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  4. Encapsulation in human and murine erythrocytes of the Synomag®-D-PEG-OMe tracer for MPI application
 
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Encapsulation in human and murine erythrocytes of the Synomag®-D-PEG-OMe tracer for MPI application

Citation Link: https://doi.org/10.15480/882.4998
Publikationstyp
Journal Article
Date Issued
2022
Sprache
English
Author(s)
Antonelli, Antonella  
Scarpa, Emanuele Salvatore  
Di Corato, Riccardo  
Abdalla, Pasant  
Thieben, Florian  orcid-logo
Grüttner, Cordula  
Knopp, Tobias  
Magnani, Mauro  
Institut
Biomedizinische Bildgebung E-5  
TORE-DOI
10.15480/882.4998
TORE-URI
http://hdl.handle.net/11420/13658
Journal
International journal on magnetic particle imaging  
Volume
8
Issue
1
Article Number
2209001
Citation
International Journal on Magnetic Particle Imaging 8 (1): 2209001 (2022)
Publisher DOI
10.18416/IJMPI.2022.2209001
Scopus ID
2-s2.0-85137414869
Publisher
Infinite Science Publishing
Recently, the potential of red blood cells (RBCs) loaded with superparamagnetic iron oxide (SPIO)-based nanoparti-cles as new blood-pool tracer material for the Magnetic Particle Imaging (MPI) has been investigated. It was shown that the encapsulation of SPIO-based contrast agents in the RBCs increase the circulation time in blood of these nanomaterials. However, not all iron oxide nanoparticles are eligible to the encapsulation into RBCs, depending on several factors such as dispersant agent nature, nanoparticle size and synthesis protocol. Therefore, we have recently started a program to identify those nanoparticles that can be potentially loaded with our method into RBCs. The goal is to produce biocompatible SPIO-RBCs carriers that can be used as new intravascular magnetic susceptible agents in biomedical applications, such as MRI and MPI. Here, we report the in vitro results obtained by using the Synomag®-D-PEG-OMe nanoparticle suspension (micromod Partikeltechnologie GmbH) with both human and murine red blood cells. MPS analysis showed that human Synomag®-D-PEG-OMe-loaded RBCs produced a signal that is weaker respect to the remarkable signal of ferucarbotran loaded-RBCs prepared at the same condition, but it is to be noted that the encapsulation efficiency of Synomag®-D-PEG-OMe into cells is lower compared to ferucarbotran nanoparticles.
DDC Class
004: Informatik
600: Technik
610: Medizin
Publication version
publishedVersion
Lizenz
https://creativecommons.org/licenses/by/4.0/
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