Cite

Akintoye, S. O., Lam, T., Shi, S., Brahim, J., Collins, M. T., Robey, P. G. (2006). Skeletal site-specific characterization of orofacial and iliac crest human bone marrow stromal cells in same individuals. Bone, 38(6), 758-768.10.1016/j.bone.2005.10.02716403496Search in Google Scholar

Doerr, H. W., Cinatl, J., Stürmer, M., Rabenau, H. F. (2003). Prions and orthopedic surgery. Infection, 31(3), 163-171.10.1007/s15010-003-3108-312789474Search in Google Scholar

Dominici, M., Le Blanc, K., Mueller, I., Slaper-Cortenbach, I., Marini, F. C., Krause, D. S., Deans, R. J., Keating, A., Prockop, D. J., Horwitz, E. M. (2006). Minimal criteria for defining multipotent mesenchymal stromal cells. The International Society for Cellular Therapy position statement. Cytotherapy, 8(4), 315-317.Search in Google Scholar

Festy, F., Hoareau, L., Bes-Houtmann, S., Péquin, A. M., Gonthier, M. P., Munstun, A., Hoarau, J. J., Césari, M., Roche, R. (2005). Surface protein expression between human adipose tissue-derived stromal cells and mature adipocytes. Histochem. Cell Biol., 124(2), 113-121.10.1007/s00418-005-0014-z16032396Search in Google Scholar

Fina, L., Molgaard, H. V., Robertson, D., Bradley, N. J., Monaghan, P., Delia, D., Sutherland, D. R., Baker, M. A., Greaves, M. F. (1990). Expression of the CD34 gene in vascular endothelial cells. Blood, 75(12), 2417-2426.10.1182/blood.V75.12.2417.2417Search in Google Scholar

Fraser, J. K., Wulur, I., Alfonso, Z., Hedrick, M. H. (2006). Fat tissue: An underappreciated source of stem cells for biotechnology. Trends Biotechnol., 24(4), 150-154.10.1016/j.tibtech.2006.01.01016488036Search in Google Scholar

Fukuda, K. (2001). Development of regenerative cardiomyocytes from mesenchymal stem cells for cardiovascular tissue engineering. Artif. Organs, 25(3), 187-193.10.1046/j.1525-1594.2001.025003187.x11284885Search in Google Scholar

García-Olmo, D., García-Arranz, M., Herreros, D., Pascual, I., Peiro, C., Rodríguez-Montes, J. A. (2005). A phase I clinical trial of the treatment of Crohn's fistula by adipose mesenchymal stem cell transplantation. Dis. Colon. Rectum., 48(7), 1416-1423.10.1007/s10350-005-0052-615933795Search in Google Scholar

Gronthos, S., Franklin, D. M., Leddy, H. A., Robey, P. G., Storms, R. W., Gimble, J. M. (2001). Surface protein characterization of human adipose tissue-derived stromal cells. J. Cell. Physiol., 189(1), 54-63.10.1002/jcp.113811573204Search in Google Scholar

Handschel, J. G. K., Depprich, R. A., Kübler, N. R., Wiesmann, H. P., Ommerborn, M., Meyer, U. (2007). Prospects of micromass culture technology in tissue engineering. Head Face Med., 3, 4.10.1186/1746-160X-3-4178106617212823Search in Google Scholar

Kakudo, N., Shimotsuma, A., Kusumoto, K. (2007). Fibroblast growth factor-2 stimulates adipogenic differentiation of human adipose-derived stem cells. Biochem. Biophys. Res. Commun., 359(2), 239-244.10.1016/j.bbrc.2007.05.07017543283Search in Google Scholar

Kasten, P., Beyen, I., Egermann, M., Suda, A. J., Moghaddam, A. A., Zimmermann, G., Liginbühl, R. (2008). Instant stem cell therapy: Characterization and concentration of human mesenchymal stem cells in vitro. Eur. Cells Mater., 16, 47-55.10.22203/eCM.v016a0618946860Search in Google Scholar

Kern, S., Eichler, H., Stoeve, J., Klüter, H., Bieback, K. (2006) Comparative analysis of mesenchymal stem cells from bone marrow, umbilical cord, or adipose tissue. Stem Cells, 24(5), 1294-1301.10.1634/stemcells.2005-034216410387Search in Google Scholar

Kopen, G. C., Prockop, D. J., Phinney, D. G. (1999). Marrow stromal cells migrate throughout forebrain and cerebellum, and they differentiate into astrocytes after injection into neonatal mouse brains. Proc. Natl. Acad. Sci. USA, 96(19), 10711-10716.10.1073/pnas.96.19.107111794810485891Search in Google Scholar

Kuznetsov, S. A., Mankani, M. H., Robey, P. G. (2000) Effect of serum on human bone marrow stromal cells: Ex vivo expansion and in vivo bone formation. Transplantation, 70(12), 1780-1787.10.1097/00007890-200012270-0001811152111Search in Google Scholar

Lee, K. D., Kuo, T. K. C., Whang-Peng, J., Chung, Y. F., Lin, C. T., Chou, S. H., Chen, J. R., Chen, Y. P. Lee, O. K. S. (2004). In vitro hepatic differentiation of human mesenchymal stem cells. Hepatology, 40(6), 1275-1284.10.1002/hep.2046915562440Search in Google Scholar

Lendeckel, S., Jödicke, A., Christophis, P., Heidinger, K., Wolff, J., Fraser, J. K., Hedrick, M. K., Berthold, L., Howaldt, H. P. (2004). Autologous stem cells (adipose) and fibrin glue used to treat widespread traumatic calvarial defects: case report. J. Craniomaxillofac. Surg., 32(6), 370-373.10.1016/j.jcms.2004.06.00215555520Search in Google Scholar

Lennon, D., Haynesworth, S., Bruder, S., Jaiswal, N., Caplan, A. (1996). Human and animal mesenchymal progenitor cells from bone marrow: Identification of serum for optimal selection and proliferation. In Vitro Cell. Dev. Biol. Anim., 32(10), 602-611.10.1007/BF02724045Search in Google Scholar

Lev, R., Spicer, S. S. (1964). Specific staining of sulphate groups with alcian blue at low pH. J. Histochem. Cytochem., 12(4), 309.10.1177/12.4.30914187344Search in Google Scholar

McIntosh, K., Zvonic, S., Garrett, S., Mitchell, J. B., Floyd, E., Hammill, L., Kloster, A., Halvorsen, Y. D., Ting, J. P., Storms, R. W., Goh, B., Kilroy, G., Wu, X., Gimble, J. M. (2006). The immunogenicity of human adipose-derived cells: Temporal changes in vitro. Stem Cells, 24(5), 1246-1253.10.1634/stemcells.2005-023516410391Search in Google Scholar

Mizuno, N., Shiba, H., Ozeki, Y., Mouri, Y., Niitani, M., Inui, T., Hayashi, H., Suzuki, K., Tanaka, S., Kawaguchi, H., Kurihara, K. (2006). Human autologous serum obtained using a completely closed bag system as a substitute for foetal calf serum in human mesenchymal stem cell cultures. Cell Biol. Int., 30(6), 521-524.10.1016/j.cellbi.2006.01.01016616867Search in Google Scholar

Nimura, A., Muneta, T., Koga, H., Mochizuki, T., Suzuki, K., Makino, H., Umezawa, A., Sekiya, I. (2008). Increased proliferation of human synovial mesenchymal stem cells with autologous human serum. Comparisons with bone marrow mesenchymal stem cells and with fetal bovine serum. Arthritis Rheum., 58(2), 501-510.Search in Google Scholar

Pittenger, M. F., Mackay, A. M., Beck, S. C., Jaiswal, R. K., Douglas, R., Mosca, J. D., Moorman, M. A., Simonetti, D. W., Craig, S., Marshak, D. R. (1999). Multilineage potential of adult human mesenchymal stem cells. Science, 284(5411), 143-147.Search in Google Scholar

Rodriguez, A. M., Elabd, C., Amri, E. Z., Ailhaud, G., Dani, C. (2005). The human adipose tissue is a source of multipotent stem cells. Biochimie, 87(1), 125-128.10.1016/j.biochi.2004.11.00715733747Search in Google Scholar

Romanov, Y. A., Darevskaya, A. N., Merzlikina, N. V., Buravkova, L. B. (2005). Mesenchymal stem cells from human bone marrow and adipose tissue: Isolation, characterization, and differentiation potentialities. Bull. Exp. Biol. Med., 140(1), 138-143.10.1007/s10517-005-0430-z16254640Search in Google Scholar

Schwartz, R. E., Reyes, M., Koodie, L., Jiang, Y., Blackstad, M., Lund, T., Lenvik, T., Johnson, S., Hu, W. S., Verfaillie, C. M. (2002). Multipotent adult progenitor cells from bone marrow differentiate into functional hepatocyte-like cells. J. Clin. Invest., 109(10), 1291-1302.10.1172/JCI0215182Search in Google Scholar

Secco, M., Zucconi, E., Vieira, N. M., Fogaça, L. L. Q., Cerqueira, A., Carvalho, M. D. F., Jazedje, T., Okamoto, O. K., Muotri, A. R., Zatz, M. (2008). Multipotent stem cells from umbilical cord: Cord is richer than blood! Stem Cells, 26(1), 146-150.10.1634/stemcells.2007-038117932423Search in Google Scholar

Seo, M. J., Suh, S. Y., Bae, Y. C., Jung, J. S. (2005). Differentiation of human adipose stromal cells into hepatic lineage in vitro and in vivo. Biochem. Biophys. Res. Commun., 328(1), 258-264.10.1016/j.bbrc.2004.12.15815670778Search in Google Scholar

Shahdadfar, A., Frønsdal, K., Haug, T., Reinholt, F. P., Brinchmann, J. E. (2005). In vitro expansion of human mesenchymal stem cells: Choice of serum is a determinant of cell proliferation, differentiation, gene expression, and transcriptome stability. Stem Cells, 23(9), 1357-1366.10.1634/stemcells.2005-009416081661Search in Google Scholar

Spees, J. L., Gregory, C. A., Singh, H., Tucker, H. A., Peister, A., Lynch, P. J., Hsu, S. C., Smith, J., Prockop, D. J. (2004). Internalized antigens must be removed to prepare hypoimmunogenic mesenchymal stem cells for cell and gene therapy. Mol. Ther., 9(5), 747-756.10.1016/j.ymthe.2004.02.01215120336Search in Google Scholar

Taléns-Visconti, R., Bonora, A., Jover, R., Mirabet, V., Carbonell, F., Castell, J. V., Gómez-Lechón, M. J. (2006). Hepatogenic differentiation of human mesenchymal stem cells from adipose tissue in comparison with bone marrow mesenchymal stem cells. World J. Gastroenterol., 12(36), 5834-5845.10.3748/wjg.v12.i36.5834410066517007050Search in Google Scholar

Tapp, H., Hanley, E. N., Patt, J. C., Gruber, H. E. (2009). Adipose-derived stem cells: Characterization and current application in orthopaedic tissue repair. Exp. Biol. Med., 234(1), 1-9.10.3181/0805-MR-170Search in Google Scholar

Wakitani, S., Saito, T., Caplan, A. I. (1995). Myogenic cells derived from rat bone marrow mesenchymal stem cells exposed to 5-azacytidine. Muscle Nerve., 18(12), 1417-1426.10.1002/mus.8801812127477065Search in Google Scholar

Yamamoto, N., Isobe, M., Negishi, A., Yoshimasu, H., Shimokawa, H., Ohya, K., Amagasa, T., Kasugai, S. (2003). Effects of autologous serum on osteoblastic differentiation in human bone marrow cells. J. Med. Dent. Sci., 50(1), 63-69.Search in Google Scholar

Yoshimura, K., Sato, K., Aoi, N., Kurita, M., Hirohi, T., Harii, K. (2008). Cell-assisted lipotransfer for cosmetic breast augmentation: Supportive use of adipose-derived stem/stromal cells. Aesthetic Plast. Surg., 32(1), 48-55.10.1007/s00266-007-9019-4217501917763894Search in Google Scholar

Zuk, P. A., Zhu, M., Mizuno, H., Huang, J., Futrell, J. W., Katz, A. J., Benhaim, P., Lorenz, H. P., Hedrick, M. H. (2001). Multilineage cells from human adipose tissue: Implications for cell-based therapies. Tissue Eng., 7(2), 211-226.10.1089/10763270130006285911304456Search in Google Scholar

Zuk, P. A., Zhu, M., Ashjian, P., De Ugarte, D. A., Huang, J. I., Mizuno, H., Alfonso, Z. C., Fraser, J. K., Benhaim, P., Hedrick, M. H. (2002). Human adipose tissue is a source of multipotent stem cells. Mol. Biol. Cell., 13(12), 4279-4295.10.1091/mbc.e02-02-010513863312475952Search in Google Scholar

ISSN:
1407-009X
Language:
English
Publication timeframe:
6 times per year
Journal Subjects:
General Interest, Mathematics, General Mathematics