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Labeling of Luciferase/eGFP-expressing bone marrow-derived stromal cells with fluorescent micron-sized iron oxide particles improves quantitative and qualitative multimodal imaging of cellular grafts in vivo.

Labeling of Luciferase/eGFP-expressing bone marrow-derived stromal cells with fluorescent micron-sized iron oxide particles improves quantitative and qualitative multimodal imaging of cellular grafts in vivo.

Authors :
Vocht, Nathalie
Bergwerf, Irene
Vanhoutte, Greetje
Daans, Jasmijn
Visscher, Geofrey
Chatterjee, Shyama
Pauwels, Patrick
Berneman, Zwi
Ponsaerts, Peter
Linden, Annemie
De Vocht, Nathalie
De Visscher, Geofrey
Van der Linden, Annemie
Source :
Molecular Imaging & Biology. Dec2011, Vol. 13 Issue 6, p1133-1145. 13p.
Publication Year :
2011

Abstract

<bold>Purpose: </bold>Development of multimodal imaging strategies is currently of utmost importance for the validation of preclinical stem cell therapy studies.<bold>Procedures: </bold>We performed a combined labeling strategy for bone marrow-derived stromal cells (BMSC) based on genetic modification with the reporter genes Luciferase and eGFP (BMSC-Luc/eGFP) and physical labeling with blue fluorescent micron-sized iron oxide particles (MPIO) in order to unambiguously identify BMSC localization, survival, and differentiation following engraftment in the central nervous system of mice by in vivo bioluminescence (BLI) and magnetic resonance imaging and postmortem histological analysis.<bold>Results: </bold>Using this combination, a significant increase of in vivo BLI signal was observed for MPIO-labeled BMSC-Luc/eGFP. Moreover, MPIO labeling of BMSC-Luc/eGFP allows for the improved identification of implanted cells within host tissue during histological observation.<bold>Conclusions: </bold>This study describes an optimized labeling strategy for multimodal stem cell imaging resulting in improved quantitative and qualitative detection of cellular grafts. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
15361632
Volume :
13
Issue :
6
Database :
Academic Search Index
Journal :
Molecular Imaging & Biology
Publication Type :
Academic Journal
Accession number :
67079332
Full Text :
https://doi.org/10.1007/s11307-011-0469-3