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Improvement of Albendazole Bioavailability with Menbutone Administration in Sheep.

Raquel DiezMaría José DiezJuan Jose GarciaJose M RodríguezCristina LópezMaría Nélida Fernández-MartínezMatilde SierraAna M Sahagún
Published in: Animals : an open access journal from MDPI (2022)
The pharmacokinetic interaction between a benzimidazole (albendazole, ABZ) and a choleretic drug (menbutone, MEN) was evaluated in sheep. The plasma disposition of albendazole sulfoxide (ABZSO, active metabolite) and albendazole sulfone (ABZSO 2 , inactive metabolite) was investigated following an oral administration of albendazole (ABZ) (5 mg/kg) alone or with menbutone (MEN) (intramuscular, 10 mg/kg). Blood samples were collected over 3 days post-treatment, and drug plasma concentrations were measured by high performance liquid chromatography (HPLC). ABZSO was measured from 0.5 to 48 h, and ABZSO 2 from 2 to 60 h. No parent drug was detected at any sampling time. Mean maximum plasma concentration (C max ) and the area under the plasma concentration-time curve (AUC) were 12.8% and 21.5% higher for ABZSO when ABZ and MEN were administered together, which indicates a significant increase in the amount absorbed. The rate of absorption was not modified, with similar values for the time to reach C max (t max ) (11.5 h with ABZ + MEN and 10.7 h with ABZ treatment), although no significant differences were observed for these latter pharmacokinetic parameters. Regarding ABZSO 2 , C max , AUC and t max values were similar after both treatments (ABZ or ABZ + MEN). The results obtained indicate that co-administration of ABZ and MEN may be an interesting and practical option to increase the efficacy of this anthelmintic.
Keyphrases
  • high performance liquid chromatography
  • middle aged
  • mass spectrometry
  • ms ms
  • tandem mass spectrometry
  • solid phase extraction
  • emergency department
  • atomic force microscopy