Identification of markers to characterize and sort human articular chondrocytes with enhanced in vitro chondrogenic capacity

被引:118
作者
Grogan, Shawn Patrick
Barbero, Andrea
Diaz-Romero, Jose
Cleton-Jansen, Anne-Marie
Soeder, Stephan
Whiteside, Robert
Hogendoorn, Pancras C. W.
Farhadi, Jian
Aigner, Thomas
Martin, Ivan
Mainil-Varlet, Pierre
机构
[1] Univ Basel Hosp, Inst Surg Res & Hosp Management, CH-4031 Basel, Switzerland
[2] Univ Bern, Bern, Switzerland
[3] Leiden Univ, Med Ctr, Leiden, Netherlands
[4] Inst Pathol, Leipzig, Germany
来源
ARTHRITIS AND RHEUMATISM | 2007年 / 56卷 / 02期
关键词
D O I
10.1002/art.22408
中图分类号
R5 [内科学];
学科分类号
1002 [临床医学]; 100201 [内科学];
摘要
Objective. To identify markers associated with the chondrogenic capacity of expanded human articular chondrocytes and to use these markers for sorting of more highly chondrogenic subpopulations. Methods. The chondrogenic capacity of chondrocyte populations derived from different donors (n = 21) or different clonal strains from the same cartilage biopsy specimen (n = 21) was defined based on the glycosaminoglycan (GAG) content of tissues generated using a pellet culture model. Selected cell populations were analyzed by microarray and flow cytometry. In some experiments, cells were sorted using antibodies against molecules found to be associated with differential chondrogenic capacity and again assessed in pellet cultures. Results. Significance Analysis of Microarrays indicated that chondrocytes with low chondrogenic capacity expressed higher levels of insulin-like growth factor I and of catabolic genes (e.g., matrix metalloproteinase 2, aggrecanase 2), while chondrocytes with high chondrogenic capacity expressed higher levels of genes involved in cell-cell or cell-matrix interactions (e.g., CD49c, CD49f). Flow cytometry analysis showed that CD44, CD151, and CD49c were expressed at significantly higher levels in chondrocytes with higher chondrogenic capacity. Flow cytometry analysis of clonal chondrocyte strains indicated that CD44 and CD151 could also identify more chondrogenic clones. Chondrocytes sorted for brighter CD49c or CD44 signal expression produced tissues with higher levels of GAG per DNA (up to 1.4-fold) and type 11 collagen messenger RNA (up to 3.4-fold) than did unsorted cells. Conclusion. We identified markers that allow characterization of the capacity of monolayer-expanded chondrocytes to form in vitro cartilaginous tissue and enable enrichment for subpopulations with higher chondrogenic capacity. These markers might be used as a means to predict and possibly improve the outcome of cell-based cartilage repair techniques.
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收藏
页码:586 / 595
页数:10
相关论文
共 47 条
[1]
Identification of mesenchymal progenitor cells in normal and osteoarthritic human articular cartilage [J].
Alsalameh, S ;
Amin, R ;
Gemba, T ;
Lotz, M .
ARTHRITIS AND RHEUMATISM, 2004, 50 (05) :1522-1532
[2]
ARCHER CW, 1990, J CELL SCI, V97, P361
[3]
Age related changes in human articular chondrocyte yield, proliferation and post-expansion chondrogenic capacity [J].
Barbero, A ;
Grogan, S ;
Schäfer, D ;
Heberer, M ;
Mainil-Varlet, P ;
Martin, I .
OSTEOARTHRITIS AND CARTILAGE, 2004, 12 (06) :476-484
[4]
Plasticity of clonal populations of dedifferentiated adult human articular chondrocytes [J].
Barbero, A ;
Ploegert, S ;
Heberer, M ;
Martin, I .
ARTHRITIS AND RHEUMATISM, 2003, 48 (05) :1315-1325
[5]
Expansion on specific substrates regulates the phenotype and differentiation capacity of human articular chondrocytes [J].
Barbero, Andrea ;
Grogan, Shawn Patrick ;
Mainil-Varlet, Pierre ;
Martin, Ivan .
JOURNAL OF CELLULAR BIOCHEMISTRY, 2006, 98 (05) :1140-1149
[6]
DEDIFFERENTIATED CHONDROCYTES REEXPRESS THE DIFFERENTIATED COLLAGEN PHENOTYPE WHEN CULTURED IN AGAROSE GELS [J].
BENYA, PD ;
SHAFFER, JD .
CELL, 1982, 30 (01) :215-224
[7]
Characterization of nonexpanded mesenchymal progenitor cells from normal adult human bone marrow [J].
Boiret, N ;
Rapatel, C ;
Veyrat-Masson, R ;
Guillouard, L ;
Guérin, JJ ;
Pigeon, P ;
Descamps, S ;
Boisgard, S ;
Berger, MG .
EXPERIMENTAL HEMATOLOGY, 2005, 33 (02) :219-225
[8]
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
[9]
α3β1 integrin-CD151, a component of the cadherin-catenin complex, regulates PTPμ, expression and cell-cell adhesion [J].
Chattopadhyay, N ;
Wang, ZM ;
Ashman, LK ;
Brady-Kalnay, SM ;
Kreidberg, JA .
JOURNAL OF CELL BIOLOGY, 2003, 163 (06) :1351-1362
[10]
Cellular interactions and signaling in cartilage development [J].
DeLise, AM ;
Fischer, L ;
Tuan, RS .
OSTEOARTHRITIS AND CARTILAGE, 2000, 8 (05) :309-334