D-mannose-Coating of Maghemite Nanoparticles Improved Labeling of Neural Stem Cells and Allowed Their Visualization by ex vivo MRI after Transplantation in the Mouse Brain

Author:

Pongrac Igor M.1,Radmilović Marina Dobrivojević1,Ahmed Lada Brkić1,Mlinarić Hrvoje1,Regul Jan1,Škokić Siniša1,Babič Michal2,Horák Daniel2,Hoehn Mathias3,Gajović Srećko1

Affiliation:

1. University of Zagreb School of Medicine, Croatian Institute for Brain Research, Zagreb, Croatia

2. Institute of Macromolecular Chemistry, Academy of Sciences, Prague, Czech Republic

3. Max Planck Institute for Metabolism Research, In-vivo-NMR Laboratory, Cologne, Germany

Abstract

Magnetic resonance imaging (MRI) of superparamagnetic iron oxide-labeled cells can be used as a non-invasive technique to track stem cells after transplantation. The aim of this study was to (1) evaluate labeling efficiency of D-mannose-coated maghemite nanoparticles (D-mannose(γ-Fe2O3)) in neural stem cells (NSCs) in comparison to the uncoated nanoparticles, (2) assess nanoparticle utilization as MRI contrast agent to visualize NSCs transplanted into the mouse brain, and (3) test nanoparticle biocompatibility. D-mannose(γ-Fe2O3) labeled the NSCs better than the uncoated nanoparticles. The labeled cells were visualized by ex vivo MRI and their localization subsequently confirmed on histological sections. Although the progenitor properties and differentiation of the NSCs were not affected by labeling, subtle effects on stem cells could be detected depending on dose increase, including changes in cell proliferation, viability, and neurosphere diameter. D-mannose coating of maghemite nanoparticles improved NSC labeling and allowed for NSC tracking by ex vivo MRI in the mouse brain, but further analysis of the eventual side effects might be necessary before translation to the clinic.

Publisher

SAGE Publications

Subject

Transplantation,Cell Biology,Biomedical Engineering

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