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P. falciparum In Vitro Killing Rates Allow to Discriminate between Different Antimalarial Mode-of-Action

Chemotherapy is still the cornerstone for malaria control. Developing drugs against Plasmodium parasites and monitoring their efficacy requires methods to accurately determine the parasite killing rate in response to treatment. Commonly used techniques essentially measure metabolic activity as a pro...

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Autores principales: Sanz, Laura M., Crespo, Benigno, De-Cózar, Cristina, Ding, Xavier C., Llergo, Jose L., Burrows, Jeremy N., García-Bustos, Jose F., Gamo, Francisco-Javier
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3285618/
https://www.ncbi.nlm.nih.gov/pubmed/22383983
http://dx.doi.org/10.1371/journal.pone.0030949
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author Sanz, Laura M.
Crespo, Benigno
De-Cózar, Cristina
Ding, Xavier C.
Llergo, Jose L.
Burrows, Jeremy N.
García-Bustos, Jose F.
Gamo, Francisco-Javier
author_facet Sanz, Laura M.
Crespo, Benigno
De-Cózar, Cristina
Ding, Xavier C.
Llergo, Jose L.
Burrows, Jeremy N.
García-Bustos, Jose F.
Gamo, Francisco-Javier
author_sort Sanz, Laura M.
collection PubMed
description Chemotherapy is still the cornerstone for malaria control. Developing drugs against Plasmodium parasites and monitoring their efficacy requires methods to accurately determine the parasite killing rate in response to treatment. Commonly used techniques essentially measure metabolic activity as a proxy for parasite viability. However, these approaches are susceptible to artefacts, as viability and metabolism are two parameters that are coupled during the parasite life cycle but can be differentially affected in response to drug actions. Moreover, traditional techniques do not allow to measure the speed-of-action of compounds on parasite viability, which is an essential efficacy determinant. We present here a comprehensive methodology to measure in vitro the direct effect of antimalarial compounds over the parasite viability, which is based on limiting serial dilution of treated parasites and re-growth monitoring. This methodology allows to precisely determine the killing rate of antimalarial compounds, which can be quantified by the parasite reduction ratio and parasite clearance time, which are key mode-of-action parameters. Importantly, we demonstrate that this technique readily permits to determine compound killing activities that might be otherwise missed by traditional, metabolism-based techniques. The analysis of a large set of antimalarial drugs reveals that this viability-based assay allows to discriminate compounds based on their antimalarial mode-of-action. This approach has been adapted to perform medium throughput screening, facilitating the identification of fast-acting antimalarial compounds, which are crucially needed for the control and possibly the eradication of malaria.
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spelling pubmed-32856182012-03-01 P. falciparum In Vitro Killing Rates Allow to Discriminate between Different Antimalarial Mode-of-Action Sanz, Laura M. Crespo, Benigno De-Cózar, Cristina Ding, Xavier C. Llergo, Jose L. Burrows, Jeremy N. García-Bustos, Jose F. Gamo, Francisco-Javier PLoS One Research Article Chemotherapy is still the cornerstone for malaria control. Developing drugs against Plasmodium parasites and monitoring their efficacy requires methods to accurately determine the parasite killing rate in response to treatment. Commonly used techniques essentially measure metabolic activity as a proxy for parasite viability. However, these approaches are susceptible to artefacts, as viability and metabolism are two parameters that are coupled during the parasite life cycle but can be differentially affected in response to drug actions. Moreover, traditional techniques do not allow to measure the speed-of-action of compounds on parasite viability, which is an essential efficacy determinant. We present here a comprehensive methodology to measure in vitro the direct effect of antimalarial compounds over the parasite viability, which is based on limiting serial dilution of treated parasites and re-growth monitoring. This methodology allows to precisely determine the killing rate of antimalarial compounds, which can be quantified by the parasite reduction ratio and parasite clearance time, which are key mode-of-action parameters. Importantly, we demonstrate that this technique readily permits to determine compound killing activities that might be otherwise missed by traditional, metabolism-based techniques. The analysis of a large set of antimalarial drugs reveals that this viability-based assay allows to discriminate compounds based on their antimalarial mode-of-action. This approach has been adapted to perform medium throughput screening, facilitating the identification of fast-acting antimalarial compounds, which are crucially needed for the control and possibly the eradication of malaria. Public Library of Science 2012-02-23 /pmc/articles/PMC3285618/ /pubmed/22383983 http://dx.doi.org/10.1371/journal.pone.0030949 Text en Sanz et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Sanz, Laura M.
Crespo, Benigno
De-Cózar, Cristina
Ding, Xavier C.
Llergo, Jose L.
Burrows, Jeremy N.
García-Bustos, Jose F.
Gamo, Francisco-Javier
P. falciparum In Vitro Killing Rates Allow to Discriminate between Different Antimalarial Mode-of-Action
title P. falciparum In Vitro Killing Rates Allow to Discriminate between Different Antimalarial Mode-of-Action
title_full P. falciparum In Vitro Killing Rates Allow to Discriminate between Different Antimalarial Mode-of-Action
title_fullStr P. falciparum In Vitro Killing Rates Allow to Discriminate between Different Antimalarial Mode-of-Action
title_full_unstemmed P. falciparum In Vitro Killing Rates Allow to Discriminate between Different Antimalarial Mode-of-Action
title_short P. falciparum In Vitro Killing Rates Allow to Discriminate between Different Antimalarial Mode-of-Action
title_sort p. falciparum in vitro killing rates allow to discriminate between different antimalarial mode-of-action
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3285618/
https://www.ncbi.nlm.nih.gov/pubmed/22383983
http://dx.doi.org/10.1371/journal.pone.0030949
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