Abstract
Neuroinflammation (NI) is an important physiologic process which promotes the tissue repair and homeostatic maintenance in the central nervous system after different types of insults. However, when it is exacerbated and sustained in time, NI plays a critical role in the pathogenesis of different neurologic diseases. The high systemic doses required for brain-specific targeting lead to severe undesirable effects. The intranasal (IN) route has been proposed as an alternative drug administration route for a better NI control. Herein, the brain biodistribution of intranasally administered dexamethasone versus intravenously administered one is reported. A higher amount of dexamethasone was found in every analyzed region of those brains of intranasally administered mice. HPLC analysis also revealed that IN administration allows Dex to arrive faster and in a greater concentration to the brain in comparison with intravenous administration, data confirmed by immunofluorescence and HPLC analysis. These data support the proposal of the IN administration of Dex as an alternative for amore efficient control of NI.
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CITATION STYLE
Pérez-Osorio, I. N., Espinosa, A., Velázquez, M. G., Padilla, P., Bárcena, B., Fragoso, G., … Conde, E. L. S. (2021). Nose-to-brain delivery of dexamethasone: Biodistribution studies in mice. Journal of Pharmacology and Experimental Therapeutics, 378(3), 244–250. https://doi.org/10.1124/jpet.121.000530
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