Redifferentiation of dedifferentiated human chondrocytes in high-density cultures

被引:248
作者
Schulze-Tanzil, G
de Souza, P
Castrejon, HV
John, T
Merker, HJ
Scheid, A
Shakibaei, M
机构
[1] Free Univ Berlin, Inst Anat, D-14195 Berlin, Germany
[2] Free Univ Berlin, Dept Trauma Surg, Med Ctr Benjamin Franklin, D-12200 Berlin, Germany
[3] Univ Zurich, Childrens Hosp, Dept Surg, Zurich, Switzerland
关键词
chondrocyte; high-density cultures; redifferentiation; dedifferentiation; collagen type II; human;
D O I
10.1007/s00441-002-0562-7
中图分类号
Q2 [细胞生物学];
学科分类号
071009 [细胞生物学]; 090102 [作物遗传育种];
摘要
High-density cultures are widely used as an in vitro model for studies of embryonic cartilage formation. In the present study we investigated the suitability of high-density cultures for the redifferentiation of dedifferentiated chondrocytes. When primary human chondrocytes were cultured in alginate beads, some cells emigrated into Petri dishes. These cells were cultured for one to eight passages (each passage lasting about 3 days) in monolayer culture. At each passage, monolayer cells were removed and allowed to grow in high-density cultures at the medium-air interface and subsequently investigated with morphological, immunolocalization and biochemical methods for the production of cartilage-specific markers, i.e. collagen type II and cartilage-specific proteoglycans. When such dedifferentiated chondrocytes from monolayer passages P1-P4 were introduced in high-density culture, they regained a chondrocyte phenotype and formed cartilage nodules surrounded by fibroblast-like cells. Cells were interconnected by typical gap junctions and after a few days in culturing produced cartilage-specific extracellular matrix, notably collagen type II and cartilage-specific proteoglycans. In contrast, cells taken from monolayer passages P5-P8 did not produce these chondrocyte-specific extracellular materials when grown in high-density culture. We conclude that the growth of dedifferentiated chondrocytes in high-density culture promotes their redifferentiation and reveals their chondrogenic potential. Such high-density cultures might serve as a model system to initiate and promote the redifferentiation of chondrocytes and to provide sufficient quantities of differentiated chondrocytes for autologous chondrocyte transplantation.
引用
收藏
页码:371 / 379
页数:9
相关论文
共 35 条
[1]
DEDIFFERENTIATED CHONDROCYTES REEXPRESS THE DIFFERENTIATED COLLAGEN PHENOTYPE WHEN CULTURED IN AGAROSE GELS [J].
BENYA, PD ;
SHAFFER, JD .
CELL, 1982, 30 (01) :215-224
[2]
TREATMENT OF DEEP CARTILAGE DEFECTS IN THE KNEE WITH AUTOLOGOUS CHONDROCYTE TRANSPLANTATION [J].
BRITTBERG, M ;
LINDAHL, A ;
NILSSON, A ;
OHLSSON, C ;
ISAKSSON, O ;
PETERSON, L .
NEW ENGLAND JOURNAL OF MEDICINE, 1994, 331 (14) :889-895
[3]
PROGRESSION AND RECAPITULATION OF THE CHONDROCYTE DIFFERENTIATION PROGRAM - CARTILAGE MATRIX PROTEIN IS A MARKER FOR CARTILAGE MATURATION [J].
CHEN, Q ;
JOHNSON, DM ;
HAUDENSCHILD, DR ;
GOETINCK, PF .
DEVELOPMENTAL BIOLOGY, 1995, 172 (01) :293-306
[4]
Transcriptional mechanisms of chondrocyte differentiation [J].
de Crombrugghe, B ;
Lefebvre, V ;
Behringer, RR ;
Bi, WM ;
Murakami, S ;
Huang, WD .
MATRIX BIOLOGY, 2000, 19 (05) :389-394
[5]
Chondrogenic differentiation of murine C3H10T1/2 multipotential mesenchymal cells: I. Stimulation by bone morphogenetic protein-2 in high-density micromass cultures [J].
Denker, AE ;
Haas, AR ;
Nicoll, SB ;
Tuan, RS .
DIFFERENTIATION, 1999, 64 (02) :67-76
[6]
LOCALIZATION OF BETA-1-INTEGRINS IN HUMAN CARTILAGE AND THEIR ROLE IN CHONDROCYTE ADHESION TO COLLAGEN AND FIBRONECTIN [J].
DURR, J ;
GOODMAN, S ;
POTOCNIK, A ;
VONDERMARK, H ;
VONDERMARK, K .
EXPERIMENTAL CELL RESEARCH, 1993, 207 (02) :235-244
[7]
BETA-1 INTEGRINS MEDIATE CHONDROCYTE INTERACTION WITH TYPE-I COLLAGEN, TYPE-II COLLAGEN, AND FIBRONECTIN [J].
ENOMOTO, M ;
LEBOY, PS ;
MENKO, AS ;
BOETTIGER, D .
EXPERIMENTAL CELL RESEARCH, 1993, 205 (02) :276-285
[8]
Bone morphogenetic protein signaling is required for maintenance of differentiated phenotype, control of proliferation, and hypertrophy in chondrocytes [J].
Enomoto-Iwamoto, M ;
Iwamoto, M ;
Mukudai, Y ;
Kawakami, Y ;
Nohno, T ;
Higuchi, Y ;
Takemoto, S ;
Ohuchi, H ;
Noji, S ;
Kurisu, K .
JOURNAL OF CELL BIOLOGY, 1998, 140 (02) :409-418
[9]
Chondrogenic differentiation of murine C3H10T1/2 multipotential mesenchymal cells: II. Stimulation by bone morphogenetic protein-2 requires modulation of N-cadherin expression and function [J].
Haas, AR ;
Tuan, RS .
DIFFERENTIATION, 1999, 64 (02) :77-89
[10]
Hall BK, 1995, INT J DEV BIOL, V39, P881