Attenuation of DNA damage in canine hearts preserved by continuous hypothermic perfusion

被引:8
作者
Fitton, TP
Barreiro, CJ
Bonde, PN
Wei, CM
Gage, F
Rodriguez, R
Conte, JV
机构
[1] Johns Hopkins Med Inst, Div Cardiac Surg, Baltimore, MD 21287 USA
[2] Johns Hopkins Med Inst, Dept Surg, Baltimore, MD 21287 USA
[3] Johns Hopkins Med Inst, Dept Pathol, Baltimore, MD 21287 USA
关键词
D O I
10.1016/j.athoracsur.2005.04.081
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Background. Continuous hypothermic perfusion is a novel cardiac preservation technique. Reactive oxygen species play a role in ischemia reperfusion injury and limit organ preservation. Oxidative stress mediates a DNA mismatch lesion (7, 8-dihydro-8-oxoguanine [8-oxo-GI), which is repaired by the enzymes MutY homologue (MYH), 8-oxo-G glycosylase (OGG1), and MutS homologue 2 (MSH2). We hypothesized that continuous hypothermic perfusion would allow for maintenance of cardiac function while attenuating myocardial DNA damage with respect to the current clinical practice of static preservation at 4 degrees C. Methods. In our canine orthotopic transplant model, donor hearts were harvested after echocardiograms, and hemodynamic studies were obtained and served as controls. The hearts were transplanted after 24 hours of continuous hypothermic perfusion or 4 hours of static preservation, and were studied for 6 hours. Quantification of 8-oxo-G lesions, MYH, OGG1, and MSH2 concentrations were performed on biopsies using immunohistochemistry. Results. Postimplant echocardiograms, completed in 7 continuously perfused and 8 statically preserved hearts, demonstrated good function and normal wall motion. Positive staining for 8-oxoG was markedly increased in the static preservation group. Staining density for MYH, OGG1, and MSH2 were significantly decreased in statically preserved hearts and equivalent between continuously perfused and control hearts. Conclusions. The DNA damage assayed by 8-oxoG was significantly increased in statically preserved versus continuously perfused hearts. The DNA repair enzymes MYH, OGG1, and MSH2 were also markedly decreased in the static preservation versus continuous hypothermic perfusion groups. Continuous hypothermic perfusion reduces oxidative damage and extends preservation without compromising function.
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页码:1812 / 1820
页数:9
相关论文
共 30 条
[1]   ENDOGENOUS MUTAGENS AND THE CAUSES OF AGING AND CANCER [J].
AMES, BN ;
GOLD, LS .
MUTATION RESEARCH, 1991, 250 (1-2) :3-16
[2]   Cloning of a human homolog of the yeast OGG1 gene that is involved in the repair of oxidative DNA damage [J].
Arai, K ;
Morishita, K ;
Shinmura, K ;
Kohno, T ;
Kim, SR ;
Nohmi, T ;
Taniwaki, M ;
Ohwada, S ;
Yokota, J .
ONCOGENE, 1997, 14 (23) :2857-2861
[3]   COMBINATION PERFUSION COLD-STORAGE FOR OPTIMUM CADAVER KIDNEY-FUNCTION AND UTILIZATION [J].
BELZER, FO ;
HOFFMANN, RM ;
RICE, MJ ;
SOUTHARD, JH .
TRANSPLANTATION, 1985, 39 (02) :118-121
[4]  
BETHENCOURT DM, 1981, J THORAC CARDIOV SUR, V81, P440
[5]  
CHENG KC, 1992, J BIOL CHEM, V267, P166
[6]  
Di Stefano S, 2003, J CARDIOVASC SURG, V44, P577
[7]  
FERRERA R, 1993, J HEART LUNG TRANSPL, V12, P463
[8]  
Gutteridge J. M. C., 1989, FREE RADICALS BIOL M
[9]  
HARDESTY RL, 1987, J THORAC CARDIOV SUR, V93, P11
[10]   Heart preservation for transplantation: Principles and strategies [J].
Jahania, MS ;
Sanchez, JA ;
Narayan, P ;
Lasley, RD ;
Mentzer, RM .
ANNALS OF THORACIC SURGERY, 1999, 68 (05) :1983-1987