Characterization of Adult Stem/Progenitor Cell Populations From Bone Marrow in a Three-Dimensional Collagen Gel Culture System

被引:16
作者
Claros, Silvia [1 ]
Rodriguez-Losada, Noela [2 ]
Cruz, Encarnacion [3 ]
Guerado, Enrique [3 ]
Becerra, Jose [1 ,4 ]
Andrades, Jose A. [1 ]
机构
[1] Univ Malaga, Fac Sci, Dept Cell Biol Genet & Physiol, Networking Biomed Res Ctr Bioengn Biomat & Nanome, E-29071 Malaga, Spain
[2] Virgen Victoria Univ Hosp, Heart Unit, Res Lab, Malaga, Spain
[3] Hosp Costa Sol, Div Orthopaed Surg & Traumatol, Marbella, Spain
[4] Univ Malaga, BIONAND, E-29071 Malaga, Spain
关键词
Stem/progenitor cells; Three-dimensional (3D) culture; Transforming growth factor-beta 1 (TGF-beta 1); Osteogenesis; Demineralized bone matrix; MESENCHYMAL STEM-CELLS; STROMAL CELLS; ENDOTHELIAL-CELLS; PROGENITOR CELLS; FUSION PROTEIN; IN-VITRO; DIFFERENTIATION; PLURIPOTENCY; EXPRESSION; BIOLOGY;
D O I
10.3727/096368912X636939
中图分类号
Q813 [细胞工程];
学科分类号
摘要
Stem cell transplantation therapy using mesenchymal stem cells (MSCs) is considered a useful strategy. Although MSCs are commonly isolated by exploiting their plastic adherence, several studies have suggested that there are other populations of stem and/or osteoprogenitor cells that are removed from primary culture during media replacement. Therefore, we developed a three-dimensional (3D) culture system in which adherent and nonadherent stem cells are selected and expanded. Here, we described the characterization of 3D culture-derived cell populations in vitro and the capacity of these cells to differentiate into hone and/or cartilage tissue when placed inside of demineralized bone matrix (DBM) cylinders, implanted subcutaneously into the backs of rat for 2, 4, and 8 weeks. Our results demonstrates that 3D culture cells were a heterogeneous population of uncommitted cells that express pluripotent-, hematopoietic-, mesenchymal-, and endothelial-specific markers in vitro and can undergo osteogenic differentiation in vivo.
引用
收藏
页码:2021 / 2032
页数:12
相关论文
共 57 条
[1]   Comparison of human skeletal myoblasts and bone marrow-derived CD133+ progenitors for the repair of infarcted myocardium [J].
Agbulut, O ;
Vandervelde, S ;
Al Attar, N ;
Larghero, J ;
Ghostine, S ;
Léobon, B ;
Robidel, E ;
Borsani, P ;
Le Lorc'h, M ;
Bissery, A ;
Chomienne, C ;
Bruneval, P ;
Marolleau, JP ;
Vilquin, JT ;
Hagège, A ;
Samuel, JL ;
Menasché, P .
JOURNAL OF THE AMERICAN COLLEGE OF CARDIOLOGY, 2004, 44 (02) :458-463
[2]  
Amrani David L, 2003, Expert Rev Cardiovasc Ther, V1, P453, DOI 10.1586/14779072.1.3.453
[3]   A modified rhTGF-β1 and rhBMP-2 are effective in initiating a chondro-osseous differentiation pathway in bone marrow cells cultured in vitro [J].
Andrades, JA ;
Han, B ;
Nimni, ME ;
Ertl, DC ;
Simpkins, RJ ;
Arrabal, MP ;
Becerra, J .
CONNECTIVE TISSUE RESEARCH, 2003, 44 (3-4) :188-197
[4]  
Andrades JA, 2001, INT J DEV BIOL, V45, P689
[5]   A recombinant human TGF-β1 fusion protein with collagen-binding domain promotes migration, growth, and differentiation of bone marrow mesenchymal cells [J].
Andrades, JA ;
Han, B ;
Becerra, J ;
Sorgente, N ;
Hall, FL ;
Nimni, ME .
EXPERIMENTAL CELL RESEARCH, 1999, 250 (02) :485-498
[6]   The Therapeutic Applications of Multipotential Mesenchymal/Stromal Stem Cells in Skeletal Tissue Repair [J].
Arthur, Agnieszka ;
Zannettino, Andrew ;
Gronthos, Stan .
JOURNAL OF CELLULAR PHYSIOLOGY, 2009, 218 (02) :237-245
[7]   Endothelial progenitor cells for postnatal vasculogenesis [J].
Asahara, T ;
Kawamoto, A .
AMERICAN JOURNAL OF PHYSIOLOGY-CELL PHYSIOLOGY, 2004, 287 (03) :C572-C579
[8]   Isolation of putative progenitor endothelial cells for angiogenesis [J].
Asahara, T ;
Murohara, T ;
Sullivan, A ;
Silver, M ;
vanderZee, R ;
Li, T ;
Witzenbichler, B ;
Schatteman, G ;
Isner, JM .
SCIENCE, 1997, 275 (5302) :964-967
[9]   A non-contact suspension culture approach to the culture of osteogenic cells derived from a CD49elow subpopulation of human bone marrow-derived cells [J].
Baksh, Dolores ;
Zandstra, Peter W. ;
Davies, John E. .
BIOTECHNOLOGY AND BIOENGINEERING, 2007, 98 (06) :1195-1208
[10]   Autologous human-derived bone marrow cells exposed to a novel TGF-β1 fusion protein for the treatment of critically sized tibial defect [J].
Becerra, Jose ;
Guerado, Enrique ;
Claros, Silvia ;
Alonso, Monica ;
Bertrand, Maria L. ;
Gonzalez, Carlos ;
Andrades, Jose A. .
REGENERATIVE MEDICINE, 2006, 1 (02) :267-278