Redifferentiation of dedifferentiated chondrocytes and chondrogenesis of human bone marrow stromal cells via chondrosphere formation with expression profiling by large-scale cDNA analysis

被引:66
作者
Imabayashi, H
Mori, T
Gojo, S
Kiyono, T
Sugiyama, T
Irie, R
Isogai, T
Hata, J
Toyama, Y
Umezawa, A
机构
[1] Keio Univ, Sch Med, Dept Pathol, Shinjuku Ku, Tokyo 1608582, Japan
[2] Natl Res Inst Child Hlth & Dev, Tokyo, Japan
[3] Keio Univ, Sch Med, Dept Orthoped Surg, Tokyo, Japan
[4] Saitama Med Ctr, Dept Cardiovasc Surg, Kawagoe, Saitama, Japan
[5] Natl Canc Ctr, Inst Res, Div Virol, Tokyo, Japan
[6] Helix Res Inst, Kisarazu, Japan
关键词
dedifferentiation; redifferentiation; chondrocytes; marrow stroinal cells; regeneration; stem cells; transplantation;
D O I
10.1016/S0014-4827(03)00130-7
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Characterization of dedifferentiated chondrocytes (DECs) and mesenchymal stem cells capable of differentiating into chondrocytes is of biological and clinical interest. We isolated DECs and bone marrow stromal cells (BMSCs), H4-1 and H3-4, and demonstrated that the cells started to produce extracellular matrices, such as type II collagen and aggrecan, at an early stage of chondrosphere formation. Furthermore, cDNA sequencing of cDNA libraries constricted by the oligocapping method was performed to analyze difference in mRNA expression profiling between DECs and marrow stromal cells. Upon redifferentiation of DECs, cartilage-related extracellular matrix genes, such as those encoding leucine-rich small proteoglycans, cartilage oligomeric matrix protein, and chitinase 3-like 1 (cartilage glycoprotein-39), were highly expressed. Growth factors such as FGF7 and CTGF were detected at a high frequency in the growth stage of monolayer stromal cultures. By combining the expression profile and flow cytometry, we demonstrated that isolated stromal cells, defined by CD34(-), c-kit(-), and CD140alpha(-) (or low), have chondrogenic potential. The newly established human mesenchymal cells with expression profiling provide a powerful model for a study of chondrogenic differentiation and further understanding of cartilage regeneration in the means of redifferentiated DECs and BMSCs. (C) 2003 Elsevier Science (USA). All fights reserved.
引用
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页码:35 / 50
页数:16
相关论文
共 44 条
[1]  
ARCHER CW, 1990, J CELL SCI, V97, P361
[2]   Chondrogenic differentiation of mesenchymal stem cells from bone marrow: Differentiation-dependent gene expression of matrix components [J].
Barry, F ;
Boynton, RE ;
Liu, BS ;
Murphy, JM .
EXPERIMENTAL CELL RESEARCH, 2001, 268 (02) :189-200
[3]   INDEPENDENT REGULATION OF COLLAGEN TYPES BY CHONDROCYTES DURING THE LOSS OF DIFFERENTIATED FUNCTION IN CULTURE [J].
BENYA, PD ;
PADILLA, SR ;
NIMNI, ME .
CELL, 1978, 15 (04) :1313-1321
[4]   DEDIFFERENTIATED CHONDROCYTES REEXPRESS THE DIFFERENTIATED COLLAGEN PHENOTYPE WHEN CULTURED IN AGAROSE GELS [J].
BENYA, PD ;
SHAFFER, JD .
CELL, 1982, 30 (01) :215-224
[5]   REEXPRESSION OF CARTILAGE-SPECIFIC GENES BY DEDIFFERENTIATED HUMAN ARTICULAR CHONDROCYTES CULTURED IN ALGINATE BEADS [J].
BONAVENTURE, J ;
KADHOM, N ;
COHENSOLAL, L ;
NG, KH ;
BOURGUIGNON, J ;
LASSELIN, C ;
FREISINGER, P .
EXPERIMENTAL CELL RESEARCH, 1994, 212 (01) :97-104
[6]   Bone regeneration by implantation of purified, culture-expanded human mesenchymal stem cells [J].
Bruder, SP ;
Kurth, AA ;
Shea, M ;
Hayes, WC ;
Jaiswal, N ;
Kadiyala, S .
JOURNAL OF ORTHOPAEDIC RESEARCH, 1998, 16 (02) :155-162
[7]   CHANGES IN ACTIVITY AND AMOUNT OF ACTIVE ELONGATION-FACTOR 1-ALPHA IN AGING AND IMMORTAL HUMAN FIBROBLAST-CULTURES [J].
CAVALLIUS, J ;
RATTAN, SIS ;
CLARK, BFC .
EXPERIMENTAL GERONTOLOGY, 1986, 21 (03) :149-157
[8]  
Dennis J E, 1992, Cell Transplant, V1, P23
[9]   HUMAN KGF IS FGF-RELATED WITH PROPERTIES OF A PARACRINE EFFECTOR OF EPITHELIAL-CELL GROWTH [J].
FINCH, PW ;
RUBIN, JS ;
MIKI, T ;
RON, D ;
AARONSON, SA .
SCIENCE, 1989, 245 (4919) :752-755
[10]   INCREASE IN ABUNDANCE OF A TRANSCRIPT HYBRIDIZING TO ELONGATION FACTOR-I ALPHA DURING CELLULAR SENESCENCE AND QUIESCENCE [J].
GIORDANO, T ;
KLEINSEK, D ;
FOSTER, DN .
EXPERIMENTAL GERONTOLOGY, 1989, 24 (5-6) :501-513