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BMC Pharmacol ; 7: 7, 2007 Jun 06.
Article in English | MEDLINE | ID: mdl-17553148

ABSTRACT

BACKGROUND: The nasal tissue uptake and metabolism of ciclesonide, a new-generation corticosteroid under investigation for treatment of allergic rhinitis, to its active metabolite, desisobutyryl-ciclesonide (des-CIC), was evaluated when administered to rabbits in a hypotonic versus an isotonic ciclesonide suspension. Nasal mucosa extracts from normal Japanese white rabbits were evaluated by high-performance liquid chromatography with tandem mass spectrometry detection after a single 143-mug dose of ciclesonide. Retention and formation of fatty acid conjugates of des-CIC were also measured in nasal mucosa extracts postadministration of a hypotonic ciclesonide suspension (143-mug single dose). RESULTS: Versus an isotonic suspension, the hypotonic suspension achieved higher concentrations of des-CIC (5.6-fold, 11.4-fold, and 13.4-fold; p < 0.05 for all) and ciclesonide (25.3-fold, 34.2-fold [p = not significant], and 16-fold [p < 0.05]) at 30, 120, and 240 min postadministration. Additionally, when administered via a hypotonic suspension, des-CIC was retained up to 24 h postadministration (45.46 pmol/g tissue). Highest concentration of major fatty acid ester conjugate, des-CIC-oleate, was detected in nasal mucosa at 8 h postadministration. CONCLUSION: These data suggest that a hypotonic ciclesonide suspension provides higher intracellular concentrations of des-CIC up to 24 h, thereby providing a rationale for investigation of ciclesonide as a convenient once-daily nasal spray for treatment of allergic rhinitis.


Subject(s)
Anti-Allergic Agents/pharmacokinetics , Nasal Mucosa/metabolism , Pregnenediones/metabolism , Pregnenediones/pharmacokinetics , Administration, Intranasal , Animals , Anti-Allergic Agents/administration & dosage , Anti-Allergic Agents/metabolism , Chromatography, High Pressure Liquid , Drug Administration Schedule , Esters/metabolism , Fatty Acids/metabolism , Hypotonic Solutions , Isotonic Solutions , Male , Pregnenediones/administration & dosage , Rabbits , Suspensions , Tandem Mass Spectrometry , Time Factors
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