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Volumn 21, Issue 1, 2004, Pages 133-146

Bone marrow stromal stem cells for repairing the skeleton

Author keywords

[No Author keywords available]

Indexed keywords

BONE;

EID: 10644274415     PISSN: 02648725     EISSN: 20465556     Source Type: Journal    
DOI: 10.1080/02648725.2004.10648052     Document Type: Article
Times cited : (7)

References (61)
  • 2
    • 0033793179 scopus 로고    scopus 로고
    • Bone marrow or peripheral blood as a source of stem cells for allogeneic transplants
    • Bacigalupo, A., Frassoni, F. and van Lint, M.T. (2000). Bone marrow or peripheral blood as a source of stem cells for allogeneic transplants. Current Opinion in Hematology7, 343–347
    • (2000) Current Opinion in Hematology7 , pp. 343-347
    • Bacigalupo, A.1    Frassoni, F.2    van Lint, M.T.3
  • 3
    • 0035499350 scopus 로고    scopus 로고
    • Stem cells in tissue engineering
    • Bianco, P. and Robey, P.G. (2001). Stem cells in tissue engineering. Nature414, 118–121
    • (2001) Nature414 , pp. 118-121
    • Bianco, P.1    Robey, P.G.2
  • 4
    • 0034988303 scopus 로고    scopus 로고
    • Bone marrow stromal stem cells: Nature, biology, and potential applications
    • Bianco, P., Riminucci, M., Gronthos, S. and Robey, P.G. (2001). Bone marrow stromal stem cells:nature, biology, and potential applications. Stem Cells19, 180–192
    • (2001) Stem Cells19 , pp. 180-192
    • Bianco, P.1    Riminucci, M.2    Gronthos, S.3    Robey, P.G.4
  • 5
    • 0010045614 scopus 로고    scopus 로고
    • Extension of lifespan by introduction of telomerase into normal human cells
    • Bodnar, A.G., Ouellette, M., Frolkis, M. et al. (1998). Extension of lifespan by introduction of telomerase into normal human cells. Science279, 349–352
    • (1998) Science279 , pp. 349-352
    • Bodnar, A.G.1    Ouellette, M.2    Frolkis, M.3
  • 9
    • 0033142312 scopus 로고    scopus 로고
    • Autologous bone marrow transplants to haematopoietic stem cell support widi peripheral blood stem cells: An historical perspective
    • Buckner, C.D. (1999). Autologous bone marrow transplants to haematopoietic stem cell support widi peripheral blood stem cells:an historical perspective. Journal of Hematotherapy8, 233–236
    • (1999) Journal of Hematotherapy8 , pp. 233-236
    • Buckner, C.D.1
  • 10
    • 0027402155 scopus 로고
    • Augmentation of the craniofacial skeleton with porous hydroxyapatite granules. Plastic Reconstruction Surgery91, 15–22
    • Byrd, H.S., Hobar, P.C. and Shewmake, K. (1993). Augmentation of the craniofacial skeleton with porous hydroxyapatite granules. Plastic Reconstruction Surgery91, 15–22, Discussion 23–26
    • (1993) Discussion , pp. 23-26
    • Byrd, H.S.1    Hobar, P.C.2    Shewmake, K.3
  • 11
    • 0018947660 scopus 로고
    • Characterization of human bone marrow fibroblast colony-forming cells (CFU-F) and their progeny
    • Castro-Malaspina, H., Gay, R.E., Resnick, G. et al. (1980). Characterization of human bone marrow fibroblast colony-forming cells (CFU-F) and their progeny. Blood56, 289–301
    • (1980) Blood56 , pp. 289-301
    • Castro-Malaspina, H.1    Gay, R.E.2    Resnick, G.3
  • 12
    • 0028198679 scopus 로고
    • Stabilization of short telomeres and telomerase activity accompany immortalization of Epstein-Barr virus-transformed human B lymphocytes
    • Counter, C.M., Botelho, F.M., Wang, P., Harley, C.B. and Bacchetti, S. (1994a). Stabilization of short telomeres and telomerase activity accompany immortalization of Epstein-Barr virus-transformed human B lymphocytes. Journal of Virology68, 3410–3414
    • (1994) Journal of Virology68 , pp. 3410-3414
    • Counter, C.M.1    Botelho, F.M.2    Wang, P.3    Harley, C.B.4    Bacchetti, S.5
  • 14
    • 0028938262 scopus 로고
    • Telomerase activity in normal leukocytes and in haematologic malignancies
    • Counter, C.M., Gupta, J., Harley, C., Leber, B. and Bacchetti, S. (1995). Telomerase activity in normal leukocytes and in haematologic malignancies. Blood85, 2315–2320
    • (1995) Blood85 , pp. 2315-2320
    • Counter, C.M.1    Gupta, J.2    Harley, C.3    Leber, B.4    Bacchetti, S.5
  • 17
    • 0030678549 scopus 로고    scopus 로고
    • Osf2/Cbfa1: A transcriptional activator of osteoblast differentiation
    • Ducy, P., Zhang, R., Geoffroy, V., Ridall, A.L. and Karsenty, G. (1997). Osf2/Cbfa1:a transcriptional activator of osteoblast differentiation. Cell89, 747–754
    • (1997) Cell89 , pp. 747-754
    • Ducy, P.1    Zhang, R.2    Geoffroy, V.3    Ridall, A.L.4    Karsenty, G.5
  • 18
    • 0016269155 scopus 로고
    • Stromal cells responsible for transferring the microenvironment of the haemopoietic tissues. Cloning in vitro and retransplantation in vivo
    • Friedenstein, A.J., Chailakhyan, R.K., Latsinik, N.V., Panasyuk, A.F. and Keiliss-Borok, I.V. (1974). Stromal cells responsible for transferring the microenvironment of the haemopoietic tissues. Cloning in vitro and retransplantation in vivo. Transplantation17, 331–340
    • (1974) Transplantation17 , pp. 331-340
    • Friedenstein, A.J.1    Chailakhyan, R.K.2    Latsinik, N.V.3    Panasyuk, A.F.4    Keiliss-Borok, I.V.5
  • 20
    • 0034614379 scopus 로고    scopus 로고
    • Stem cells: A new lease on life
    • Fuchs, E. and Segre, J.A. (2000). Stem cells:a new lease on life. Cell100, 143–155
    • (2000) Cell100 , pp. 143-155
    • Fuchs, E.1    Segre, J.A.2
  • 21
    • 0028966028 scopus 로고
    • The growth factor requirements of STRO-1-positive human bone marrow stromal precursors under serum-deprived conditions in vitro
    • Gronthos, S. and Simmons, P.J. (1995). The growth factor requirements of STRO-1-positive human bone marrow stromal precursors under serum-deprived conditions in vitro. Blood85, 929–940
    • (1995) Blood85 , pp. 929-940
    • Gronthos, S.1    Simmons, P.J.2
  • 24
    • 0038424780 scopus 로고    scopus 로고
    • Telomerase accelerates osteogenesis of bone marrow stromal stem cells by upregulation of CBFA1, osterix, and osteocalcin
    • Gronthos, S., Chen, S., Wang, C.-Y., Robey, P.G. and Shi, S. (2003a). Telomerase accelerates osteogenesis of bone marrow stromal stem cells by upregulation of CBFA1, osterix, and osteocalcin. Journal of Bone Mineral Research18, 716–722
    • (2003) Journal of Bone Mineral Research18 , pp. 716-722
    • Gronthos, S.1    Chen, S.2    Wang, C.-Y.3    Robey, P.G.4    Shi, S.5
  • 25
    • 0038664242 scopus 로고    scopus 로고
    • Molecular and cellular characterization of highly purified stromal stem cells derived from human bone marrow
    • Gronthos, S., Zannettino, A.C., Hay, S J. et al (2003b). Molecular and cellular characterization of highly purified stromal stem cells derived from human bone marrow. Journal of Cell Science 116, 1827–1835
    • (2003) Journal of Cell Science , vol.116 , pp. 1827-1835
    • Gronthos, S.1    Zannettino, A.C.2    Hay, S.J.3
  • 27
    • 0036046175 scopus 로고    scopus 로고
    • Ex vivo gene therapy with stromal cells transduced with a retroviral vector containing the BMP4 gene completely heals critical size calvarial defect in rats
    • Gysin, R., Wergedal, J.E., Sheng, M.H. et al. (2002). Ex vivo gene therapy with stromal cells transduced with a retroviral vector containing the BMP4 gene completely heals critical size calvarial defect in rats. Gene Therapy9, 991–999
    • (2002) Gene Therapy9 , pp. 991-999
    • Gysin, R.1    Wergedal, J.E.2    Sheng, M.H.3
  • 28
    • 0030152540 scopus 로고    scopus 로고
    • Porous ceramics as bone graft substitutes in long bone defects: A biomechanical, histological, and radiographic analysis
    • Johnson, K.D., Frierson, K.E., Keller, T.S. et al (1996). Porous ceramics as bone graft substitutes in long bone defects:a biomechanical, histological, and radiographic analysis. Journal of Orthopaedic Research14, 351–369
    • (1996) Journal of Orthopaedic Research14 , pp. 351-369
    • Johnson, K.D.1    Frierson, K.E.2    Keller, T.S.3
  • 29
    • 0030907440 scopus 로고    scopus 로고
    • Culture expanded canine mesenchymal stem cells possess osteochondrogenic potential in vivo and in vitro
    • Kadiyala, S., Young, R.G., Thiede, M. A. and Bruder, S.P. (1997). Culture expanded canine mesenchymal stem cells possess osteochondrogenic potential in vivo and in vitro. Cell Transplant6, 125–134
    • (1997) Cell Transplant6 , pp. 125-134
    • Kadiyala, S.1    Young, R.G.2    Thiede, M.A.3    Bruder, S.P.4
  • 30
    • 0028564951 scopus 로고
    • Specific association of human telomerase activity with immortal cells and cancer
    • Kim, N.W., Piatyszek, M.A., Prowse, K.R. et al. (1994). Specific association of human telomerase activity with immortal cells and cancer. Science266, 2011–2015
    • (1994) Science266 , pp. 2011-2015
    • Kim, N.W.1    Piatyszek, M.A.2    Prowse, K.R.3
  • 31
    • 17144469316 scopus 로고    scopus 로고
    • Autologous bone marrow stromal cells loaded onto porous hydroxyapatite ceramic accelerate bone repair in critical-size defects of sheep long bones
    • Kon, E., Muraglia, A., Corsi, A. et al. (2000). Autologous bone marrow stromal cells loaded onto porous hydroxyapatite ceramic accelerate bone repair in critical-size defects of sheep long bones. Journal of Biomedical Materials Research 49, 328–337
    • (2000) Journal of Biomedical Materials Research , vol.49 , pp. 328-337
    • Kon, E.1    Muraglia, A.2    Corsi, A.3
  • 32
    • 0030934605 scopus 로고    scopus 로고
    • Bone formation in vivo: Comparison of osteogenesis by transplanted mouse and human marrow stromal fibroblasts
    • Kresbach, P.H., Kuznetsov, S.A., Satomura, K., Emmons, R.V., Rowe, D.W. and Robey, P.G. (1997). Bone formation in vivo:comparison of osteogenesis by transplanted mouse and human marrow stromal fibroblasts. Transplantation63, 1059–1069
    • (1997) Transplantation63 , pp. 1059-1069
    • Kresbach, P.H.1    Kuznetsov, S.A.2    Satomura, K.3    Emmons, R.V.4    Rowe, D.W.5    Robey, P.G.6
  • 34
    • 0030763497 scopus 로고    scopus 로고
    • Single-colony derived strains of human marrow stromal fibroblasts form bone after transplantation in vivo
    • Kuznetsov, S.A., Kresbach, P.H., Satomura, K. et al. (1997). Single-colony derived strains of human marrow stromal fibroblasts form bone after transplantation in vivo. Journal of Bone Mineral Research12, 1335–1347
    • (1997) Journal of Bone Mineral Research12 , pp. 1335-1347
    • Kuznetsov, S.A.1    Kresbach, P.H.2    Satomura, K.3
  • 36
    • 0011356205 scopus 로고
    • Structure of the rat osteocalcin gene and regulation of vitamin D-dependent expression. Proceedings of the National Academy of Sciences of the United States of America86
    • Lian, J., Stewart, C., Puchacz, E. et al. (1989). Structure of the rat osteocalcin gene and regulation of vitamin D-dependent expression. Proceedings of the National Academy of Sciences of the United States of America86, 1143–1147
    • (1989) 1143–1147
    • Lian, J.1    Stewart, C.2    Puchacz, E.3
  • 37
    • 0032077625 scopus 로고    scopus 로고
    • Regional gene therapy with a BMP-2-producing murine stromal cell line induces heterotopic and orthotopic bone formation in rodents
    • Lieberman, J.R., Le, L.Q., Wu, L. et al. (1998). Regional gene therapy with a BMP-2-producing murine stromal cell line induces heterotopic and orthotopic bone formation in rodents. Journal of Orthopaedic Research16, 330–339
    • (1998) Journal of Orthopaedic Research16 , pp. 330-339
    • Lieberman, J.R.1    Le, L.Q.2    Wu, L.3
  • 39
    • 0025499909 scopus 로고
    • Regenerating bone in clinical periodontics
    • Mellonig, J.T. and Bowers, G.M. (1990). Regenerating bone in clinical periodontics. Journal of the American Dental Association121, 497–502
    • (1990) Journal of the American Dental Association121 , pp. 497-502
  • 40
    • 0030819894 scopus 로고    scopus 로고
    • Telomerase catalytic subunit homologues from fission yeast and human
    • Nakamura, T.M., Morin, G.B., Chapman, K.B. et al. (1997). Telomerase catalytic subunit homologues from fission yeast and human. Science277, 955–959
    • (1997) Science277 , pp. 955-959
    • Nakamura, T.M.1    Morin, G.B.2    Chapman, K.B.3
  • 41
    • 0037059614 scopus 로고    scopus 로고
    • The novel zinc finger-containing transcription factor osterix is required for osteoblast differentiation and bone formation
    • Nakashima, K., Zhou, X., Kunkel, G. et al. (2002). The novel zinc finger-containing transcription factor osterix is required for osteoblast differentiation and bone formation. Cell108, 17–29
    • (2002) Cell108 , pp. 17-29
    • Nakashima, K.1    Zhou, X.2    Kunkel, G.3
  • 42
    • 0024252149 scopus 로고
    • Stromal stem cells: Marrow-derived osteogenic precursors
    • Owen, M. and Friedenstein, A.J. (1988). Stromal stem cells:marrow-derived osteogenic precursors. Ciba Foundation Symposia 136, 42–60
    • (1988) Ciba Foundation Symposia , vol.136 , pp. 42-60
    • Owen, M.1    Friedenstein, A.J.2
  • 44
    • 0026544296 scopus 로고
    • Current concepts in the use of bone grafts in facial fractures. Basic science considerations
    • Phillips, J.H., Forrest, C.R. and Gruss, J.S. (1992). Current concepts in the use of bone grafts in facial fractures. Basic science considerations. Clinical Plastic Surgery19, 41–58
    • (1992) Clinical Plastic Surgery19 , pp. 41-58
    • Phillips, J.H.1    Forrest, C.R.2    Gruss, J.S.3
  • 45
    • 0033515827 scopus 로고    scopus 로고
    • Multilineage potential of adult human mesenchymal stem cells
    • Pittenger, M.F., Mackay, A.M., Beck, S.C. et al. (1999). Multilineage potential of adult human mesenchymal stem cells. Science284, 143–147
    • (1999) Science284 , pp. 143-147
    • Pittenger, M.F.1    Mackay, A.M.2    Beck, S.C.3
  • 46
    • 0030889354 scopus 로고    scopus 로고
    • Marrow stromal cells as stem cells for non-haematopoietic tissues
    • Prockop, D. J. (1997). Marrow stromal cells as stem cells for non-haematopoietic tissues. Science276, 71–74
    • (1997) Science276 , pp. 71-74
    • Prockop, D.J.1
  • 47
    • 0035253558 scopus 로고    scopus 로고
    • Repair of large bone defects with the use of autologous bone marrow stromal cells
    • Quarto, R., Mastrogiacomo, M., Cancedda, R. et al. (2001). Repair of large bone defects with the use of autologous bone marrow stromal cells. New England Journal of Medicine344, 385–386
    • (2001) New England Journal of Medicine344 , pp. 385-386
    • Quarto, R.1    Mastrogiacomo, M.2    Cancedda, R.3
  • 48
    • 0035746047 scopus 로고    scopus 로고
    • Tissue-engineered bone repair of sheep cranial defects with autologous bone marrow stromal cells. Journal of Craniofacial Surgery 12, 586–593
    • Shang, Q., Wang, Z., Liu, W., Shi, Y., Cui, L. and Cao, Y. (2001). Tissue-engineered bone repair of sheep cranial defects with autologous bone marrow stromal cells. Journal of Craniofacial Surgery 12, 586–593, Discussion 594–595
    • (2001) Discussion , pp. 594-595
    • Shang, Q.1    Wang, Z.2    Liu, W.3    Shi, Y.4    Cui, L.5    Cao, Y.6
  • 49
    • 0031010342 scopus 로고    scopus 로고
    • A survey of telomerase activity in human cancer
    • Shay, J.W. and Bacchetti, S. (1997), A survey of telomerase activity in human cancer. European Journal of Cancer 33, 787–791
    • (1997) European Journal of Cancer , vol.33 , pp. 787-791
    • Shay, J.W.1    Bacchetti, S.2
  • 50
    • 0042306316 scopus 로고    scopus 로고
    • Perivascular niche of postnatal mesenchymal stem cells in human bone marrow and dental pulp
    • Shi, S. and Gronthos, S. (2003). Perivascular niche of postnatal mesenchymal stem cells in human bone marrow and dental pulp. Journal of Bone Mineral Research 18, 696–704
    • (2003) Journal of Bone Mineral Research , vol.18 , pp. 696-704
    • Shi, S.1    Gronthos, S.2
  • 51
    • 0035984715 scopus 로고    scopus 로고
    • Bone formation by human postnatal bone marrow stromal stem cells is enhanced by telomerase expression
    • Shi, S., Gronthos, S., Chen, S. et al. (2002). Bone formation by human postnatal bone marrow stromal stem cells is enhanced by telomerase expression. Nature Biotechnology20, 587–591
    • (2002) Nature Biotechnology20 , pp. 587-591
    • Shi, S.1    Gronthos, S.2    Chen, S.3
  • 52
    • 0035984714 scopus 로고    scopus 로고
    • Telomerase expression extends the proliferative lifespan and maintains the osteogenic potential of human bone marrow stromal cells
    • Simonsen, J., Rosada, C., Serakinci, N. et al. (2002). Telomerase expression extends the proliferative lifespan and maintains the osteogenic potential of human bone marrow stromal cells. Nature Biotechnology20, 592–596
    • (2002) Nature Biotechnology20 , pp. 592-596
    • Simonsen, J.1    Rosada, C.2    Serakinci, N.3
  • 53
    • 0032809980 scopus 로고    scopus 로고
    • Further characterization of cells expressing STRO-1 in cultures of adult human bone marrow stromal cells
    • Stewart, K., Walsh, S., Screen, J. et al. (1999). Further characterization of cells expressing STRO-1 in cultures of adult human bone marrow stromal cells. Journal of Bone Mineral Research14, 1345–1356
    • (1999) Journal of Bone Mineral Research14 , pp. 1345-1356
    • Stewart, K.1    Walsh, S.2    Screen, J.3
  • 56
    • 0032567967 scopus 로고    scopus 로고
    • Reconstitution of telomerase activity in normal human cells leads to elongation of telomeres and extended replicative lifespan
    • Vaziri, H. and Benchimol, S. (1998). Reconstitution of telomerase activity in normal human cells leads to elongation of telomeres and extended replicative lifespan. Current Biology8, 279–282
    • (1998) Current Biology8 , pp. 279-282
    • Vaziri, H.1    Benchimol, S.2
  • 58
    • 0034614576 scopus 로고    scopus 로고
    • Stem cells: Units of development, units of regeneration, and units in evolution
    • Weissman, I.L. (2000). Stem cells:units of development, units of regeneration, and units in evolution. Cell100, 157–168
    • (2000) Cell100 , pp. 157-168
    • Weissman, I.L.1
  • 60
    • 0029808357 scopus 로고    scopus 로고
    • Telomerase activity in normal human epithelial cells
    • Yasumoto, S., Kunimura, C., Kikuchi, K. et al. (1996). Telomerase activity in normal human epithelial cells. Oncogene13, 433–439
    • (1996) Oncogene13 , pp. 433-439
    • Yasumoto, S.1    Kunimura, C.2    Kikuchi, K.3
  • 61
    • 0034925471 scopus 로고    scopus 로고
    • Reconstituting telomerase activity using the telomerase catalytic subunit prevents the telomere shorting and replicative senescence in human osteoblasts
    • Yudoh, K., Matsuno, H., Nakazawa, F., Katayama, R. and Kimura, T. (2001). Reconstituting telomerase activity using the telomerase catalytic subunit prevents the telomere shorting and replicative senescence in human osteoblasts. Journal of Bone Mineral Research16, 1453–1464
    • (2001) Journal of Bone Mineral Research16 , pp. 1453-1464
    • Yudoh, K.1    Matsuno, H.2    Nakazawa, F.3    Katayama, R.4    Kimura, T.5


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