脉跨瓣压差一直较低。主动脉瓣反流轻微,仅偶尔观察到中心痕迹。血栓形成事件发生率非常低,在装置上未发现宏观和微观可见的血栓物质。生物化学和血液学指标未发生变化,也没有溶血现象。在3只绵羊中,纤维性心内膜和二尖瓣叶部分折叠在瓣环体边缘上方。除了1年后瓣叶上有有机/无机沉积物外,超微结构评估的瓣叶与未植入的对照瓣叶相似。

结论

这种新型无需抗凝的主动脉机械心脏瓣膜的初步体内实验结果很有前景,具有出色的血流动力学表现和极低的血栓形成事件风险。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0faa/9390555/fb3084bfa038/fx1.jpg

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