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Dual Labeling of Primary Cells with Fluorescent Gadolinium Oxide Nanoparticles. | LitMetric

Dual Labeling of Primary Cells with Fluorescent Gadolinium Oxide Nanoparticles.

Nanomaterials (Basel)

Institute of Applied Medical Engineering, Helmholtz Institute, Medical Faculty, RWTH Aachen University, 52074 Aachen, Germany.

Published: June 2023

AI Article Synopsis

  • The interest in using mesenchymal stromal cells for therapy is growing, leading to the need for better tracking methods for these cells.
  • A new protocol was developed to quickly synthesize a type of nanoparticle (GdO-dex-RB) that can be used for both fluorescence and MRI imaging of these cells.
  • In vitro experiments showed that these nanoparticles can be effectively internalized by specific cell types without harming their growth, making them a viable tool for tracking cell activity in research.

Article Abstract

The interest in mesenchymal stromal cells as a therapy option is increasing rapidly. To improve their implementation, location, and distribution, the properties of these must be investigated. Therefore, cells can be labeled with nanoparticles as a dual contrast agent for fluorescence and magnetic resonance imaging (MRI). In this study, a more efficient protocol for an easy synthesis of rose bengal-dextran-coated gadolinium oxide (GdO-dex-RB) nanoparticles within only 4 h was established. Nanoparticles were characterized by zeta potential measurements, photometric measurements, fluorescence and transmission electron microscopy, and MRI. In vitro cell experiments with SK-MEL-28 and primary adipose-derived mesenchymal stromal cells (ASC), nanoparticle internalization, fluorescence and MRI properties, and cell proliferation were performed. The synthesis of GdO-dex-RB nanoparticles was successful, and they were proven to show adequate signaling in fluorescence microscopy and MRI. Nanoparticles were internalized into SK-MEL-28 and ASC via endocytosis. Labeled cells showed sufficient fluorescence and MRI signal. Labeling concentrations of up to 4 mM and 8 mM for ASC and SK-MEL-28, respectively, did not interfere with cell viability and proliferation. GdO-dex-RB nanoparticles are a feasible contrast agent to track cells via fluorescence microscopy and MRI. Fluorescence microscopy is a suitable method to track cells in in vitro experiments with smaller samples.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10304197PMC
http://dx.doi.org/10.3390/nano13121869DOI Listing

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