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Oxadiazole 2-oxides are toxic to the human hookworm, Ancylostoma ceylanicum, however glutathione reductase is not the primary target

Тип публикацииJournal Article
Дата публикации2012-12-01
scimago Q1
wos Q1
БС1
SJR0.962
CiteScore7.3
Impact factor3.4
ISSN22113207
Pharmacology
Infectious Diseases
Pharmacology (medical)
Parasitology
Краткое описание
Hookworm disease, characterized by severe anemia and cognitive and growth delays, currently affects an estimated 740 million people worldwide. Despite the prevalence of this parasitic disease, few effective drug therapies are in use today, and the heavy reliance upon benzimidazoles highlights the need for the development of novel chemotherapies. Recent work with the trematode parasite Schistosoma mansoni has identified oxadiazole 2-oxides as effective antischistosomal compounds that function by targeting and inhibiting the antioxidant enzyme, thioredoxin glutathione reductase. In this study, a related enzyme, glutathione reductase, from the human hookworm Ancylostoma ceylanicum was identified and characterized, and its in vitro activity in the presence of the oxadiazole 2-oxides was analyzed. Ex vivo worm killing assays were also conducted to establish the relationship between a given compound's effect upon worm survival and inhibition of recombinant glutathione reductase (rAceGR). Finally, the in vivo anthelminthic efficacy of furoxan (Fx) was assessed in the hamster model of hookworm infection. The predicted amino acid sequence of AceGR contained a prototypical glutathione reductase active site sequence, but no thioredoxin reductase consensus sequences, suggesting that the glutathione and thioredoxin pathways of A. ceylanicum are distinct. Although ten of the forty-two oxadiazole 2-oxides tested inhibited rAceGR activity by at least fifty percent, and fifteen compounds were toxic to parasites ex vivo, little overlap existed between these two results. We therefore suggest that AceGR is not the primary target of the oxadiazole 2-oxides in effecting parasite death. Lastly, oral treatment of A. ceylanicuminfected hamsters with furoxan resulted in significantly improved weight gains and reduced intestinal worm burdens compared to vehicle treated controls, supporting continued development of this molecule as a novel anthelminthic.
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Treger R. S. et al. Oxadiazole 2-oxides are toxic to the human hookworm, Ancylostoma ceylanicum, however glutathione reductase is not the primary target // International Journal for Parasitology: Drugs and Drug Resistance. 2012. Vol. 2. pp. 171-177.
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Treger R. S., Cook A., Rai G., Maloney D. J., Simeonov A., Jadhav A., Thomas C. W., Williams D. L., Cappello M., Vermeire J. J. Oxadiazole 2-oxides are toxic to the human hookworm, Ancylostoma ceylanicum, however glutathione reductase is not the primary target // International Journal for Parasitology: Drugs and Drug Resistance. 2012. Vol. 2. pp. 171-177.
RIS |
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TY - JOUR
DO - 10.1016/j.ijpddr.2012.05.001
UR - https://doi.org/10.1016/j.ijpddr.2012.05.001
TI - Oxadiazole 2-oxides are toxic to the human hookworm, Ancylostoma ceylanicum, however glutathione reductase is not the primary target
T2 - International Journal for Parasitology: Drugs and Drug Resistance
AU - Treger, Rebecca S.
AU - Cook, Aaron
AU - Rai, Ganesha
AU - Maloney, David J.
AU - Simeonov, Anton
AU - Jadhav, Ajit
AU - Thomas, Craig W.
AU - Williams, David L.
AU - Cappello, Michael
AU - Vermeire, Jon J.
PY - 2012
DA - 2012/12/01
PB - Elsevier
SP - 171-177
VL - 2
PMID - 22844653
SN - 2211-3207
ER -
BibTex
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@article{2012_Treger,
author = {Rebecca S. Treger and Aaron Cook and Ganesha Rai and David J. Maloney and Anton Simeonov and Ajit Jadhav and Craig W. Thomas and David L. Williams and Michael Cappello and Jon J. Vermeire},
title = {Oxadiazole 2-oxides are toxic to the human hookworm, Ancylostoma ceylanicum, however glutathione reductase is not the primary target},
journal = {International Journal for Parasitology: Drugs and Drug Resistance},
year = {2012},
volume = {2},
publisher = {Elsevier},
month = {dec},
url = {https://doi.org/10.1016/j.ijpddr.2012.05.001},
pages = {171--177},
doi = {10.1016/j.ijpddr.2012.05.001}
}