Related Content
Search Google Scholar for:
More Information
Related Jobs from ScienceCareers
|
|
Science 4 April 1997: Vol. 276. no. 5309, pp. 71 - 74 DOI: 10.1126/science.276.5309.71
|
|
Articles
Marrow Stromal Cells as Stem Cells for Nonhematopoietic Tissues
Darwin J. Prockop
Marrow stromal cells can be isolated from other cells in marrow by
their tendency to adhere to tissue culture plastic. The cells have many
of the characteristics of stem cells for tissues that can roughly be
defined as mesenchymal, because they can be differentiated in culture
into osteoblasts, chondrocytes, adipocytes, and even myoblasts.
Therefore, marrow stromal cells present an intriguing model for
examining the differentiation of stem cells. Also, they have several
characteristics that make them potentially useful for cell and gene
therapy.
The author is director of the Center for Gene Therapy, Allegheny
University of the Health Sciences, MCP-Hahnemann School of Medicine,
245 North 15 Street, Mail Stop 421, Philadelphia, PA 19102, USA.
E-mail: prockop{at}allegheny.edu
Read the Full Text
THIS ARTICLE HAS BEEN CITED BY OTHER ARTICLES:
- Prospective identification, isolation, and systemic transplantation of multipotent mesenchymal stem cells in murine bone marrow.
- S. Morikawa, Y. Mabuchi, Y. Kubota, Y. Nagai, K. Niibe, E. Hiratsu, S. Suzuki, C. Miyauchi-Hara, N. Nagoshi, T. Sunabori, et al. (2009)
J. Exp. Med.
206, 2483-2496
| Abstract »
| Full Text »
| PDF »
- Mesenchymal Stem Cells Derived from Dental Tissues vs. Those from Other Sources: Their Biology and Role in Regenerative Medicine.
- G.T.-J. Huang, S. Gronthos, and S. Shi (2009)
Journal of Dental Research
88, 792-806
| Abstract »
| Full Text »
| PDF »
- Distinct mesenchymal progenitor cell subsets in the adult human synovium.
- A. Karystinou, F. Dell'Accio, T. B. A. Kurth, H. Wackerhage, I. M. Khan, C. W. Archer, E. A. Jones, T. A. Mitsiadis, and C. De Bari (2009)
Rheumatology
48, 1057-1064
| Abstract »
| Full Text »
| PDF »
- Cytotoxicity Mediated by the Fas Ligand (FasL)-activated Apoptotic Pathway in Stem Cells.
- J. Mazar, M. Thomas, L. Bezrukov, A. Chanturia, G. Pekkurnaz, S. Yin, S. A. Kuznetsov, P. G. Robey, and J. Zimmerberg (2009)
J. Biol. Chem.
284, 22022-22028
| Abstract »
| Full Text »
| PDF »
- Mesenchymal Stem Cells for Craniofacial Tissue Regeneration: Designing Hydrogel Delivery Vehicles.
- C.N. Salinas and K.S. Anseth (2009)
Journal of Dental Research
88, 681-692
| Abstract »
| Full Text »
| PDF »
- Reactive oxygen species/oxidative stress contributes to progression of kidney fibrosis following transient ischemic injury in mice.
- J. Kim, Y. M. Seok, K.-J. Jung, and K. M. Park (2009)
Am J Physiol Renal Physiol
297, F461-F470
| Abstract »
| Full Text »
| PDF »
- The Small Molecule Phenamil Induces Osteoblast Differentiation and Mineralization.
- K. W. Park, H. Waki, W.-K. Kim, B. S. J. Davies, S. G. Young, F. Parhami, and P. Tontonoz (2009)
Mol. Cell. Biol.
29, 3905-3914
| Abstract »
| Full Text »
| PDF »
- In utero transplantation of adult bone marrow decreases perinatal lethality and rescues the bone phenotype in the knockin murine model for classical, dominant osteogenesis imperfecta.
- C. Panaroni, R. Gioia, A. Lupi, R. Besio, S. A. Goldstein, J. Kreider, S. Leikin, J. C. Vera, E. L. Mertz, E. Perilli, et al. (2009)
Blood
114, 459-468
| Abstract »
| Full Text »
| PDF »
- White Adipose Tissue Cells Are Recruited by Experimental Tumors and Promote Cancer Progression in Mouse Models.
- Y. Zhang, A. Daquinag, D. O. Traktuev, F. Amaya-Manzanares, P. J. Simmons, K. L. March, R. Pasqualini, W. Arap, and M. G. Kolonin (2009)
Cancer Res.
69, 5259-5266
| Abstract »
| Full Text »
| PDF »
- Effect of Transplantation of Bone Marrow-Derived Mesenchymal Stem Cells on Mice Infected with Prions.
- C.-H. Song, O. Honmou, N. Ohsawa, K. Nakamura, H. Hamada, H. Furuoka, R. Hasebe, and M. Horiuchi (2009)
J. Virol.
83, 5918-5927
| Abstract »
| Full Text »
| PDF »
- Free Bone Graft Attenuates Acute Rejection and in Combination with Cyclosporin A Leads to Indefinite Cardiac Allograft Survival.
- H. Wang, W. Ge, J. Arp, R. Zassoko, W. Liu, T. E. Ichim, J. Jiang, A. M. Jevnikar, and B. Garcia (2009)
J. Immunol.
182, 5970-5981
| Abstract »
| Full Text »
| PDF »
- Mesenchymally "stemming" angiogenesis.
- M. A. Matthay (2009)
Blood
113, 4131-4132
| Full Text »
| PDF »
- Concentration-dependent inhibition of angiogenesis by mesenchymal stem cells.
- K. Otsu, S. Das, S. D. Houser, S. K. Quadri, S. Bhattacharya, and J. Bhattacharya (2009)
Blood
113, 4197-4205
| Abstract »
| Full Text »
| PDF »
- Bortezomib induces osteoblast differentiation via Wnt-independent activation of {beta}-catenin/TCF signaling.
- Y.-W. Qiang, B. Hu, Y. Chen, Y. Zhong, B. Shi, B. Barlogie, and J. D. Shaughnessy Jr (2009)
Blood
113, 4319-4330
| Abstract »
| Full Text »
| PDF »
- C3a and C5a Are Chemotactic Factors for Human Mesenchymal Stem Cells, Which Cause Prolonged ERK1/2 Phosphorylation.
- I. U. Schraufstatter, R. G. DiScipio, M. Zhao, and S. K. Khaldoyanidi (2009)
J. Immunol.
182, 3827-3836
| Abstract »
| Full Text »
| PDF »
- Mobilisation of mesenchymal cells in cardiac patients: is intense exercise necessary?.
- A Lucia, A De La Rosa, M A. Silvan, L M Lopez-Mojares, A Boraita, M Perez, C Foster, J Garcia-Castro, and M Ramirez (2009)
Br. J. Sports Med.
43, 221-223
| Abstract »
| Full Text »
| PDF »
- Hey1 Basic Helix-Loop-Helix Protein Plays an Important Role in Mediating BMP9-induced Osteogenic Differentiation of Mesenchymal Progenitor Cells.
- K. A. Sharff, W.-X. Song, X. Luo, N. Tang, J. Luo, J. Chen, Y. Bi, B.-C. He, J. Huang, X. Li, et al. (2009)
J. Biol. Chem.
284, 649-659
| Abstract »
| Full Text »
| PDF »
- Progenitor cell therapies for traumatic brain injury: barriers and opportunities in translation.
- P. A. Walker, S. K. Shah, M. T. Harting, and C. S. Cox Jr (2009)
Dis. Model. Mech.
2, 23-38
| Abstract »
| Full Text »
| PDF »
- Interleukin-6 in the Bone Marrow Microenvironment Promotes the Growth and Survival of Neuroblastoma Cells.
- T. Ara, L. Song, H. Shimada, N. Keshelava, H. V. Russell, L. S. Metelitsa, S. G. Groshen, R. C. Seeger, and Y. A. DeClerck (2009)
Cancer Res.
69, 329-337
| Abstract »
| Full Text »
| PDF »
- Human multipotent stromal cells from bone marrow and microRNA: Regulation of differentiation and leukemia inhibitory factor expression.
- A. Z. Oskowitz, J. Lu, P. Penfornis, J. Ylostalo, J. McBride, E. K. Flemington, D. J. Prockop, and R. Pochampally (2008)
PNAS
105, 18372-18377
| Abstract »
| Full Text »
| PDF »
- A Rho Kinase/Myocardin-Related Transcription Factor-A-Dependent Mechanism Underlies the Sphingosylphosphorylcholine-Induced Differentiation of Mesenchymal Stem Cells Into Contractile Smooth Muscle Cells.
- E. S. Jeon, W. S. Park, M. J. Lee, Y. M. Kim, J. Han, and J. H. Kim (2008)
Circ. Res.
103, 635-642
| Abstract »
| Full Text »
| PDF »
- Bone Marrow Cell Transfer into Fetal Circulation Can Ameliorate Genetic Skin Diseases by Providing Fibroblasts to the Skin and Inducing Immune Tolerance.
- T. Chino, K. Tamai, T. Yamazaki, S. Otsuru, Y. Kikuchi, K. Nimura, M. Endo, M. Nagai, J. Uitto, Y. Kitajima, et al. (2008)
Am. J. Pathol.
173, 803-814
| Abstract »
| Full Text »
| PDF »
- Mesenchymal Progenitor Cell Research: Limitations and Recommendations.
- R. Summer and A. Fine (2008)
Proceedings of the ATS
5, 707-710
| Abstract »
| Full Text »
| PDF »
- Topical Implantation of Mesenchymal Stem Cells Has Beneficial Effects on Healing of Experimental Colitis in Rats.
- Y. Hayashi, S. Tsuji, M. Tsujii, T. Nishida, S. Ishii, H. Iijima, T. Nakamura, H. Eguchi, E. Miyoshi, N. Hayashi, et al. (2008)
J. Pharmacol. Exp. Ther.
326, 523-531
| Abstract »
| Full Text »
| PDF »
- A potential role for synovial fluid mesenchymal stem cells in ligament regeneration.
- D. McGonagle and E. Jones (2008)
Rheumatology
47, 1114-1116
| Full Text »
| PDF »
- Immunomodulation by Mesenchymal Stem Cells: A Potential Therapeutic Strategy for Type 1 Diabetes.
- R. Abdi, P. Fiorina, C. N. Adra, M. Atkinson, and M. H. Sayegh (2008)
Diabetes
57, 1759-1767
| Abstract »
| Full Text »
| PDF »
- Periostin, a Member of a Novel Family of Vitamin K-dependent Proteins, Is Expressed by Mesenchymal Stromal Cells.
- D. L. Coutu, J. H. Wu, A. Monette, G.-E. Rivard, M. D. Blostein, and J. Galipeau (2008)
J. Biol. Chem.
283, 17991-18001
| Abstract »
| Full Text »
| PDF »
- Neo-Organoid of Marrow Mesenchymal Stromal Cells Secreting Interleukin-12 for Breast Cancer Therapy.
- N. Eliopoulos, M. Francois, M.-N. Boivin, D. Martineau, and J. Galipeau (2008)
Cancer Res.
68, 4810-4818
| Abstract »
| Full Text »
| PDF »
- Neuroprotection and Immunomodulation With Mesenchymal Stem Cells in Chronic Experimental Autoimmune Encephalomyelitis.
- I. Kassis, N. Grigoriadis, B. Gowda-Kurkalli, R. Mizrachi-Kol, T. Ben-Hur, S. Slavin, O. Abramsky, and D. Karussis (2008)
Arch Neurol
65, 753-761
| Abstract »
| Full Text »
| PDF »
- Long-term In vitro Expansion Alters the Biology of Adult Mesenchymal Stem Cells.
- R. Izadpanah, D. Kaushal, C. Kriedt, F. Tsien, B. Patel, J. Dufour, and B. A. Bunnell (2008)
Cancer Res.
68, 4229-4238
| Abstract »
| Full Text »
| PDF »
- Targeting human CD34+ hematopoietic stem cells with anti-CD45 x anti-myosin light-chain bispecific antibody preserves cardiac function in myocardial infarction.
- T. C. Zhao, A. Tseng, N. Yano, Y. Tseng, P. A. Davol, R. J. Lee, L. G. Lum, and J. F. Padbury (2008)
J Appl Physiol
104, 1793-1800
| Abstract »
| Full Text »
| PDF »
- Variation in the bone morphogenetic protein-2 gene: effects on fat and lean body mass in young and elderly women.
- F. McGuigan, E. Larzenius, M. Callreus, P. Gerdhem, H. Luthman, and K. Akesson (2008)
Eur. J. Endocrinol.
158, 661-668
| Abstract »
| Full Text »
| PDF »
- Bone marrow-derived mesenchymal stem cells facilitate engineering of long-lasting functional vasculature.
- P. Au, J. Tam, D. Fukumura, and R. K. Jain (2008)
Blood
111, 4551-4558
| Abstract »
| Full Text »
| PDF »
- Topical transplantation of mesenchymal stem cells accelerates gastric ulcer healing in rats.
- Y. Hayashi, S. Tsuji, M. Tsujii, T. Nishida, S. Ishii, H. Iijima, T. Nakamura, H. Eguchi, E. Miyoshi, N. Hayashi, et al. (2008)
Am J Physiol Gastrointest Liver Physiol
294, G778-G786
| Abstract »
| Full Text »
| PDF »
- Human mesenchymal stem cells stimulated by TNF-{alpha}, LPS, or hypoxia produce growth factors by an NF{kappa}B- but not JNK-dependent mechanism.
- P. R. Crisostomo, Y. Wang, T. A. Markel, M. Wang, T. Lahm, and D. R. Meldrum (2008)
Am J Physiol Cell Physiol
294, C675-C682
| Abstract »
| Full Text »
| PDF »
- Specific plasma membrane protein phenotype of culture-amplified and native human bone marrow mesenchymal stem cells.
- B. Delorme, J. Ringe, N. Gallay, Y. Le Vern, D. Kerboeuf, C. Jorgensen, P. Rosset, L. Sensebe, P. Layrolle, T. Haupl, et al. (2008)
Blood
111, 2631-2635
| Abstract »
| Full Text »
| PDF »
- Basic Fibroblast Growth Factor-induced Neuronal Differentiation of Mouse Bone Marrow Stromal Cells Requires FGFR-1, MAPK/ERK, and Transcription Factor AP-1.
- H. Yang, Y. Xia, S. Q. Lu, T. W. Soong, and Z. W. Feng (2008)
J. Biol. Chem.
283, 5287-5295
| Abstract »
| Full Text »
| PDF »
- Regulation of Mesenchymal Stem Cell Osteogenic Differentiation by Glucocorticoid-induced Leucine Zipper (GILZ).
- W. Zhang, N. Yang, and X.-M. Shi (2008)
J. Biol. Chem.
283, 4723-4729
| Abstract »
| Full Text »
| PDF »
- Mesenchymal Stem Cells Are Recruited into Wounded Skin and Contribute to Wound Repair by Transdifferentiation into Multiple Skin Cell Type.
- M. Sasaki, R. Abe, Y. Fujita, S. Ando, D. Inokuma, and H. Shimizu (2008)
J. Immunol.
180, 2581-2587
| Abstract »
| Full Text »
| PDF »
- Identification of mesenchymal stem cells in aorta-gonad-mesonephros and yolk sac of human embryos.
- X.-Y. Wang, Y. Lan, W.-Y. He, L. Zhang, H.-Y. Yao, C.-M. Hou, Y. Tong, Y.-L. Liu, G. Yang, X.-D. Liu, et al. (2008)
Blood
111, 2436-2443
| Abstract »
| Full Text »
| PDF »
- Tetra- and hexavalent mannosides inhibit the pro-apoptotic, antiproliferative and cell surface clustering effects of concanavalin-A: Impact on MT1-MMP functions in marrow-derived mesenchymal stromal cells.
- S. Fortier, M. Touaibia, S. Lord-Dufour, J. Galipeau, R. Roy, and B. Annabi (2008)
Glycobiology
18, 195-204
| Abstract »
| Full Text »
| PDF »
- Human bone marrow mesenchymal stem cells in vivo.
- E. Jones and D. McGonagle (2008)
Rheumatology
47, 126-131
| Abstract »
| Full Text »
| PDF »
- Nonunions and the Potential of Stem Cells in Fracture-Healing.
- S. S. Tseng, M. A. Lee, and A. H. Reddi (2008)
J. Bone Joint Surg. Am.
90, 92-98
| Abstract »
| Full Text »
| PDF »
- Cellular Strategies for Enhancement of Fracture Repair.
- T. E. Patterson, K. Kumagai, L. Griffith, and G. F. Muschler (2008)
J. Bone Joint Surg. Am.
90, 111-119
| Abstract »
| Full Text »
| PDF »
- Late-Outgrowth Endothelial Cells Attenuate Intimal Hyperplasia Contributed by Mesenchymal Stem Cells After Vascular Injury.
- C.-H. Wang, W.-J. Cherng, N.-I Yang, L.-T. Kuo, C.-M. Hsu, H.-I Yeh, Y.-J. Lan, C.-H. Yeh, and W. L. Stanford (2008)
Arterioscler Thromb Vasc Biol
28, 54-60
| Abstract »
| Full Text »
| PDF »
- Tumor Irradiation Increases the Recruitment of Circulating Mesenchymal Stem Cells into the Tumor Microenvironment.
- A. H. Klopp, E. L. Spaeth, J. L. Dembinski, W. A. Woodward, A. Munshi, R. E. Meyn, J. D. Cox, M. Andreeff, and F. C. Marini (2007)
Cancer Res.
67, 11687-11695
| Abstract »
| Full Text »
| PDF »
- Effect of Forced Expression of Basic Fibroblast Growth Factor in Human Bone Marrow-Derived Mesenchymal Stromal Cells.
- M. J. Go, C. Takenaka, and H. Ohgushi (2007)
J. Biochem.
142, 741-748
| Abstract »
| Full Text »
| PDF »
- Immunomodulatory properties of mesenchymal stromal cells.
- A. J. Nauta and W. E. Fibbe (2007)
Blood
110, 3499-3506
| Abstract »
| Full Text »
| PDF »
- Human Bone Marrow Derived Mesenchymal Stem Cells Do Not Undergo Transformation after Long-term In vitro Culture and Do Not Exhibit Telomere Maintenance Mechanisms.
- M. E. Bernardo, N. Zaffaroni, F. Novara, A. M. Cometa, M. A. Avanzini, A. Moretta, D. Montagna, R. Maccario, R. Villa, M. G. Daidone, et al. (2007)
Cancer Res.
67, 9142-9149
| Abstract »
| Full Text »
| PDF »
- In Vivo MR Tracking of Mesenchymal Stem Cells in Rat Liver after Intrasplenic Transplantation.
- S. Ju, G.-J. Teng, H. Lu, Y. Zhang, A. Zhang, F. Chen, and Y. Ni (2007)
Radiology
245, 206-215
| Abstract »
| Full Text »
| PDF »
- No alloantibodies against mesenchymal stromal cells, but presence of anti-fetal calf serum antibodies, after transplantation in allogeneic hematopoietic stem cell recipients.
- M. Sundin, O. Ringden, B. Sundberg, S. Nava, C. Gotherstrom, and K. Le Blanc (2007)
Haematologica
92, 1208-1215
| Abstract »
| Full Text »
| PDF »
- Hyperglycemia Enhances Adipogenic Induction of Lipid Accumulation: Involvement of Extracellular Signal-Regulated Protein Kinase 1/2, Phosphoinositide 3-Kinase/Akt, and Peroxisome Proliferator-Activated Receptor {gamma} Signaling.
- C. C. Chuang, R. S. Yang, K. S. Tsai, F. M. Ho, and S. H. Liu (2007)
Endocrinology
148, 4267-4275
| Abstract »
| Full Text »
| PDF »
- Brg1 chromatin remodeling factor is involved in cell growth arrest, apoptosis and senescence of rat mesenchymal stem cells.
- M. A. Napolitano, M. Cipollaro, A. Cascino, M. A. B. Melone, A. Giordano, and U. Galderisi (2007)
J. Cell Sci.
120, 2904-2911
| Abstract »
| Full Text »
| PDF »
- Infantile Hypophosphatasia: Transplantation Therapy Trial Using Bone Fragments and Cultured Osteoblasts.
- R. A. Cahill, D. Wenkert, S. A. Perlman, A. Steele, S. P. Coburn, W. H. McAlister, S. Mumm, and M. P. Whyte (2007)
J. Clin. Endocrinol. Metab.
92, 2923-2930
| Abstract »
| Full Text »
| PDF »
- Isolation of an Adult Mouse Lung Mesenchymal Progenitor Cell Population.
- R. Summer, K. Fitzsimmons, D. Dwyer, J. Murphy, and A. Fine (2007)
Am. J. Respir. Cell Mol. Biol.
37, 152-159
| Abstract »
| Full Text »
| PDF »
- Intrapulmonary Delivery of Bone Marrow-Derived Mesenchymal Stem Cells Improves Survival and Attenuates Endotoxin-Induced Acute Lung Injury in Mice.
- N. Gupta, X. Su, B. Popov, J. W. Lee, V. Serikov, and M. A. Matthay (2007)
J. Immunol.
179, 1855-1863
| Abstract »
| Full Text »
| PDF »
- Mesenchymal stromal cells, from indifferent spectators to principal actors. Are we going to witness a revolution in the scenario of allograft and immune-mediated disorders?.
- F. Locatelli, R. Maccario, and F. Frassoni (2007)
Haematologica
92, 872-877
| Full Text »
| PDF »
- Senescence-unrelated impediment of osteogenesis from Flk1+ bone marrow mesenchymal stem cells induced by total body irradiation and its contribution to long-term bone and hematopoietic injury.
- J. Ma, M. Shi, J. Li, B. Chen, H. Wang, B. Li, J. Hu, Y. Cao, B. Fang, and R. C. Zhao (2007)
Haematologica
92, 889-896
| Abstract »
| Full Text »
| PDF »
- Greater Bone Formation of Y2 Knockout Mice Is Associated with Increased Osteoprogenitor Numbers and Altered Y1 Receptor Expression.
- P. Lundberg, S. J. Allison, N. J. Lee, P. A. Baldock, N. Brouard, S. Rost, R. F. Enriquez, A. Sainsbury, M. Lamghari, P. Simmons, et al. (2007)
J. Biol. Chem.
282, 19082-19091
| Abstract »
| Full Text »
| PDF »
- A high-throughput siRNA library screen identifies osteogenic suppressors in human mesenchymal stem cells.
- Y. Zhao and S. Ding (2007)
PNAS
104, 9673-9678
| Abstract »
| Full Text »
| PDF »
- Bone allografts: WHAT THEY CAN OFFER AND WHAT THEY CANNOT.
- C. Delloye, O. Cornu, V. Druez, and O. Barbier (2007)
J Bone Joint Surg Br
89-B, 574-580
| Abstract »
| Full Text »
| PDF »
- Molecular profile of mouse stromal mesenchymal stem cells.
- S. Chateauvieux, J.-L. Ichante, B. Delorme, V. Frouin, G. Pietu, A. Langonne, N. Gallay, L. Sensebe, M. T. Martin, K. A. Moore, et al. (2007)
Physiol Genomics
29, 128-138
| Abstract »
| Full Text »
| PDF »
- Identification of resident and inflammatory bone marrow derived cells in the sclera by bone marrow and haematopoietic stem cell transplantation.
- T. Hisatomi, K.-h. Sonoda, F. Ishikawa, H. Qiao, T. Nakazawa, M. Fukata, T. Nakamura, K. Noda, S. Miyahara, M. Harada, et al. (2007)
Br J Ophthalmol
91, 520-526
| Abstract »
| Full Text »
| PDF »
- Mesenchymal stem cells alone or ex vivo gene modified with endothelial nitric oxide synthase reverse age-associated erectile dysfunction.
- T. J. Bivalacqua, W. Deng, M. Kendirci, M. F. Usta, C. Robinson, B. K. Taylor, S. N. Murthy, H. C. Champion, W. J. G. Hellstrom, and P. J. Kadowitz (2007)
Am J Physiol Heart Circ Physiol
292, H1278-H1290
| Abstract »
| Full Text »
| PDF »
- Brain protection using autologous bone marrow cell, metalloproteinase inhibitors, and metabolic treatment in cerebral ischemia.
- A. H. Baker, V. Sica, L. M. Work, S. Williams-Ignarro, F. de Nigris, L. O. Lerman, A. Casamassimi, A. Lanza, C. Schiano, M. Rienzo, et al. (2007)
PNAS
104, 3597-3602
| Abstract »
| Full Text »
| PDF »
- SSEA-4 identifies mesenchymal stem cells from bone marrow.
- E. J. Gang, D. Bosnakovski, C. A. Figueiredo, J. W. Visser, and R. C. R. Perlingeiro (2007)
Blood
109, 1743-1751
| Abstract »
| Full Text »
| PDF »
- Hematopoietic Stem-Cell Contribution to Ectopic Skeletogenesis.
- F. S. Kaplan, D. L. Glaser, E. M. Shore, R. J. Pignolo, M. Xu, Y. Zhang, D. Senitzer, S. J. Forman, and S. G. Emerson (2007)
J. Bone Joint Surg. Am.
89, 347-357
| Abstract »
| Full Text »
| PDF »
- Phosphate Stimulates Matrix Gla Protein Expression in Chondrocytes through the Extracellular Signal Regulated Kinase Signaling Pathway.
- M. Julien, D. Magne, M. Masson, M. Rolli-Derkinderen, O. Chassande, C. Cario-Toumaniantz, Y. Cherel, P. Weiss, and J. Guicheux (2007)
Endocrinology
148, 530-537
| Abstract »
| Full Text »
| PDF »
- Hematopoietic reconstitution by multipotent adult progenitor cells: precursors to long-term hematopoietic stem cells.
- M. Serafini, S. J. Dylla, M. Oki, Y. Heremans, J. Tolar, Y. Jiang, S. M. Buckley, B. Pelacho, T. C. Burns, S. Frommer, et al. (2007)
J. Exp. Med.
204, 129-139
| Abstract »
| Full Text »
| PDF »
- Identification, characterization and co-localization of label-retaining cell population in mouse endometrium with typical undifferentiated markers.
- I. Cervello, J.A. Martinez-Conejero, J.A. Horcajadas, A. Pellicer, and C. Simon (2007)
Hum. Reprod.
22, 45-51
| Abstract »
| Full Text »
| PDF »
- Sphingosylphosphorylcholine induces differentiation of human mesenchymal stem cells into smooth-muscle-like cells through a TGF-{beta}-dependent mechanism.
- E. S. Jeon, H. J. Moon, M. J. Lee, H. Y. Song, Y. M. Kim, Y. C. Bae, J. S. Jung, and J. H. Kim (2006)
J. Cell Sci.
119, 4994-5005
| Abstract »
| Full Text »
| PDF »
- Mesenchymal stem cells display coordinated rolling and adhesion behavior on endothelial cells.
- B. Ruster, S. Gottig, R. J. Ludwig, R. Bistrian, S. Muller, E. Seifried, J. Gille, and R. Henschler (2006)
Blood
108, 3938-3944
| Abstract »
| Full Text »
| PDF »
- Multipotent stromal cells from human marrow home to and promote repair of pancreatic islets and renal glomeruli in diabetic NOD/scid mice.
- R. H. Lee, M. J. Seo, R. L. Reger, J. L. Spees, A. A. Pulin, S. D. Olson, and D. J. Prockop (2006)
PNAS
103, 17438-17443
| Abstract »
| Full Text »
| PDF »
- Hematopoietic origin of fibroblasts/myofibroblasts: its pathophysiologic implications.
- M. Ogawa, A. C. LaRue, and C. J. Drake (2006)
Blood
108, 2893-2896
| Abstract »
| Full Text »
| PDF »
- Potential Hazards and Technical Considerations Associated With Myocardial Cell Transplantation Protocols for Ischemic Myocardial Syndrome.
- I. Ben-Dor, S. Fuchs, and R. Kornowski (2006)
J. Am. Coll. Cardiol.
48, 1519-1526
| Abstract »
| Full Text »
| PDF »
- Neuroprotection by PlGF gene-modified human mesenchymal stem cells after cerebral ischaemia.
- H. Liu, O. Honmou, K. Harada, K. Nakamura, K. Houkin, H. Hamada, and J. D. Kocsis (2006)
Brain
129, 2734-2745
| Abstract »
| Full Text »
| PDF »
- Adult stem cells in the treatment of autoimmune diseases.
- J. M. van Laar and A. Tyndall (2006)
Rheumatology
45, 1187-1193
| Abstract »
| Full Text »
| PDF »
- Differentiation of Adult Stem Cells Derived from Bone Marrow Stroma into Leydig or Adrenocortical Cells.
- T. Yazawa, T. Mizutani, K. Yamada, H. Kawata, T. Sekiguchi, M. Yoshino, T. Kajitani, Z. Shou, A. Umezawa, and K. Miyamoto (2006)
Endocrinology
147, 4104-4111
| Abstract »
| Full Text »
| PDF »
- Mobilisation of mesenchymal cells into blood in response to skeletal muscle injury.
- M Ramirez, A Lucia, F Gomez-Gallego, J Esteve-Lanao, A Perez-Martinez, C Foster, A L Andreu, M A Martin, L Madero, J Arenas, et al. (2006)
Br. J. Sports Med.
40, 719-722
| Abstract »
| Full Text »
| PDF »
- Implantation of Mesenchymal Stem Cells Overexpressing Endothelial Nitric Oxide Synthase Improves Right Ventricular Impairments Caused by Pulmonary Hypertension.
- S. Kanki-Horimoto, H. Horimoto, S. Mieno, K. Kishida, F. Watanabe, E. Furuya, and T. Katsumata (2006)
Circulation
114, I-181-I-185
| Abstract »
| Full Text »
| PDF »
- Recovery of Function Following Grafting of Human Bone Marrow-Derived Stromal Cells into the Injured Spinal Cord.
- B. T. Himes, B. Neuhuber, C. Coleman, R. Kushner, S. A. Swanger, G. C. Kopen, J. Wagner, J. S. Shumsky, and I. Fischer (2006)
Neurorehabil Neural Repair
20, 278-296
| Abstract »
| PDF »
- Mesenchymal stem cells reside in virtually all post-natal organs and tissues.
- L. d. S. Meirelles, P. C. Chagastelles, and N. B. Nardi (2006)
J. Cell Sci.
119, 2204-2213
| Abstract »
| Full Text »
| PDF »
- Erythropoietin Delivery by Genetically Engineered Bone Marrow Stromal Cells for Correction of Anemia in Mice with Chronic Renal Failure.
- N. Eliopoulos, R. F. Gagnon, M. Francois, and J. Galipeau (2006)
J. Am. Soc. Nephrol.
17, 1576-1584
| Abstract »
| Full Text »
| PDF »
- Human mesenchymal stem cells exert potent antitumorigenic effects in a model of Kaposi's sarcoma.
- A. Y. Khakoo, S. Pati, S. A. Anderson, W. Reid, M. F. Elshal, I. I. Rovira, A. T. Nguyen, D. Malide, C. A. Combs, G. Hall, et al. (2006)
J. Exp. Med.
203, 1235-1247
| Abstract »
| Full Text »
| PDF »
- High-level expression of porcine factor VIII from genetically modified bone marrow-derived stem cells.
- B. Gangadharan, E. T. Parker, L. M. Ide, H. T. Spencer, and C. B. Doering (2006)
Blood
107, 3859-3864
| Abstract »
| Full Text »
| PDF »
- Stem Cells as a Source of Regenerative Cardiomyocytes.
- K. Fukuda and S. Yuasa (2006)
Circ. Res.
98, 1002-1013
| Abstract »
| Full Text »
| PDF »
- Evidence supporting paracrine hypothesis for Akt-modified mesenchymal stem cell-mediated cardiac protection and functional improvement.
- M. Gnecchi, H. He, N. Noiseux, O. D. Liang, L. Zhang, F. Morello, H. Mu, L. G. Melo, R. E. Pratt, J. S. Ingwall, et al. (2006)
FASEB J
20, 661-669
| Abstract »
| Full Text »
| PDF »
- The Properties of Prospectively Isolated Mesenchymal Stem Cells from Man and Mouse.
- P. J. Simmons, B. Short, and N. Brouard (2006)
Am. Assoc. Cancer Res. Educ. Book
2006, 334-338
| Full Text »
| PDF »
- Xenobiotic Kidney Organogenesis from Human Mesenchymal Stem Cells Using a Growing Rodent Embryo.
- T. Yokoo, A. Fukui, T. Ohashi, Y. Miyazaki, Y. Utsunomiya, T. Kawamura, T. Hosoya, M. Okabe, and E. Kobayashi (2006)
J. Am. Soc. Nephrol.
17, 1026-1034
| Abstract »
| Full Text »
| PDF »
- Intracerebral peripheral blood stem cell (CD34+) implantation induces neuroplasticity by enhancing beta1 integrin-mediated angiogenesis in chronic stroke rats..
- W.-C. Shyu, S.-Z. Lin, M.-F. Chiang, C.-Y. Su, and H. Li (2006)
J. Neurosci.
26, 3444-3453
| Abstract »
| Full Text »
| PDF »
- Bone marrow progenitors in inflammation and repair: new vistas in respiratory biology and pathophysiology..
- J. A. Denburg and S. F. van Eeden (2006)
Eur. Respir. J.
27, 441-445
| Full Text »
| PDF »
|
|