Cite

1. Shen, W.B., Plachez, C., Chan, A., Yarnell, D., Puche, A.C, Fishman, P.S., Yarowsky, P. (2013). Human neural progenitor cells retain viability, phenotype, proliferation, and lineage differentiation when labeled with a novel iron oxide nanoparticle, Molday ION Rhodamine B. International Journal of Nanomedicine 8, 4593–4600. PMid:24348036 PMCid:PMC3849141Search in Google Scholar

2. Daldrup-Link, H.E., Rudelius, M., Piontek, G., Rudelius, M., Piontek, G., Metz, S., Bräuer, R., Debus, G., Corot, C., Schlegel, J., Link, T. M., Peschel, C., Rummeny, E.J., Oostendorp, R.A. (2005). Migration of iron oxide-labeled human hematopoietic progenitor cells in a mouse model: in vivo monitoring with 1.5-T MR imaging equipment. Radiology 234, 197–205. https://doi.org/10.1148/radiol.2341031236 PMid:1561838210.1148/radiol.2341031236PMid:15618382Open DOISearch in Google Scholar

3. Bussolati, B., Camussi, G. (2006). Adult stem cells and renal repair. J Nephrol. 19, 706–709. PMid:17173241Search in Google Scholar

4. Henning, T.D., Wendland, M.F., Golovko, D., Sutton, E.J., Sennino, B., Malek, F., Bauer, J.S., McDonald, D.M., Daldrup-Link, H. (2009). Relaxation effects of ferucarbotran-labeled mesenchymal stem cells at 1.5T and 3T: discrimination of viable from lysed cells. Magn Reson Med. 62, 325–32. https://doi.org/10.1002/mrm.22011 PMid:19353670 PMCid:PMC293182310.1002/mrm.22011PMid:19353670PMCid:PMC2931823Open DOISearch in Google Scholar

5. Hoehn, M., Kustermann, E., Blunk, J., Wiedermann, D., Trapp, T., Wecker, S., Focking, M., Arnold, H., Hescheler, J., Fleischmann, B.K., Schwindt, W., Bührle, C. (2002). Monitoring of implanted stem cell migration in vivo: a highly resolved in vivo magnetic resonance imaging investigation of experimental stroke in rat. Proc Natl Acad Sci. 99, 16267–16272. https://doi.org/10.1073/pnas.242435499 PMid:12444255 PMCid:PMC13860010.1073/pnas.242435499PMid:12444255PMCid:PMC138600Open DOISearch in Google Scholar

6. Guzman, R., Uchida, N., Bliss, T.M., He, D., Christopherson, K.K., Stellwagen, D., Capela, A., Greve, J., Malenka, R.C., Moseley, M.E., Palmer, T.D., Steinberg, G.K. (2007). Long-term monitoring of transplanted human neural stem cells in developmental and pathological contexts with MRI. Proc Natl Acad Sci USA. 104 (24): 10211–10216. https://doi.org/10.1073/pnas.0608519104 PMid:17553967 PMCid:PMC189123510.1073/pnas.0608519104PMid:17553967PMCid:PMC1891235Open DOISearch in Google Scholar

7. Sykova, E., Jendelova, P. (2007). Migration, fate and in-vivo imaging of adult stem cells in the CNS. Cell Death Differ. 14, 1336–1342. https://doi.org/10.1038/sj.cdd.4402140 PMid:1739613010.1038/sj.cdd.4402140PMid:17396130Open DOISearch in Google Scholar

8. Addicott, B., Willman, M., Rodriguez, J., Padgett, K., Han, D., Berman, D., Hare, J.M., Kenyon, N.S. (2011). Mesenchymal stem cell labeling and in vitro MR characterization at 1.5T of new SPIO contrast agent: Molday ION Rhodamine B™ Contrast Media. Mol Imaging 6, 7 18. https://doi.org/10.1002/cmmi.396 PMid:20690161 PMCid:PMC441088110.1002/cmmi.396PMid:20690161PMCid:PMC4410881Open DOISearch in Google Scholar

9. Guercio, A., Marco, A. D., Casella, S., Cannella, V., Russotto, L., Purpari, G., Bella, S. D., Piccione, G. (2012). Production of canine mesenchymal stem cells from adipose tissue and their application in dogs with chronic osteoarthritis of the humeroradial joints. Cell Biol. Int. 36, 189-194. https://doi.org/10.1042/CBI20110304 PMid:2193685110.1042/CBI20110304PMid:21936851Open DOISearch in Google Scholar

10. Ren, Z.H., Wang, J.Y., Zou, C.L., Guan, Y.Q., Zhang, Y.A. (2011). Labeling of cynomolgus monkey bone marrow-derived mesenchymal stem cells for cell tracking by multimodality imaging. Sci China Life Sci. 54, 981–987. https://doi.org/10.1007/s11427-011-4239-x PMid:2217330310.1007/s11427-011-4239-xSearch in Google Scholar

11. Natalio, F., Wiese, S., Friedrich, N., Werner, P., Tahir, M.N. (2014). Localization and characterization of ferritin in Demospongiae: a possible role on spiculogenesis. Mar Drugs. 12 (8): 4659–4676. https://doi.org/10.3390/md12084659 PMid:25153764 PMCid:PMC414533610.3390/md12084659Search in Google Scholar

12. Nan, H., Huang, J., Li, H., Li. Q., Liu, D. (2013). Assessment of biological characteristics of adipose tissue derived stem cells co labeled with Molday ION Rhodamine B™ and green fluorescent protein in-vitro. Mol Med Rep. 8, 1446-1452. PMid:2406513810.3892/mmr.2013.1694Search in Google Scholar

13. Snedecor, C.W., Cochran, W.G. (1994). Statistical methods. 9th Ed., Iowa state University press, Ames, Iowa.Search in Google Scholar

14. Fan, J., Tan, Y., Jie, L., Wu, X., Yu, R., Zhang, M. (2013). Biological activity and magnetic resonance imaging of superparamagnetic iron oxide nanoparticles-labeled adipose-derived stem cells. Stem Cell Res Ther. 4, 44. https://doi.org/10.1186/scrt191 PMid:23618360 PMCid:PMC370694710.1186/scrt191PMid:23618360PMCid:PMC3706947Open DOISearch in Google Scholar

15. Schmidtke-Schrezenmeier, G., Urban, M., Musyanovych, A., Nder, V.M.A., Rojewski, M., Fekete, N., Menard, C., Deak, E., Tarte, K., Rasche, V., Landfester, K., Schrezenmeier, H. (2011). Labeling of mesenchymal stromal cells with iron oxide – poly (L-lactide) nanoparticles for magnetic resonance imaging: uptake, persistence, effects on cellular function and magnetic resonance imaging properties. Cytotherapy 13, 962–975. https://doi.org/10.3109/14653249.2011.571246 PMid:21492060 PMCid:PMC317214510.3109/14653249.2011.571246PMid:21492060PMCid:PMC3172145Open DOISearch in Google Scholar

16. Guo, R.M., Cao, N., Zhang, F., Wang, Y.R., Wen, X.H., Shen J., Shuai, X.T. (2012). Controllable labelling of stem cells with a novel superparamagnetic iron oxide–loaded cationic nanovesicle for MR imaging. Eur Radiol. 22 (11): 2328-2337. https://doi.org/10.1007/s00330-012-2509-z PMid:2265328410.1007/s00330-012-2509-zPMid:22653284Open DOISearch in Google Scholar

17. Gnanadevi, R., Geetha Ramesh, Kannan, T. A., Justin William, B., Sathyan G., Hayath Basha, S. (2016). In-vitro study of MIRB labeled ovine bone marrow derived mesenchymal stem cells by MRI Technique. International Journal of Livestock Research 6 (9): 38-48. https://doi.org/10.5455/ijlr.2016091708280310.5455/ijlr.20160917082803Open DOISearch in Google Scholar

18. Guthi, J.S., Yang, S.G., Huang, G., Li, S., Khemtong, C., Kessinger, C., Peyton, M., Minna, J., Brown, K.C., Gao, J. (2010). MRI-visible micellar nanomedicine for targeted drug delivery to lung cancer cells. Mol Pharm. 7, 32–40. https://doi.org/10.1021/mp9001393 PMid:19708690 PMCid:PMC289198310.1021/mp9001393PMid:19708690PMCid:PMC2891983Open DOISearch in Google Scholar

19. Li, L., Jiang, W., Luo, K., Song, H., Lan, F., Wu, Y., Gu, Z. (2013). Superparamagnetic iron oxide nanoparticlesas MRI contrast agents for non-invasive stem cell labeling and tracking. Theranostics 3 (8): 595-615. https://doi.org/10.7150/thno.5366 PMid:23946825 PMCid:PMC374160810.7150/thno.5366PMid:23946825PMCid:PMC3741608Open DOISearch in Google Scholar

20. Shapiro, E.M, Skrtic, S., Sharer, K., Hill, J. M., Dunbar, C. E., Koretsky, A.P. (2004). MRI detection of single particles for cellular imaging. Proc Natl Acad Sci. 101, 10901–10906. https://doi.org/10.1073/pnas.0403918101 PMid:15256592 PMCid:PMC50371710.1073/pnas.0403918101PMid:15256592PMCid:PMC503717Open DOISearch in Google Scholar

21. Salamon, J., Wicklein, D., Didié, M., Lange, C., Schumacher, U., Adam, G., Peldschus, K. (2014). Magnetic resonance imaging of single co-labeled mesenchymal stromal cells after intracardial injection in mice. Fortschr Röntgenstr. 186, 367–376. https://doi.org/10.1055/s-0034-1366097 PMid:2468316910.1055/s-0034-1366097PMid:24683169Open DOISearch in Google Scholar

eISSN:
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Language:
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Life Sciences, other, Medicine, Basic Medical Science, Veterinary Medicine