# Gamma-Camera Direct Imaging of the Plasma and On/Intra Cellular Distribution of the 99mTc-DPD-Fe3O4 Dual-Modality Contrast Agent in Peripheral Human Blood

**Authors:** Maria-Argyro Karageorgou, Adamantia Apostolopoulou, Mina-Ermioni Tomazinaki, Dragana Stanković, Efstathios Stiliaris, Penelope Bouziotis, Dimosthenis Stamopoulos

PMC · DOI: 10.3390/ma17020335 · Materials · 2024-01-09

## TL;DR

This study investigates how a dual-modality contrast agent distributes in human blood plasma and cells using gamma-camera imaging.

## Contribution

The novel use of gamma-camera imaging to directly visualize the distribution of a radiolabeled iron oxide contrast agent in human blood components.

## Key findings

- The gamma-camera directly imaged the distribution of 99mTc-DPD-Fe3O4 in plasma and cells.
- Centrifugation protocols helped distinguish the contrast agent's localization in blood components.
- The method enables clear identification of plasma versus cellular uptake of the contrast agent.

## Abstract

The radiolabeled iron oxide nanoparticles constitute an attractive choice to be used as dual-modality contrast agents (DMCAs) in nuclear medical diagnosis, due to their ability to combine the benefits of two imaging modalities, for instance single photon emission computed tomography (SPECT) with magnetic resonance imaging (MRI). Before the use of any DMCA, the investigation of its plasma extra- and on/intra cellular distribution in peripheral human blood is of paramount importance. Here, we focus on the in vitro investigation of the distribution of 99mTc-DPD-Fe3O4 DMCA in donated peripheral human blood (the ligand 2-3-dicarboxypropane-1-1-diphosphonic-acid is denoted as DPD). Initially, we described the experimental methods we performed for the radiosynthesis of the 99mTc-DPD-Fe3O4, the preparation of whole blood and blood plasma samples, and their incubation conditions with 99mTc-DPD-Fe3O4. More importantly, we employed a gamma-camera apparatus for the direct imaging of the 99mTc-DPD-Fe3O4-loaded whole blood and blood plasma samples when subjected to specialized centrifugation protocols. The direct comparison of the gamma-camera data obtained at the exact same samples before and after their centrifugation enabled us to clearly identify the distribution of the 99mTc-DPD-Fe3O4 in the two components, plasma and cells, of peripheral human blood.

## Full-text entities

- **Diseases:** injury to people or property (MESH:C000719191), toxicity (MESH:D064420), hemolysis (MESH:D006461)
- **Chemicals:** ROS (MESH:D017382), DPD (MESH:C036020), insulin (MESH:D007328), 99mTc-DPD-Fe3O4 (-), Fe3O4 (MESH:C000499), 99Mo (MESH:C000615515), 99mTc (MESH:D013667), EDTA (MESH:D004492)
- **Species:** Homo sapiens (human, species) [taxon 9606]

## Full text

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## Figures

4 figures with captions in the complete paper: https://tomesphere.com/paper/PMC10820996/full.md

## References

39 references — full list in the complete paper: https://tomesphere.com/paper/PMC10820996/full.md

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Source: https://tomesphere.com/paper/PMC10820996