Neomycin binding preserves extracellular matrix in bioprosthetic heart valves during in vitro cyclic fatigue and storage

被引:16
作者
Raghavan, Devanathan [1 ]
Starcher, Barry C. [2 ]
Vyavahare, Naren R. [1 ]
机构
[1] Clemson Univ, Dept Bioengn, CIRL, Clemson, SC 29634 USA
[2] Univ Texas Hlth Ctr Tyler, Dept Biochem, Tyler, TX 75710 USA
关键词
Glycosaminoglycans; Elastin; Glutaraldehyde; Heart valve; GLYCOSAMINOGLYCAN STABILIZATION; DEGRADING ENZYMES; ELASTIN; CALCIFICATION; DEGRADATION; CHALLENGES; MECHANICS; IMPLANTS; COLLAGEN; FAILURE;
D O I
10.1016/j.actbio.2008.11.004
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Bioprosthetic heart valve (BHV) cusps have a complex architecture consisting of an anisotropic arrangement of collagen, glycosaminoglycans (GAGs) and elastin. Glutaraldehyde (GLUT) is used as a fixative for all clinical BHV implants; however, it only stabilizes the collagen component of the tissue, and other components such as GAGs and elastin are lost from the tissue during processing, storage or after implantation. We have shown previously that the effectiveness of the chemical crosslinking can be increased by incorporating neomycin trisulfate, a hyaluronidase inhibitor, to prevent the enzyme-mediated GAG degradation. In the present study, we optimized carbodiimide-based GAG-targeted chemistry to incorporate neomycin into BHV cusps prior to conventional GLUT crosslinking. This crosslinking leads to enhanced preservation of GAGs during in vitro cyclic fatigue and storage. The neomycin group showed greater GAG retention after both 10 and 50 million accelerated fatigue cycles and after 1 year of storage in GLUT solution. Thus, additional binding of neomycin to the cusps prior to standard GLUT crosslinking could enhance tissue stability and thus heart valve durability. (C) 2008 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
引用
收藏
页码:983 / 992
页数:10
相关论文
共 37 条
[1]   Prosthetic heart valves: Types and echocardiographic evaluation [J].
Aslam, Ahmad Kamal ;
Aslam, Ahmad Faraz ;
Vasavada, Balendu C. ;
Khan, Ijaz A. .
INTERNATIONAL JOURNAL OF CARDIOLOGY, 2007, 122 (02) :99-110
[2]   BIOLOGICAL FACTORS AFFECTING LONG-TERM RESULTS OF VALVULAR HETEROGRAFTS [J].
CARPENTIER, A ;
LEMAIGRE, G ;
ROBERT, L ;
CARPENTIER, S ;
DUBOST, C ;
GERBODE, F .
JOURNAL OF THORACIC AND CARDIOVASCULAR SURGERY, 1969, 58 (04) :467-+
[3]   RELEVANCE OF IMMUNOLOGICAL REACTIONS FOR TISSUE FAILURE OF BIOPROSTHETIC HEART-VALVES [J].
DAHM, M ;
HUSMANN, M ;
MAYER, E ;
PRUFER, D ;
GROH, E ;
OELERT, H .
ANNALS OF THORACIC SURGERY, 1995, 60 (02) :S348-S352
[4]   Update of the European standards for inactive surgical implants in the area of heart valve prostheses [J].
Eichinger, Walter ;
Daebritz, Sabine ;
Lange, Ruediger .
EUROPEAN JOURNAL OF CARDIO-THORACIC SURGERY, 2007, 32 (05) :690-695
[5]   A colorimetric method for the determination of glucosamine and chondrosamine. [J].
Elson, LA ;
Morgan, WTJ .
BIOCHEMICAL JOURNAL, 1933, 27 :1824-1828
[6]   Reduced calcification of bioprostheses, cross-linked via an improved carbodiimide based method [J].
Everaerts, F ;
Torrianni, M ;
van Luyn, M ;
van Wachem, P ;
Feijen, J ;
Hendriks, M .
BIOMATERIALS, 2004, 25 (24) :5523-5530
[7]   Stress variations in the human aortic root and valve: The role of anatomic asymmetry [J].
Grande, KJ ;
Cochran, RP ;
Reinhall, PG ;
Kunzelman, KS .
ANNALS OF BIOMEDICAL ENGINEERING, 1998, 26 (04) :534-545
[8]   Structural requirements for stabilization of vascular elastin by polyphenolic tannins [J].
Isenburg, JC ;
Karamchandani, NV ;
Simionescu, DT ;
Vyavahare, NR .
BIOMATERIALS, 2006, 27 (19) :3645-3651
[9]   Tannic acid treatment enhances biostability and reduces calcification of glutaraldehyde fixed aortic wall [J].
Isenburg, JC ;
Simionescu, DT ;
Vyavahare, NR .
BIOMATERIALS, 2005, 26 (11) :1237-1245
[10]   Elastin stabilization in cardiovascular implants: improved resistance to enzymatic degradation by treatment with tannic acid [J].
Isenburg, JC ;
Simionescu, DT ;
Vyavahare, NR .
BIOMATERIALS, 2004, 25 (16) :3293-3302