ENGINEERING OF CARTILAGE TISSUE USING BIORESORBABLE POLYMER FLEECES AND PERFUSION CULTURE

被引:53
作者
BUJIA, J
SITTINGER, M
MINUTH, WW
HAMMER, C
BURMESTER, G
KASTENBAUER, E
机构
[1] UNIV MUNICH,DEPT OTOLARYNGOL HEAD & NECK SURG,MUNICH,GERMANY
[2] UNIV ERLANGEN NURNBERG,INST CLIN IMMUNOL & RHEUMATOL,W-8520 ERLANGEN,GERMANY
[3] UNIV REGENSBURG,INST ANAT,W-8400 REGENSBURG,GERMANY
[4] UNIV MUNICH,INST SURG RES,W-8000 MUNICH,GERMANY
[5] HUMBOLDT UNIV BERLIN,DEPT MED 3,BERLIN,GERMANY
关键词
CARTILAGE GRAFTING; CHONDROCYTES; TISSUE ENGINEERING;
D O I
10.3109/00016489509139316
中图分类号
R76 [耳鼻咽喉科学];
学科分类号
100213 ;
摘要
Replacement of injured or diseased skeletal tissues by either autograft or allograft cartilage has increased steadily during recent decades. The ideal method is to use autologous cartilage; however, this is extremely limited due to the scarcity of donor sites. We present a new approach to the in vitro formation of cartilage grafts for autologous grafting in reconstructive surgery. Bioresorbable polymer fleeces of polylactic acid were used as temporary cell carrier matrices to establish three-dimensional cultures of human chondrocytes. The polymer surface was coated with poly-L-lysine before cell integration. These cell-polymer tissue constructs were encapsulated with low melting point agarose and then placed in perfusion culture chambers to provide a constant supply of nutrients into the cultures. The culture medium consisted of Ham's F12 supplemented with 2% fetal calf serum and 50 mu g/ml ascorbic acid. The cell-polymer tissues were harvested and frozen for toloudine and alcian blue staining as well as electron microscopic examination after different periods of time in culture. A monoclonal antibody specific for collagen type II was used to characterize the cell phenotype. With this culture procedure chondrocytes maintained a differentiated phenotype with synthesis of collagen and proteoglycan. Collagen fibrils with clear cross-striation were evident in electron microscopic images. The results show that our organotypic cell culture method allows the in vitro production of bioartificial cartilage for transplantation.
引用
收藏
页码:307 / 310
页数:4
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