首页> 外文期刊>The Journal of heart valve disease >Detoxification on top of enhanced, diamine-extended glutaraldehyde fixation significantly reduces bioprosthetic root calcification in the sheep model.
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Detoxification on top of enhanced, diamine-extended glutaraldehyde fixation significantly reduces bioprosthetic root calcification in the sheep model.

机译:在增强的,二胺扩展的戊二醛固定作用之上进行排毒可以显着降低绵羊模型中生物假体的根钙化。

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BACKGROUND AND AIM OF THE STUDY: Increased concentrations of glutaraldehyde (GA), diamine-extension (DA) of crosslinks and subsequent extraction of excess GA all reduce bioprosthetic calcification in the subdermal rat model. The study aim was to demonstrate the combined effect of all three treatments in a circulatory sheep model. METHODS: Two fixation treatments were used for GA detoxification (urazole in acetate buffer, 0.1 M; pH 4.5; 37 degrees C; 7 days): (i) conventional 0.2% GA fixation (4 degrees C; 7 days); and (ii) enhanced 3.0% GA fixation (4 degrees C; 2 days, followed by a DA interim step; 100 mM L-lysine; 37 degrees C; 2 days, followed by GA; 3.0%; 37 degrees C; 5 days). Entire porcine root prostheses were implanted in the distal aortic arch of young sheep for 12 weeks (n = 5 per group). Non-detoxified 0.2% GA-treated roots served as controls (n = 5). Calcium analysis was based on atomic absorption spectrophotometry; morphology was assessed using light and transmission electron microscopy. RESULTS: Detoxification alone resulted in an 83% reduction of leaflet calcification (p = 0.086), but achieved only 23% (p = 0.145) and 12% (p = 0.362) mitigation of calcification in aortic wall and sinus tissue, respectively. When combined with DA-enhanced 3% GA fixation, detoxification led to a 95% reduction in leaflet calcification (p = 0.057), followed by 79% in sinus (p = 0.003) and 79% in aortic wall tissue (p = 0.0003). Morphologically, detoxification primarily affected leaflets and the subadventitial layer of aortic wall tissue, whereas enhanced fixation seemed to affect all structures. CONCLUSION: It was shown in a circulatory sheep model that a combination of DA-enhanced fixation with an extraction process of excess GA leads to a distinct mitigation of leaflet and aortic wall calcification.
机译:研究的背景和目的:戊二醛(GA)浓度的增加,交联的二胺延伸(DA)的增加以及随后提取过量的GA均会降低皮下大鼠模型的生物修复钙化。该研究的目的是证明循环绵羊模型中三种治疗方法的综合效果。方法:GA脱毒使用两种固定方法(尿素在乙酸盐缓冲液中的尿素,0.1 M; pH 4.5; 37摄氏度; 7天):(i)常规的0.2%GA固定(4摄氏度; 7天); (ii)增强3.0%GA固定(4摄氏度; 2天,随后进行DA过渡步骤; 100 mM L-赖氨酸; 37摄氏度; 2天,随后进行GA; 3.0%; 37摄氏度; 5天)。将整个猪根假体植入小羊的远端主动脉弓内12周(每组n = 5)。未排毒的0.2%GA处理过的根用作对照(n = 5)。钙分析基于原子吸收分光光度法;使用光和透射电子显微镜评估形态。结果:仅排毒可使小叶钙化减少83%(p = 0.086),但仅能分别缓解23%(p = 0.145)和12%(p = 0.362)的主动脉壁和窦组织钙化。当与DA增强的3%GA固定相结合时,排毒可使小叶钙化减少95%(p = 0.057),其次是窦内79%(p = 0.003)和79%主动脉壁组织(p = 0.0003)。 。在形态上,排毒主要影响小叶和主动脉壁组织的外膜下层,而增强的固定似乎影响所有结构。结论:在循环羊模型中显示,DA增强固定与过量GA提取过程的组合可明显缓解小叶和主动脉壁钙化。

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