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Probing the distinct chemosensitivity of Plasmodium vivax liver stage parasites and demonstration of 8-aminoquinoline radical cure activity in vitro

Improved control of Plasmodium vivax malaria can be achieved with the discovery of new antimalarials with radical cure efficacy, including prevention of relapse caused by hypnozoites residing in the liver of patients. We screened several compound libraries against P. vivax liver stages, including 15...

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Autores principales: Maher, Steven P., Vantaux, Amélie, Chaumeau, Victor, Chua, Adeline C. Y., Cooper, Caitlin A., Andolina, Chiara, Péneau, Julie, Rouillier, Mélanie, Rizopoulos, Zaira, Phal, Sivchheng, Piv, Eakpor, Vong, Chantrea, Phen, Sreyvouch, Chhin, Chansophea, Tat, Baura, Ouk, Sivkeng, Doeurk, Bros, Kim, Saorin, Suriyakan, Sangrawee, Kittiphanakun, Praphan, Awuku, Nana Akua, Conway, Amy J., Jiang, Rays H. Y., Russell, Bruce, Bifani, Pablo, Campo, Brice, Nosten, François, Witkowski, Benoît, Kyle, Dennis E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8497498/
https://www.ncbi.nlm.nih.gov/pubmed/34620901
http://dx.doi.org/10.1038/s41598-021-99152-9
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author Maher, Steven P.
Vantaux, Amélie
Chaumeau, Victor
Chua, Adeline C. Y.
Cooper, Caitlin A.
Andolina, Chiara
Péneau, Julie
Rouillier, Mélanie
Rizopoulos, Zaira
Phal, Sivchheng
Piv, Eakpor
Vong, Chantrea
Phen, Sreyvouch
Chhin, Chansophea
Tat, Baura
Ouk, Sivkeng
Doeurk, Bros
Kim, Saorin
Suriyakan, Sangrawee
Kittiphanakun, Praphan
Awuku, Nana Akua
Conway, Amy J.
Jiang, Rays H. Y.
Russell, Bruce
Bifani, Pablo
Campo, Brice
Nosten, François
Witkowski, Benoît
Kyle, Dennis E.
author_facet Maher, Steven P.
Vantaux, Amélie
Chaumeau, Victor
Chua, Adeline C. Y.
Cooper, Caitlin A.
Andolina, Chiara
Péneau, Julie
Rouillier, Mélanie
Rizopoulos, Zaira
Phal, Sivchheng
Piv, Eakpor
Vong, Chantrea
Phen, Sreyvouch
Chhin, Chansophea
Tat, Baura
Ouk, Sivkeng
Doeurk, Bros
Kim, Saorin
Suriyakan, Sangrawee
Kittiphanakun, Praphan
Awuku, Nana Akua
Conway, Amy J.
Jiang, Rays H. Y.
Russell, Bruce
Bifani, Pablo
Campo, Brice
Nosten, François
Witkowski, Benoît
Kyle, Dennis E.
author_sort Maher, Steven P.
collection PubMed
description Improved control of Plasmodium vivax malaria can be achieved with the discovery of new antimalarials with radical cure efficacy, including prevention of relapse caused by hypnozoites residing in the liver of patients. We screened several compound libraries against P. vivax liver stages, including 1565 compounds against mature hypnozoites, resulting in one drug-like and several probe-like hits useful for investigating hypnozoite biology. Primaquine and tafenoquine, administered in combination with chloroquine, are currently the only FDA-approved antimalarials for radical cure, yet their activity against mature P. vivax hypnozoites has not yet been demonstrated in vitro. By developing an extended assay, we show both drugs are individually hypnozonticidal and made more potent when partnered with chloroquine, similar to clinically relevant combinations. Post-hoc analyses of screening data revealed excellent performance of ionophore controls and the high quality of single point assays, demonstrating a platform able to support screening of greater compound numbers. A comparison of P. vivax liver stage activity data with that of the P. cynomolgi blood, P. falciparum blood, and P. berghei liver stages reveals overlap in schizonticidal but not hypnozonticidal activity, indicating that the delivery of new radical curative agents killing P. vivax hypnozoites requires an independent and focused drug development test cascade.
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spelling pubmed-84974982021-10-08 Probing the distinct chemosensitivity of Plasmodium vivax liver stage parasites and demonstration of 8-aminoquinoline radical cure activity in vitro Maher, Steven P. Vantaux, Amélie Chaumeau, Victor Chua, Adeline C. Y. Cooper, Caitlin A. Andolina, Chiara Péneau, Julie Rouillier, Mélanie Rizopoulos, Zaira Phal, Sivchheng Piv, Eakpor Vong, Chantrea Phen, Sreyvouch Chhin, Chansophea Tat, Baura Ouk, Sivkeng Doeurk, Bros Kim, Saorin Suriyakan, Sangrawee Kittiphanakun, Praphan Awuku, Nana Akua Conway, Amy J. Jiang, Rays H. Y. Russell, Bruce Bifani, Pablo Campo, Brice Nosten, François Witkowski, Benoît Kyle, Dennis E. Sci Rep Article Improved control of Plasmodium vivax malaria can be achieved with the discovery of new antimalarials with radical cure efficacy, including prevention of relapse caused by hypnozoites residing in the liver of patients. We screened several compound libraries against P. vivax liver stages, including 1565 compounds against mature hypnozoites, resulting in one drug-like and several probe-like hits useful for investigating hypnozoite biology. Primaquine and tafenoquine, administered in combination with chloroquine, are currently the only FDA-approved antimalarials for radical cure, yet their activity against mature P. vivax hypnozoites has not yet been demonstrated in vitro. By developing an extended assay, we show both drugs are individually hypnozonticidal and made more potent when partnered with chloroquine, similar to clinically relevant combinations. Post-hoc analyses of screening data revealed excellent performance of ionophore controls and the high quality of single point assays, demonstrating a platform able to support screening of greater compound numbers. A comparison of P. vivax liver stage activity data with that of the P. cynomolgi blood, P. falciparum blood, and P. berghei liver stages reveals overlap in schizonticidal but not hypnozonticidal activity, indicating that the delivery of new radical curative agents killing P. vivax hypnozoites requires an independent and focused drug development test cascade. Nature Publishing Group UK 2021-10-07 /pmc/articles/PMC8497498/ /pubmed/34620901 http://dx.doi.org/10.1038/s41598-021-99152-9 Text en © The Author(s) 2021 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article's Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article's Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Maher, Steven P.
Vantaux, Amélie
Chaumeau, Victor
Chua, Adeline C. Y.
Cooper, Caitlin A.
Andolina, Chiara
Péneau, Julie
Rouillier, Mélanie
Rizopoulos, Zaira
Phal, Sivchheng
Piv, Eakpor
Vong, Chantrea
Phen, Sreyvouch
Chhin, Chansophea
Tat, Baura
Ouk, Sivkeng
Doeurk, Bros
Kim, Saorin
Suriyakan, Sangrawee
Kittiphanakun, Praphan
Awuku, Nana Akua
Conway, Amy J.
Jiang, Rays H. Y.
Russell, Bruce
Bifani, Pablo
Campo, Brice
Nosten, François
Witkowski, Benoît
Kyle, Dennis E.
Probing the distinct chemosensitivity of Plasmodium vivax liver stage parasites and demonstration of 8-aminoquinoline radical cure activity in vitro
title Probing the distinct chemosensitivity of Plasmodium vivax liver stage parasites and demonstration of 8-aminoquinoline radical cure activity in vitro
title_full Probing the distinct chemosensitivity of Plasmodium vivax liver stage parasites and demonstration of 8-aminoquinoline radical cure activity in vitro
title_fullStr Probing the distinct chemosensitivity of Plasmodium vivax liver stage parasites and demonstration of 8-aminoquinoline radical cure activity in vitro
title_full_unstemmed Probing the distinct chemosensitivity of Plasmodium vivax liver stage parasites and demonstration of 8-aminoquinoline radical cure activity in vitro
title_short Probing the distinct chemosensitivity of Plasmodium vivax liver stage parasites and demonstration of 8-aminoquinoline radical cure activity in vitro
title_sort probing the distinct chemosensitivity of plasmodium vivax liver stage parasites and demonstration of 8-aminoquinoline radical cure activity in vitro
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8497498/
https://www.ncbi.nlm.nih.gov/pubmed/34620901
http://dx.doi.org/10.1038/s41598-021-99152-9
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