Intranasal delivery of dexamethasone efficiently controls LPS-induced murine neuroinflammation

Author:

Meneses G1,Gevorkian G1,Florentino A1,Bautista M A1,Espinosa A1,Acero G1,Díaz G1,Fleury A2,Pérez Osorio I N1,del Rey A3,Fragoso G1,Sciutto E1ORCID,Besedovsky H3

Affiliation:

1. Instituto de Investigaciones Biomédicas, Universidad Nacional Autónoma de México, México, D.F., Germany

2. Unidad Periférica del Instituto de Investigaciones Biomédicas en el Instituto Nacional de Neurología y Neurocirugía, México, D.F., Germany

3. Institute of Physiology and Pathophysiology, Medical Faculty, Philipps University, Marburg, Germany

Abstract

Summary Neuroinflammation is the hallmark of several infectious and neurodegenerative diseases. Synthetic glucocorticoids (GCs) are the first-line immunosuppressive drugs used for controlling neuroinflammation. A delayed diffusion of GCs molecules and the high systemic doses required for brain-specific targeting lead to severe undesirable effects, particularly when lifelong treatment is required. Therefore, there is an urgent need for improving this current therapeutic approach. The intranasal (i.n.) route is being employed increasingly for drug delivery to the brain via the olfactory system. In this study, the i.n. route is compared to the intravenous (i.v.) administration of GCs with respect to their effectiveness in controlling neuroinflammation induced experimentally by systemic lipopolysaccharide (LPS) injection. A statistically significant reduction in interleukin (IL)-6 levels in the central nervous system (CNS) in the percentage of CD45+/CD11b+/lymphocyte antigen 6 complex locus G6D [Ly6G+ and in glial fibrillary acidic protein (GFAP) immunostaining was observed in mice from the i.n.-dexamethasone (DX] group compared to control and i.v.-DX-treated animals. DX treatment did not modify the percentage of microglia and perivascular macrophages as determined by ionized calcium binding adaptor molecule 1 (Iba1) immunostaining of the cortex and hippocampus. The increased accumulation of DX in brain microvasculature in DX-i.n.-treated mice compared with controls and DX-IV-treated animals may underlie the higher effectiveness in controlling neuroinflammation. Altogether, these results indicate that IN-DX administration may offer a more efficient alternative than systemic administration to control neuroinflammation in different neuropathologies.

Funder

CONACyT

DGAPA-UNAM

Programa de Investigación para el Desarrollo y la Optimización de Vacunas, Inmunomoduladores y Métodos Diagnósticos del IIB

Publisher

Oxford University Press (OUP)

Subject

Immunology,Immunology and Allergy

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