4.7 Article

Liposomes for PET and MR Imaging and for Dual Targeting (Magnetic Field/Glucose Moiety): Synthesis, Properties, and in Vivo Studies

Journal

MOLECULAR PHARMACEUTICS
Volume 14, Issue 2, Pages 406-414

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.molpharmaceut.6b00794

Keywords

PET; MRI; gallium; magnetic nanoparticles; liposomes; magnetic targeting; Warburg effect

Funding

  1. LabEx MiChem part of French state funds [ANR-11-IDEX-0004-02]

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We describe the potentiality of a new liposomal formulation enabling positron emission tomography (PET) and magnetic resonance MR() imaging. The bimodality is achieved by coupling a Ga-68-based radiotracer on the bilayer of magnetic liposomes. In order to enhance the targeting properties obtained under a permanent magnetic field, a sugar moiety was added in the lipid formulation. Two new phospholipids were synthesized, one with a specific chelator of Ga-68 (DSPE-PEG-NODAGA) and one with a glucose moiety (DSPE-PEG-glucose). The liposomes were produced according to a fast and safe process, with a high radiolabeling yield. MR and PET imaging were performed on mice bearing human glioblastoma tumors (U87MG) after iv injection. The accumulation of the liposomes in solid tumor is evidenced by MR imaging and the amount is evaluated in vivo and ex vivo according to PET imaging. An efficient magnetic targeting is achieved with these new magnetic liposomes.

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