BIOMECHANICAL AND ULTRASTRUCTURAL COMPARISON OF CRYOPRESERVATION AND A NOVEL CELLULAR EXTRACTION OF PORCINE AORTIC-VALVE LEAFLETS

被引:40
作者
COURTMAN, DW
PEREIRA, CA
OMAR, S
LANGDON, SE
LEE, JM
WILSON, GJ
机构
[1] TORONTO HOSP,DIV GEN,DIV CARDIOVASC SURG,TORONTO,ON M5G 2C4,CANADA
[2] UNIV TORONTO,CTR BIOMAT,TORONTO,ON,CANADA
[3] UNIV TORONTO,DEPT CELLULAR & MOLEC PATHOL,TORONTO,ON,CANADA
[4] UNIV TORONTO,DEPT SURG,TORONTO,ON,CANADA
[5] UNIV TORONTO,DEPT MET & SCI MAT,TORONTO,ON,CANADA
[6] HOSP SICK CHILDREN,DEPT PATHOL,TORONTO,ON M5G 1X8,CANADA
[7] HOSP SICK CHILDREN,DIV CARDIOVASC RES,TORONTO,ON M5G 1X8,CANADA
来源
JOURNAL OF BIOMEDICAL MATERIALS RESEARCH | 1995年 / 29卷 / 12期
关键词
D O I
10.1002/jbm.820291207
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Heart valve substitutes of biological origin often fail by degenerative mechanisms. Many authors have hypothesized that mechanical fatigue and structural degradation are instrumental to in vivo failure. Since the properties of the structural matrix at implantation may predetermine failure, we have examined the ultrastructure, fracture, mechanics, and uniaxial high-strain-rate viscoelastic properties of: (1) fresh, (2) cryopreserved, and (3) cellular extracted porcine aortic valve leaflets. The cellular extraction process is being developed in order to reduce immunological attack and calcification. Cryopreservation causes cellular disruption and necrotic changes throughout the tissue, whereas extraction removes all cells and lipid membranes. Both processes leave an intact collagen and elastin structural matrix and preserve the high-strain-rate viscoelastic characteristics of the fresh leaflets. Extraction does cause a 20% reduction in the fracture tension and increases tissue extensibility, with the percent strain at fracture rising to 45.3 +/- 4 (mean +/- SEM) from 31.5 +/- 3 for fresh leaflets. However, extraction does preserve matrix structure and mechanics over the physiological loading range. Glutaraldehyde fixation produces increased extensibility, increased elastic behavior, and, when applied to extracted leaflets, it causes a marked drop in fracture tension, to 50% of that for fresh leaflets. The combination of extraction and fixation may lead to early degenerative failure. The cellular extraction technique alone may be a useful alternative to glutaraldehyde fixation in preparing bioprosthetic heart valves. (C) 1995 John Wiley & Sons, Inc.
引用
收藏
页码:1507 / 1516
页数:10
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