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猪主动脉壁柔韧性。新鲜样本与经Denacol固定样本与经戊二醛固定样本的比较。

Porcine aortic wall flexibility. Fresh vs Denacol fixed vs glutaraldehyde fixed.

作者信息

Zhou J, Quintero L J, Helmus M N, Lee C, Kafesjian R

机构信息

Edwards CVS Division, Baxter Healthcare Corporation, Irvine, California 92614, USA.

出版信息

ASAIO J. 1997 Sep-Oct;43(5):M470-5.

PMID:9360087
Abstract

It has been postulated that, in theory, stentless bioprosthetic heart valves provide improved hemodynamics and durability over their stented counterparts. A number of glutaraldehyde modified porcine stentless valves are currently either on the market or in clinical trials. Polyepoxy compound as an alternative cross-linking reagent to glutaraldehyde for bioprostheses has been reported to mitigate calcification. The present study was to investigate the effect of the fixation methods on porcine aortic wall flexibility. Ring specimens were selected from three groups of porcine roots: fresh, low pressure glutaraldehyde fixed, and low pressure Denacol (polyepoxy compound) fixed. Pulled between two rods on a tensile tester, a ring specimen's load-deformation relationship was recorded and analyzed to numerically compute the tissue modulus at low strains. The results showed that the Young's moduli were 0.113 +/- 0.036, 0.494 +/- 0.113, and 1.320 +/- 0.292 MPa (mean +/- SD, n = 10) for the fresh, Denacol fixed, and glutaraldehyde fixed aortic walls, respectively. The Denacol fixed aortic wall was more flexible than the glutaraldehyde fixed one. It was also found that the Denacol fixed aortic wall maintained most of the natural residual strains, while the glutaraldehyde fixed aortic wall did not.

摘要

据推测,理论上,无支架生物人工心脏瓣膜比有支架的同类瓣膜具有更好的血流动力学性能和耐久性。目前,一些经戊二醛改性的猪无支架瓣膜已上市或正在进行临床试验。据报道,作为生物假体中戊二醛的替代交联剂,聚环氧化合物可减轻钙化。本研究旨在探讨固定方法对猪主动脉壁柔韧性的影响。从三组猪主动脉根部选取环形标本:新鲜的、低压戊二醛固定的和低压Denacol(聚环氧化合物)固定的。在拉伸试验机上的两根杆之间拉伸时,记录并分析环形标本的载荷-变形关系,以数值计算低应变下的组织模量。结果显示,新鲜的、Denacol固定的和戊二醛固定的主动脉壁的杨氏模量分别为0.113±0.036、0.494±0.113和1.320±0.292MPa(平均值±标准差,n = 10)。Denacol固定的主动脉壁比戊二醛固定的更柔韧。还发现,Denacol固定的主动脉壁保留了大部分自然残余应变,而戊二醛固定的主动脉壁则没有。

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