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Radical cure of experimental babesiosis in immunodeficient mice using a combination of an endochin-like quinolone and atovaquone

Human babesiosis is a tick-borne multisystem disease caused by Babesia species of the apicomplexan phylum. Most clinical cases and fatalities of babesiosis are caused by Babesia microti. Current treatment for human babesiosis consists of two drug combinations, atovaquone + azithromycin or quinine +...

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Autores principales: Lawres, Lauren A., Garg, Aprajita, Kumar, Vidya, Bruzual, Igor, Forquer, Isaac P., Renard, Isaline, Virji, Azan Z., Boulard, Pierre, Rodriguez, Eduardo X., Allen, Alexander J., Pou, Sovitj, Wegmann, Keith W., Winter, Rolf W., Nilsen, Aaron, Mao, Jialing, Preston, Douglas A., Belperron, Alexia A., Bockenstedt, Linda K., Hinrichs, David J., Riscoe, Michael K., Doggett, J. Stone, Ben Mamoun, Choukri
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Rockefeller University Press 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4925016/
https://www.ncbi.nlm.nih.gov/pubmed/27270894
http://dx.doi.org/10.1084/jem.20151519
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author Lawres, Lauren A.
Garg, Aprajita
Kumar, Vidya
Bruzual, Igor
Forquer, Isaac P.
Renard, Isaline
Virji, Azan Z.
Boulard, Pierre
Rodriguez, Eduardo X.
Allen, Alexander J.
Pou, Sovitj
Wegmann, Keith W.
Winter, Rolf W.
Nilsen, Aaron
Mao, Jialing
Preston, Douglas A.
Belperron, Alexia A.
Bockenstedt, Linda K.
Hinrichs, David J.
Riscoe, Michael K.
Doggett, J. Stone
Ben Mamoun, Choukri
author_facet Lawres, Lauren A.
Garg, Aprajita
Kumar, Vidya
Bruzual, Igor
Forquer, Isaac P.
Renard, Isaline
Virji, Azan Z.
Boulard, Pierre
Rodriguez, Eduardo X.
Allen, Alexander J.
Pou, Sovitj
Wegmann, Keith W.
Winter, Rolf W.
Nilsen, Aaron
Mao, Jialing
Preston, Douglas A.
Belperron, Alexia A.
Bockenstedt, Linda K.
Hinrichs, David J.
Riscoe, Michael K.
Doggett, J. Stone
Ben Mamoun, Choukri
author_sort Lawres, Lauren A.
collection PubMed
description Human babesiosis is a tick-borne multisystem disease caused by Babesia species of the apicomplexan phylum. Most clinical cases and fatalities of babesiosis are caused by Babesia microti. Current treatment for human babesiosis consists of two drug combinations, atovaquone + azithromycin or quinine + clindamycin. These treatments are associated with adverse side effects and a significant rate of drug failure. Here, we provide evidence for radical cure of experimental babesiosis in immunodeficient mice using a combination of an endochin-like quinolone (ELQ) prodrug and atovaquone. In vivo efficacy studies in mice using ELQ-271, ELQ-316, and the ELQ-316 prodrug, ELQ-334, demonstrated excellent growth inhibitory activity against the parasite, with potency equal to that of orally administered atovaquone at 10 mg/kg. Analysis of recrudescent parasites after ELQ or atovaquone monotherapy identified genetic substitutions in the Q(i) or Q(o) sites, respectively, of the cytochrome bc(1) complex. Impressively, a combination of ELQ-334 and atovaquone, at doses as low as 5.0 mg/kg each, resulted in complete clearance of the parasite with no recrudescence up to 122 d after discontinuation of therapy. These results will set the stage for future clinical evaluation of ELQ and atovaquone combination therapy for treatment of human babesiosis.
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spelling pubmed-49250162016-12-27 Radical cure of experimental babesiosis in immunodeficient mice using a combination of an endochin-like quinolone and atovaquone Lawres, Lauren A. Garg, Aprajita Kumar, Vidya Bruzual, Igor Forquer, Isaac P. Renard, Isaline Virji, Azan Z. Boulard, Pierre Rodriguez, Eduardo X. Allen, Alexander J. Pou, Sovitj Wegmann, Keith W. Winter, Rolf W. Nilsen, Aaron Mao, Jialing Preston, Douglas A. Belperron, Alexia A. Bockenstedt, Linda K. Hinrichs, David J. Riscoe, Michael K. Doggett, J. Stone Ben Mamoun, Choukri J Exp Med Research Articles Human babesiosis is a tick-borne multisystem disease caused by Babesia species of the apicomplexan phylum. Most clinical cases and fatalities of babesiosis are caused by Babesia microti. Current treatment for human babesiosis consists of two drug combinations, atovaquone + azithromycin or quinine + clindamycin. These treatments are associated with adverse side effects and a significant rate of drug failure. Here, we provide evidence for radical cure of experimental babesiosis in immunodeficient mice using a combination of an endochin-like quinolone (ELQ) prodrug and atovaquone. In vivo efficacy studies in mice using ELQ-271, ELQ-316, and the ELQ-316 prodrug, ELQ-334, demonstrated excellent growth inhibitory activity against the parasite, with potency equal to that of orally administered atovaquone at 10 mg/kg. Analysis of recrudescent parasites after ELQ or atovaquone monotherapy identified genetic substitutions in the Q(i) or Q(o) sites, respectively, of the cytochrome bc(1) complex. Impressively, a combination of ELQ-334 and atovaquone, at doses as low as 5.0 mg/kg each, resulted in complete clearance of the parasite with no recrudescence up to 122 d after discontinuation of therapy. These results will set the stage for future clinical evaluation of ELQ and atovaquone combination therapy for treatment of human babesiosis. The Rockefeller University Press 2016-06-27 /pmc/articles/PMC4925016/ /pubmed/27270894 http://dx.doi.org/10.1084/jem.20151519 Text en © 2016 Lawres et al. This article is distributed under the terms of an Attribution–Noncommercial–Share Alike–No Mirror Sites license for the first six months after the publication date (see http://www.rupress.org/terms). After six months it is available under a Creative Commons License (Attribution–Noncommercial–Share Alike 3.0 Unported license, as described at http://creativecommons.org/licenses/by-nc-sa/3.0/).
spellingShingle Research Articles
Lawres, Lauren A.
Garg, Aprajita
Kumar, Vidya
Bruzual, Igor
Forquer, Isaac P.
Renard, Isaline
Virji, Azan Z.
Boulard, Pierre
Rodriguez, Eduardo X.
Allen, Alexander J.
Pou, Sovitj
Wegmann, Keith W.
Winter, Rolf W.
Nilsen, Aaron
Mao, Jialing
Preston, Douglas A.
Belperron, Alexia A.
Bockenstedt, Linda K.
Hinrichs, David J.
Riscoe, Michael K.
Doggett, J. Stone
Ben Mamoun, Choukri
Radical cure of experimental babesiosis in immunodeficient mice using a combination of an endochin-like quinolone and atovaquone
title Radical cure of experimental babesiosis in immunodeficient mice using a combination of an endochin-like quinolone and atovaquone
title_full Radical cure of experimental babesiosis in immunodeficient mice using a combination of an endochin-like quinolone and atovaquone
title_fullStr Radical cure of experimental babesiosis in immunodeficient mice using a combination of an endochin-like quinolone and atovaquone
title_full_unstemmed Radical cure of experimental babesiosis in immunodeficient mice using a combination of an endochin-like quinolone and atovaquone
title_short Radical cure of experimental babesiosis in immunodeficient mice using a combination of an endochin-like quinolone and atovaquone
title_sort radical cure of experimental babesiosis in immunodeficient mice using a combination of an endochin-like quinolone and atovaquone
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4925016/
https://www.ncbi.nlm.nih.gov/pubmed/27270894
http://dx.doi.org/10.1084/jem.20151519
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