Osteogenic and chondrogenic potential of biomembrane cells from the PMMA-segmental defect rat model

被引:34
作者
Gruber, Helen E. [1 ,2 ]
Riley, Frank E. [1 ]
Hoelscher, Gretchen L. [1 ]
Bayoumi, Essraa M. [1 ]
Ingram, Jane A. [1 ]
Ramp, Warren K. [3 ]
Bosse, Michael J. [1 ]
Kellam, James F. [1 ]
机构
[1] Carolinas Med Ctr, Dept Orthopaed Surg, Charlotte, NC 28203 USA
[2] Cannon Res, Carolinas Med Ctr, Charlotte, NC 28232 USA
[3] Hlth Res Grp, Rockbridge Baths, VA USA
关键词
biomembrane; stem cell differentiation; osteogenesis; chondrogenesis; tissue engineering; MESENCHYMAL STEM-CELLS; TISSUE GROWTH-FACTOR; MATRIX GLA PROTEIN; FRIZZLED-RELATED PROTEIN-1; CANCELLOUS BONE-GRAFT; GENE-EXPRESSION; OSTEOBLAST DIFFERENTIATION; SKELETAL DEVELOPMENT; CARTILAGE FORMATION; WNT/BETA-CATENIN;
D O I
10.1002/jor.22047
中图分类号
R826.8 [整形外科学]; R782.2 [口腔颌面部整形外科学]; R726.2 [小儿整形外科学]; R62 [整形外科学(修复外科学)];
学科分类号
摘要
A layer of cells (the biomembrane) has been identified in large segmental defects between bone and surgically placed methacrylate spacers or antibiotic-impregnated cement beads. We hypothesize that this contains a pluripotent stem cell population with potential valuable applications in orthopedic tissue engineering. Objectives using biomembranes harvested from rat segmental defects were to: (1) Culture biomembrane cells in specialized media to direct progenitor cells along bone or cartilage cell differentiation lineages; (2) evaluate harvested biomembranes for mesenchymal stem cell markers, and (3) define relevant gene expression patterns in harvested biomembranes using microarray analysis. Culture in osteogenic media produced mineralized nodules; culture in chondrogenic media produced masses containing chondroitin sulfate/sulfated proteoglycans. Molecular analysis of biomembrane cells versus control periosteum showed significant upregulation of key genes functioning in mesenchymal stem cell differentiation, development, maintenance, and proliferation. Results identified significant upregulation of WNT receptor signaling pathway genes and significant upregulation of BMP signaling pathway genes. Findings confirm that the biomembrane has a pluripotent stem cell population. The ability to heal large bone defects is clinically challenging, and novel tissue engineering uses of the biomembrane hold great promise in treating non-unions, open fractures with large bone loss and/or infections, and defects associated with tumor resection. (C) 2012 Orthopaedic Research Society. Published by Wiley Periodicals, Inc. J Orthop Res 30:11981212, 2012
引用
收藏
页码:1198 / 1212
页数:15
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