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Tytuł pozycji:

In vivo magnetic resonance tracking of Feridex-labeled bone marrow-derived neural stem cells after autologous transplantation in rhesus monkey.

Tytuł:
In vivo magnetic resonance tracking of Feridex-labeled bone marrow-derived neural stem cells after autologous transplantation in rhesus monkey.
Autorzy:
Ke YQ; Department of Neurosurgery, Zhujiang Hospital, Southern Medical University, Guangzhou, PR China. />Hu CC
Jiang XD
Yang ZJ
Zhang HW
Ji HM
Zhou LY
Cai YQ
Qin LS
Xu RX
Źródło:
Journal of neuroscience methods [J Neurosci Methods] 2009 Apr 30; Vol. 179 (1), pp. 45-50. Date of Electronic Publication: 2009 Jan 20.
Typ publikacji:
Journal Article; Research Support, Non-U.S. Gov't
Język:
English
Imprint Name(s):
Original Publication: Amsterdam, Elsevier/North-Holland Biomedical Press.
MeSH Terms:
Stem Cell Transplantation*
Bone Marrow Cells/*cytology
Brain/*cytology
Magnetic Resonance Imaging/*methods
Neurons/*physiology
Stem Cells/*physiology
Animals ; Apoptosis ; Bone Marrow Cells/ultrastructure ; Brain/ultrastructure ; Cell Cycle ; Cell Survival ; Dextrans ; Ferrosoferric Oxide ; Immunohistochemistry ; Iron ; Macaca mulatta ; Magnetite Nanoparticles ; Microscopy, Electron, Scanning ; Microscopy, Electron, Transmission ; Neurons/cytology ; Neurons/ultrastructure ; Oxides ; Stem Cells/cytology ; Stem Cells/ultrastructure ; Stromal Cells/physiology ; Stromal Cells/ultrastructure ; Telomerase/metabolism ; Transplantation, Autologous
Substance Nomenclature:
0 (Dextrans)
0 (Magnetite Nanoparticles)
0 (Oxides)
E1UOL152H7 (Iron)
EC 2.7.7.49 (Telomerase)
G6N3J05W84 (ferumoxides)
XM0M87F357 (Ferrosoferric Oxide)
Entry Date(s):
Date Created: 20090512 Date Completed: 20090716 Latest Revision: 20161125
Update Code:
20240104
DOI:
10.1016/j.jneumeth.2009.01.007
PMID:
19428510
Czasopismo naukowe
Bone marrow stroma cells-derived neural stem cells (BMSCs-D-NSCs) transplantation is a promising strategy for the treatment of nervous system disorders. The development of a non-invasive method to follow the fate of BMSCs-D-NSCs in vivo is very important for the future application of this treatment. In this paper, we show for the first time, that BMSCs-D-NSCs from rhesus monkeys can be labeled in vitro with the superparamagnetic iron oxide (SPIO) contrast agent Feridex and Poly-L-lysine (PLL) without affecting morphology, cell cycle, telomerase activity, proliferation and differentiation ability of the labeled cells. Furthermore, when autografted into the striatum, these cells survived, differentiated and were incorporated into the brain, and could be reliably tracked using MRI, as confirmed by histological examination of the grafting sites with PKH(67) fluorescence. These results suggest that Feridex labeling of BMSCs-D-NSCs is feasible, efficient and safe for MRI tracing following autografting into the rhesus monkey nervous system.

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