Genetically tailored magnetosomes used as MRI probe for molecular imaging of brain tumor

Abstract We investigate here the potential of single step production of genetically engineered magnetosomes, bacterial biogenic iron-oxide nanoparticles embedded in a lipid vesicle, as a new tailorable magnetic resonance molecular imaging probe. We demonstrate in vitro the specific binding and the s...

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Veröffentlicht in:Biomaterials 2017-03, Vol.121, p.167-178
Hauptverfasser: Boucher, M, Geffroy, F, Prévéral, S, Bellanger, L, Selingue, E, Adryanczyk-Perrier, G, Péan, M, Lefèvre, C.T, Pignol, D, Ginet, N, Mériaux, S
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Sprache:eng
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Zusammenfassung:Abstract We investigate here the potential of single step production of genetically engineered magnetosomes, bacterial biogenic iron-oxide nanoparticles embedded in a lipid vesicle, as a new tailorable magnetic resonance molecular imaging probe. We demonstrate in vitro the specific binding and the significant internalization into U87 cells of magnetosomes decorated with RGD peptide. After injection at the tail vein of glioblastoma-bearing mice, we evidence in the first 2 h the rapid accumulation of both unlabeled and functionalized magnetosomes inside the tumor by Enhanced Permeability and Retention effects. 24 h after the injection, a specific enhancement of the tumor contrast is observed on MR images only for RGD-labeled magnetosomes. Post mortem acquisition of histological data confirms MRI results with more magnetosomes found into the tumor treated with functionalized magnetosomes. This work establishes the first proof-of-concept of a successful bio-integrated production of molecular imaging probe for MRI.
ISSN:0142-9612
1878-5905
DOI:10.1016/j.biomaterials.2016.12.013