Biodistribution of TNF-α-coated gold nanoparticles in an in vivo model system

Author:

Goel Raghav1,Shah Neha1,Visaria Rachana2,Paciotti Giulio F3,Bischof John C124

Affiliation:

1. Department of Biomedical Engineering, University of Minnesota, MN, USA

2. Department of Mechanical Engineering, University of Minnesota, MN, USA

3. CytImmune Sciences, Inc., Rockville, MD, USA

4. Department of Urologic Surgery, University of Minnesota Medical School, MN, USA.

Abstract

Aim: In this study, we describe the biodistribution of CYT-6091, a colloidal gold (Au)-based nanomedicine that targets the delivery of TNF-α to solid tumors. Materials & methods: A single intravenous injection of CYT-6091 coated with 5 µg TNF-α was given to human prostate tumor-bearing or naive (without tumor) nude mice. Tissues were harvested and analyzed at specific time points for Au nanoparticles by atomic emission spectroscopy and TNF-α by ELISA. Results: The two constituents of CYT-6091, TNF-α and Au, exhibited different behavior in blood, with TNF-α showing a faster decay than the Au nanoparticles. Between 0 and 4 h after injection, TNF-α showed a preferential accumulation in the tumor. Au was observed to accumulate preferentially in the liver between 4 and 12 h, and showed some clearance over time (4 months). Conclusion: These data suggest that CYT-6091 delivers TNF-α preferentially to the tumor and that upon TNF-α degradation, the liver takes up Au, which is cleared slowly over time.

Publisher

Future Medicine Ltd

Subject

Development,General Materials Science,Biomedical Engineering,Medicine (miscellaneous),Bioengineering

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