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一种新型组织处理方法,可减少牛心包心脏瓣膜的矿化。

A novel tissue treatment to reduce mineralization of bovine pericardial heart valves.

机构信息

Department of Cardiovascular Sciences, Cardiac Surgery, KU Leuven, Leuven, Belgium.

Department of Cardiovascular Sciences, Cardiac Surgery, KU Leuven, Leuven, Belgium.

出版信息

J Thorac Cardiovasc Surg. 2018 Jul;156(1):197-206. doi: 10.1016/j.jtcvs.2018.01.099. Epub 2018 Feb 21.

Abstract

OBJECTIVE

With the increasing use of bioprostheses worldwide, continuous efforts have been made to improve tissue durability. We introduce a new treatment for bovine pericardium combining octanediol-ethanol based phospholipid removal with taurine-based glutaraldehyde neutralization and storage in an aldehyde-free solution (FREE).

METHODS

Treated tissues were evaluated by mechanical and biochemical characterization, phospholipid content, aldehyde levels, cell cultures on pericardial samples (L929 fibroblasts and human umbilical vein endothelial cells), rat subcutaneous implantations, and long-term juvenile sheep mitral valve implantations (n = 3). Comparisons were made to glutaraldehyde-fixed bovine pericardium or to samples from commercially available biological valves (ie, Trifecta [St Jude Medical, Saint Paul, Minn] and Perimount Magna Ease [Edwards Lifesciences, Irvine, Calif]).

RESULTS

FREE-treated pericardium had similar mechanical strength and biochemical properties as commercially available valves. Compared with glutaraldehyde-only samples, FREE-treated samples showed lower phospholipid levels (P < .01), significantly better growth of L929 fibroblasts, and lower calcification levels in rat subcutaneous implants (P < .01). Compared with samples from Linx- (Trifecta) and ThermaFix-treated (Perimount Magna Ease) valves, similar low levels of phospholipids were observed as were similar low calcification levels in subcutaneous implants, but tissue extractions from FREE-treated samples showed the lowest levels of extracted aldehydes (P < .01). Mitral implants of FREE-treated valves in juvenile sheep had excellent hemodynamic behavior without any sign of degeneration or calcification at 5 months.

CONCLUSIONS

The new FREE treatment combines an adequate phospholipid reduction and aldehyde neutralization with storage in an aldehyde-free solution. This combination enhances the anticalcification properties and may thereby improve long-term durability of the tissue.

摘要

目的

随着全球生物假体的应用日益增多,人们不断努力提高组织耐久性。我们介绍了一种新的牛心包处理方法,将辛二醇-乙醇基磷脂去除与牛磺酸基戊二醛中和以及在无醛溶液中储存(FREE)相结合。

方法

通过机械和生化特性分析、磷脂含量、醛含量、心包样本上的细胞培养(L929 成纤维细胞和人脐静脉内皮细胞)、大鼠皮下植入物和幼年绵羊二尖瓣长期植入物(n=3)评估处理后的组织。与戊二醛固定的牛心包或市售生物瓣膜(即 Trifecta[圣犹达医疗公司,明尼苏达州圣保罗]和 Perimount Magna Ease[爱德华兹生命科学公司,加利福尼亚州欧文])的样本进行比较。

结果

FREE 处理的心包膜具有与市售瓣膜相似的机械强度和生化特性。与仅戊二醛处理的样本相比,FREE 处理的样本磷脂水平较低(P<.01),L929 成纤维细胞生长更好,大鼠皮下植入物的钙化水平较低(P<.01)。与 Linx-(Trifecta)和 ThermaFix 处理(Perimount Magna Ease)瓣膜的样本相比,观察到类似的低磷脂水平和皮下植入物的类似低钙化水平,但从 FREE 处理的样本中提取的醛含量最低(P<.01)。在 5 个月时,幼年绵羊二尖瓣植入 FREE 处理的瓣膜具有出色的血液动力学行为,没有任何退化或钙化的迹象。

结论

新的 FREE 处理方法将充分的磷脂减少和醛中和与在无醛溶液中储存相结合。这种组合增强了抗钙化性能,从而可能提高组织的长期耐久性。

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