Phenotypic Variations in Chondrocyte Subpopulations and Their Response to In Vitro Culture and External Stimuli

被引:35
作者
Coates, Emily E. [1 ]
Fisher, John P. [1 ]
机构
[1] Univ Maryland, Fischell Dept Bioengn, College Pk, MD 20742 USA
基金
美国国家科学基金会;
关键词
Chondrocyte; Zone; Phenotype; Mechanical stimulation; Growth factors; OLIGOMERIC MATRIX PROTEIN; HUMAN ARTICULAR-CARTILAGE; SUPERFICIAL ZONE PROTEIN; GENETICALLY-MODIFIED CHONDROCYTES; NITRIC-OXIDE PRODUCTION; BIOMECHANICAL PROPERTIES; FEMORAL CONDYLES; SUB-POPULATIONS; GENE-EXPRESSION; NOTCH RECEPTORS;
D O I
10.1007/s10439-010-0096-1
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Articular cartilage defects have limited capacity to self-repair, and cost society up to 60 billion dollars annually in both medical treatments and loss of working days. Recent developments in cartilage tissue engineering have resulted in many new products coming to market or entering clinical trials. However, there is a distinct lack of treatments which aim to recreate the complex zonal organization of articular cartilage. Cartilage tissue withstands repetitive strains throughout an individual's lifetime and provides frictionless movement between joints. The structure and composition of its intricately organized extracellular matrix varies with tissue depth to provide optimal resistance to loading, ensure ease of movement, and integrate with the subchondral bone. Each tissue zone is specially designed to resist the load it experiences, and maximize the tissue properties needed for its location. It is unlikely that a homogenous solution to tissue repair will be able to optimally restore the function of such a heterogeneous tissue. For zonal engineering of articular cartilage to become practical, maintenance of phenotypically stable zonal cell populations must be achieved. The chondrocyte phenotype varies considerably by zone, and it is the activity of these cells that help achieve the structural organization of the tissue. This review provides an examination of literature which has studied variations in cellular phenotype between cartilage zones. By doing so, we have identified critical differences between cell populations and highlighted areas of research which show potential in the field. Current research has made the morphological and metabolic variations between these cell populations clear, but an ideal way of maintaining these differences in vitro culture is yet to be established. Combinations of delivered growth factors, mechanical loading, and layered three-dimensional culture systems all show potential for achieving this goal. Furthermore, differentiation of progenitor cell populations into chondrocyte subpopulations may also hold promise for achieving large numbers of zonal chondrocytes. Success of the field lies in establishing methods of retaining phenotypically stable cell populations for in vitro culture.
引用
收藏
页码:3371 / 3388
页数:18
相关论文
共 97 条
[21]   QUANTITATION OF STRUCTURAL FEATURES CHARACTERIZING WEIGHT-BEARING AND LESS-WEIGHT-BEARING REGIONS IN ARTICULAR-CARTILAGE - A STEREOLOGICAL ANALYSIS OF MEDIAL FEMORAL CONDYLES IN YOUNG-ADULT RABBITS [J].
EGGLI, PS ;
HUNZIKER, EB ;
SCHENK, RK .
ANATOMICAL RECORD, 1988, 222 (03) :217-227
[22]   Systematic assessment of growth factor treatment on biochemical and biomechanical properties of engineered articular cartilage constructs [J].
Elder, B. D. ;
Athanasiou, K. A. .
OSTEOARTHRITIS AND CARTILAGE, 2009, 17 (01) :114-123
[23]   Gene expression of single articular chondrocytes [J].
Eleswarapu, Sriram V. ;
Leipzig, Nic D. ;
Athanasiou, Kyriacos A. .
CELL AND TISSUE RESEARCH, 2007, 327 (01) :43-54
[24]   Identification of subpopulations with characteristics of mesenchymal progenitor cells from human osteoarthritic cartilage using triple staining for cell surface markers [J].
Fickert, S ;
Fiedler, J ;
Brenner, RE .
ARTHRITIS RESEARCH & THERAPY, 2004, 6 (05) :R422-R432
[25]   Articular cartilage superficial zone protein (SZP) is homologous to megakaryocyte stimulating factor precursor and is a multifunctional proteoglycan with potential growth-promoting, cytoprotective, and lubricating properties in cartilage metabolism [J].
Flannery, CR ;
Hughes, CE ;
Schumacher, BL ;
Tudor, D ;
Aydelotte, MB ;
Kuettner, KE ;
Caterson, B .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1999, 254 (03) :535-541
[26]   Recombinant human osteogenic protein 1 is a potent stimulator of the synthesis of cartilage proteoglycans and collagens by human articular chondrocytes [J].
Flechtenmacher, J ;
Huch, K ;
Thonar, EJMA ;
Mollenhauer, JA ;
Davies, SR ;
Schmid, TM ;
Puhl, W ;
Sampath, TK ;
Aydelotte, MB ;
Kuettner, KE .
ARTHRITIS AND RHEUMATISM, 1996, 39 (11) :1896-1904
[27]   ZONAL DIFFERENCES IN NITRIC-OXIDE SYNTHESIS BY BOVINE CHRONDROCYTES EXPOSED TO INTERLEUKIN-1 [J].
FUKUDA, K ;
KUMANO, F ;
TAKAYAMA, M ;
SAITO, M ;
OTANI, K ;
TANAKA, S .
INFLAMMATION RESEARCH, 1995, 44 (10) :434-437
[28]   Adhesive properties of laminated alginate gels for tissue engineering of layered structures [J].
Gleghorn, Jason P. ;
Lee, Christopher S. D. ;
Cabodi, Mario ;
Stroock, Abraham D. ;
Bonassar, Lawrence J. .
JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART A, 2008, 85A (03) :611-618
[29]   Zonal uniformity in mechanical properties of the chondrocyte pericellular matrix: Micropipette aspiration of canine chondrons isolated by cartilage homogenization [J].
Guilak, F ;
Alexopoulos, LG ;
Haider, MA ;
Ting-Beall, HP ;
Setton, LA .
ANNALS OF BIOMEDICAL ENGINEERING, 2005, 33 (10) :1312-1318
[30]   Identification of superficial zone articular chondrocyte stem/progenitor cells [J].
Hattori, Shintaro ;
Oxford, Carol ;
Reddi, A. Hari .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2007, 358 (01) :99-103