IN-VITRO ENDOTHELIALIZATION OF COMMERCIALLY AVAILABLE HEART-VALVE BIOPROSTHESES WITH CULTURED ADULT HUMAN-CELLS

被引:29
作者
BENGTSSON, L
RADEGRAN, K
HAEGERSTRAND, A
机构
[1] Department of Thoracic Surgery, Karolinska Hospital, Stockholm
[2] Department of Anatomy, Karolinska Institute, Stockholm
关键词
ENDOTHELIUM; CELL CULTURE; HEART VALVE PROSTHESIS; XENOGRAFT; ARTIFICIAL ORGAN;
D O I
10.1016/1010-7940(93)90001-R
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
The possibility of improving the performance of heart valve bioprostheses by preendothelialization with autologous cells has been suggested. In this study we used cultured adult human vein endothelial cells to endothelialize cusps isolated from commercially available porcine valve bioprostheses. We also describe a method for primary endothelialization of the intact heart valve bioprosthesis. After detoxification of the glutaraldehyde, the cusps or valves were seeded at high density with cultured cells. To obtain an even distribution on the intact valve bioprosthesis, a device was designed which permits application of cells from different directions during rotation. Evaluation was performed by hematoxylin-eosin staining, scanning electron microscopy and immunohistochemistry of the von Willebrand factor and the human basement membrane constituent collagen IV. The endothelial cells were vital-stained during culture by the addition to the culture medium of carbocyanine dye. This made it possible to verify that the endothelium was derived from culture. A confluent lining of cultured endothelial cells in close proximity to a de novo formed basement membrane was observed on the isolated cusps 7 days after seeding. The intact heart valve bioprosthesis showed an even distribution of seeded cells with areas of cells spreading to confluency as evaluated after 24 h. However, 7 days after seeding only unspread and probably dead cells were observed.
引用
收藏
页码:393 / 398
页数:6
相关论文
共 26 条
[1]  
Bengtsson L., Ragnarsson B., Hregerstrand A., Lining ofviable and nonviable allo and xenogeneic cardiovascular tissue with cultured adult endothelium, J Thorac Cardiovasc Surg, (1993)
[2]  
Bevilacqua M., Pober J., Majeau G., Cotran R., Gimbrone M., Interleukin induces biosynthesis and cell surface expression of procoagulant activity in human vascular endothelial cells, J Exp Med, 160, pp. 618-623, (1984)
[3]  
Bortolotti U., Milan0 A., Mazzucco A., Valfre C., Russo R., Valente M., Schivazappa L., Thiene G., Gallucci V., Results of reoperation for primary tissue failure of porcine bioprostheses, J Thorac Cardiovasc Surg, 90, pp. 564-569, (1985)
[4]  
Eberl T., Siedler S., Schumacher B., Zilla P., Schlaudraff K., Faso1 R., Experimental in vitro endothelialization of cardiac valve leaflets, Ann Thorac Surg, 53, pp. 487-492, (1992)
[5]  
Emeis J., Koistra T., Interleukin I and lipopolysaccharide A induce an inhibitor of tissue type plasminogen activator in vivo and in cultured endothelial cells, J Exp Med, 163, pp. 1260-1266, (1986)
[6]  
Eybl E., Griesmacher A., Grimm M., Wolner E., Toxic effects of aldehydes released from fixed pericardium on bovine aortic endothelial cells, J Biomed Res, 23, pp. 1355-1365, (1989)
[7]  
Ferrans V., Boyce S., Billingham M., Jones M., Ischihara T., Roberts W., Calcilic deposits in porcine bioprostheses structure and pathogenesis, Am J Cardiol, 46, pp. 725-734, (1980)
[8]  
Frater R., Gong G., Hoffman D., Liao K., Endothelialcovering of biological artificial heart valves. Editorial, Ann Thorac Surg, 53, pp. 371-372, (1992)
[9]  
Gendler E., Gendler S., Nimni M., Toxic reactions evokedby glutaraldehyde-fixed pericardium and cardiac valve tissuebioprostheses, J Biomed Mater Res, 18, pp. 727-736, (1984)
[10]  
Goflin Y., Bactik M., Porcine aortic vs bovine pericardialvalves: A comparative study of unimplanted and from patientexplanted bioprostheses, Life Support Syst, 5, pp. 127-143, (1987)