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Article Dans Une Revue Journal of Nanoparticle Research Année : 2012

Quantitative cellular uptake of double fluorescent core-shelled model submicronic particles

Delphine Boudard
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Laurence Marmuse
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Cédric Louis
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Michèle Cottier
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Résumé

The relationship between particles' physicochemical parameters, their uptake by cells and their degree of biological toxicity represent a crucial issue, especially for the development of new technologies such as fabrication of micro- and nanoparticles in the promising field of drug delivery systems. This work was aimed at developing a proof-of-concept for a novel model of double fluorescence submicronic particles that could be spotted inside phagolysosomes. Fluorescein isothiocyanate (FITC) particles were synthesized and then conjugated with a fluorescent pHrodo™ probe, red fluorescence of which increases in acidic conditions such as within lysosomes. After validation in acellular conditions by spectral analysis with confocal microscopy and dynamic light scattering, quantification of phagocytosis was conducted on a macrophage cell line in vitro. The biological impact of pHrodo functionalization (cytotoxicity, inflammatory response, and oxidative stress) was also investigated. Results validate the proof-of-concept of double fluorescent particles (FITC + pHrodo), allowing detection of entirely engulfed pHrodo particles (green and red labeling). Moreover incorporation of pHrodo had no major effects on cytotoxicity compared to particles without pHrodo, making them a powerful tool for micro- and nanotechnologies.
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Dates et versions

hal-00757737 , version 1 (28-11-2012)

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Lara Leclerc, Delphine Boudard, Jérémie Pourchez, Valérie Forest, Laurence Marmuse, et al.. Quantitative cellular uptake of double fluorescent core-shelled model submicronic particles. Journal of Nanoparticle Research, 2012, 14 (11), pp.14 :1221. ⟨10.1007/s11051-012-1221-x⟩. ⟨hal-00757737⟩
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