| Literature DB >> 32912214 |
Lucie Sancey1, Odile Sabido2,3, Zhiguo He3,4, Fabien Rossetti5, Alain Guignandon3,6, Valérie Bin2,3, Jean-Luc Coll7, Michèle Cottier2,3,8, François Lux5,9,10, Olivier Tillement5,9, Samuel Constant11,12, Christophe Mas12, Delphine Boudard13,14,15.
Abstract
Liquid deposit mimicking surface aerosolization in the airway is a promising strategy for targeting bronchopulmonary tumors with reduced doses of nanoparticle (NPs). In mimicking and studying such delivery approaches, the use of human in vitro 3D culture models can bridge the gap between 2D cell culture and small animal investigations. Here, we exposed airway epithelia to liquid-apical gadolinium-based AGuIX® NPs in order to determine their safety profile. We used a multiparametric methodology to investigate the NP's distribution over time in both healthy and tumor-bearing 3D models. AGuIX® NPs were able to target tumor cells in the absence of specific surface functionalization, without evidence of toxicity. Finally, we validated the therapeutic potential of this hybrid theranostic AGuIX® NPs upon radiation exposure in this model. In conclusion, 3D cell cultures can efficiently mimic the normal and tumor-bearing airway epitheliums, providing an ethical and accessible model for the investigation of nebulized NPs.Entities:
Keywords: 3D human healthy and tumor airway models; AGuIX® nanoparticles; Nanoparticle’s toxicity; Nanoparticle’s uptake; Tumor targeting
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Year: 2020 PMID: 32912214 PMCID: PMC7488087 DOI: 10.1186/s12951-020-00683-6
Source DB: PubMed Journal: J Nanobiotechnology ISSN: 1477-3155 Impact factor: 10.435