Literature DB >> 23587403

Biotransformation of albendazole and activities of selected detoxification enzymes in Haemonchus contortus strains susceptible and resistant to anthelmintics.

Ivan Vokřál1, Robert Jirásko, Lucie Stuchlíková, Hana Bártíková, Barbora Szotáková, Jiří Lamka, Marián Várady, Lenka Skálová.   

Abstract

The increased activity of drug-metabolizing enzymes can protect helminths against the toxic effect of anthelmintics. The aim of this study was to compare the metabolism of the anthelmintic drug albendazole (ABZ) and the activities of selected biotransformation and antioxidant enzymes in three different strains of Haemonchus contortus: the ISE strain (susceptible to common anthelmintics), the BR strain (resistant to benzimidazole anthelmintics) and the WR strain (multi-resistant). H. contortus adults were collected from the abomasum of experimentally infected lambs. In vitro (subcellular fractions of H. contortus homogenate) as well as ex vivo (living nematodes cultivated in flasks with medium) experiments were performed. HPLC with spectrofluorimetric and mass-spectrometric detection was used in the analysis of ABZ metabolites. The in vitro activities of oxidation/antioxidation and conjugation enzymes toward model substrates were also assayed. The in vitro data showed significant differences between the susceptible (ISE) and resistant (BR, WR) strains regarding the activities of peroxidases, catalase and UDP-glucosyltransferases. S-oxidation of ABZ was significantly lower in BR than in the ISE strain. Ex vivo, four ABZ metabolites were identified: ABZ sulphoxide and three ABZ glucosides. In the resistant strains BR and WR, the ex vivo formation of all ABZ glucosides was significantly higher than in the susceptible ISE strain. The altered activities of certain detoxifying enzymes might partly protect the parasites against the toxic effect of the drugs as well as contribute to drug-resistance in these parasites.
Copyright © 2013 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  ABZ; ABZ-SO; ABZ-SO(2); Drug resistance; Nematodes; Strain-differences; UDP-glucosyltransferase; albendazole; albendazole sulfone; albendazole sulfoxide

Mesh:

Substances:

Year:  2013        PMID: 23587403     DOI: 10.1016/j.vetpar.2013.03.018

Source DB:  PubMed          Journal:  Vet Parasitol        ISSN: 0304-4017            Impact factor:   2.738


  12 in total

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4.  Sub-lethal doses of albendazole induce drug metabolizing enzymes and increase albendazole deactivation in Haemonchus contortus adults.

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6.  UDP-Glycosyltransferases and Albendazole Metabolism in the Juvenile Stages of Haemonchus contortus.

Authors:  Pavlína Kellerová; Martina Navrátilová; Linh Thuy Nguyen; Diana Dimunová; Lucie Raisová Stuchlíková; Karolína Štěrbová; Lenka Skálová; Petra Matoušková
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7.  An antioxidant response is involved in resistance of Giardia duodenalis to albendazole.

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8.  UDP-glycosyltransferase family in Haemonchus contortus: Phylogenetic analysis, constitutive expression, sex-differences and resistance-related differences.

Authors:  Petra Matoušková; Lenka Lecová; Roz Laing; Diana Dimunová; Heiko Vogel; Lucie Raisová Stuchlíková; Linh Thuy Nguyen; Pavlína Kellerová; Ivan Vokřál; Jiří Lamka; Barbora Szotáková; Marián Várady; Lenka Skálová
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9.  Metabolism of albendazole, ricobendazole and flubendazole in Haemonchus contortus adults: Sex differences, resistance-related differences and the identification of new metabolites.

Authors:  Lucie Raisová Stuchlíková; Petra Matoušková; Ivan Vokřál; Jiří Lamka; Barbora Szotáková; Anna Sečkařová; Diana Dimunová; Linh Thuy Nguyen; Marián Várady; Lenka Skálová
Journal:  Int J Parasitol Drugs Drug Resist       Date:  2018-01-31       Impact factor: 4.077

10.  Similarities and differences in the biotransformation and transcriptomic responses of Caenorhabditis elegans and Haemonchus contortus to five different benzimidazole drugs.

Authors:  S J Stasiuk; G MacNevin; M L Workentine; D Gray; E Redman; D Bartley; A Morrison; N Sharma; D Colwell; D K Ro; J S Gilleard
Journal:  Int J Parasitol Drugs Drug Resist       Date:  2019-09-09       Impact factor: 4.077

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