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Influence of Tissue Technology on Pannus Formation on Bioprosthetic Heart Valves

机译:组织技术对生物人工心脏瓣膜翳形成的影响

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Abstract Purpose-Bioprosthetic heart valves have several modes of failure. Tissue degeneration and calcification are the major modes of failure with the highest focus of attention, however pannus formation can also be problematic. We studied the effect of a new tissue technology with the absence of any glutaraldehyde-based storage solution and a stable aldehyde capping process on pannus formation. Methods-Using a juvenile sheep model of mitral valve replacement, valves with the new tissue technology were compared to control valves with contemporary bovine pericardial tissue, regarding pannus formation. Valves were implanted for either a 5- or 8-month period. Explanted valves were examined macroscopically and histologically. Histolog-ical observations were made by an independent pathologist, blinded to group identity. Results-Pannus area measured macroscopically on the test valves was significantly lower than the pannus on the control tissue. This was confirmed on the histological samples, where the total pannus overgrowth was significantly lower in the test group compared to the control. Conclusion-The new tissue technology leads to less pannus formation. This may beneficially influence both short- and long-term valve behavior of bioprosthetic valves
机译:摘要 目的-生物人工心脏瓣膜有几种失效模式。组织变性和钙化是最受关注的主要失败模式,但鱼翳的形成也可能是有问题的。我们研究了一种新的组织技术在没有任何基于戊二醛的储存溶液和稳定的醛封端工艺的情况下对鱼翳形成的影响。方法-使用二尖瓣置换术的幼羊模型,将采用新组织技术的瓣膜与采用当代牛心包组织的控制瓣膜进行比较,了解胎翳的形成情况。瓣膜植入 5 个月或 8 个月。对外植瓣膜进行肉眼和组织学检查。组织学观察是由一位独立的病理学家进行的,对群体身份不知情。结果-在测试瓣膜上宏观测量的翳面积明显低于对照组织上的翳面积。这在组织学样本上得到了证实,与对照组相比,测试组的总胎蹄过度生长显着降低。结论-新的组织技术可减少翳的形成。这可能会对生物瓣膜的短期和长期瓣膜行为产生有益影响

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