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Journal Article

Single-dose pharmacokinetics and lung function of nebulized niclosamide ethanolamine in sheep

Anne Weiss; Robert J Bischof; Cornelia B Landersdorfer; Tri-Hung Nguyen; Andrew Davies; Jibriil Ibrahim; Paul Wynne; Phillip Wright; Günter Ditzinger; A Bruce Montgomery; Els Meeusen; Michelle P McIntosh; Morten OA Sommer
Pharmaceutical Research · Vol. 40, Issue 8 · pp. 1915-1925 · 2023

Abstract

Purpose Niclosamide is approved as an oral anthelminthic, but its low oral bioavailability hinders its medical use requiring high drug exposure outside the gastrointestinal tract. An optimized solution of niclosamide for nebulization and intranasal administration using the ethanolamine salt has been developed and tested in a Phase 1 trial. In this study we investigate the pulmonary exposure of niclosamide following administration via intravenous injection, oral administration or nebulization. Methods We characterized the plasma and pulmonary pharmacokinetics of three ascending doses of nebulized niclosamide in sheep, compare it to intravenous niclosamide for compartmental PK modelling, and to the human equivalent approved 2 g oral dose to investigate in the pulmonary exposure of different niclosamide delivery routes. Following a single-dose administration to five sheep, niclosamide concentrations were determined in plasma and epithelial lining fluid (ELF). Non-compartmental and compartmental modeling was used to characterize pharmacokinetic profiles. Lung function tests were performed in all dose groups. Results Administration of all niclosamide doses were well tolerated with no adverse changes in lung function tests. Plasma pharmacokinetics of nebulized niclosamide behaved dose-linear and was described by a 3-compartmental model estimating an absolute bioavailability of 86%. ELF peak concentration and area under the curve was 578 times and 71 times higher with nebulization of niclosamide relative to administration of oral niclosamide . Conclusions Single local pulmonary administration of niclosamide via nebulization was well tolerated in sheep and resulted in substantially higher peak ELF concentration compared to the human equivalent oral 2 g dose.

Bibliographic Information

JournalPharmaceutical Research
PublisherSpringer
Publication Date2023-08-01
Publication Year2023
Volume40
Issue8
Pages1915-1925
Document TypeJournal Article
Print ISSN0724-8741
eISSN1573-904X
DOI10.1007/s11095-023-03559-0

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NARA Access Coverage1984-01-01~Current
Journal Homepagehttps://www.springer.com/journal/11095
Publisher PageOpen Publisher Page
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