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KAI407, a Potent Non-8-Aminoquinoline Compound That Kills Plasmodium cynomolgi Early Dormant Liver Stage Parasites In Vitro
Preventing relapses of Plasmodium vivax malaria through a radical cure depends on use of the 8-aminoquinoline primaquine, which is associated with safety and compliance issues. For future malaria eradication strategies, new, safer radical curative compounds that efficiently kill dormant liver stages...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
American Society for Microbiology
2014
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3957848/ https://www.ncbi.nlm.nih.gov/pubmed/24366744 http://dx.doi.org/10.1128/AAC.01927-13 |
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author | Zeeman, Anne-Marie van Amsterdam, Sandra M. McNamara, Case W. Voorberg-van der Wel, Annemarie Klooster, Els J. van den Berg, Alexander Remarque, Edmond J. Plouffe, David M. van Gemert, Geert-Jan Luty, Adrian Sauerwein, Robert Gagaring, Kerstin Borboa, Rachel Chen, Zhong Kuhen, Kelli Glynne, Richard J. Chatterjee, Arnab K. Nagle, Advait Roland, Jason Winzeler, Elizabeth A. Leroy, Didier Campo, Brice Diagana, Thierry T. Yeung, Bryan K. S. Thomas, Alan W. Kocken, Clemens H. M. |
author_facet | Zeeman, Anne-Marie van Amsterdam, Sandra M. McNamara, Case W. Voorberg-van der Wel, Annemarie Klooster, Els J. van den Berg, Alexander Remarque, Edmond J. Plouffe, David M. van Gemert, Geert-Jan Luty, Adrian Sauerwein, Robert Gagaring, Kerstin Borboa, Rachel Chen, Zhong Kuhen, Kelli Glynne, Richard J. Chatterjee, Arnab K. Nagle, Advait Roland, Jason Winzeler, Elizabeth A. Leroy, Didier Campo, Brice Diagana, Thierry T. Yeung, Bryan K. S. Thomas, Alan W. Kocken, Clemens H. M. |
author_sort | Zeeman, Anne-Marie |
collection | PubMed |
description | Preventing relapses of Plasmodium vivax malaria through a radical cure depends on use of the 8-aminoquinoline primaquine, which is associated with safety and compliance issues. For future malaria eradication strategies, new, safer radical curative compounds that efficiently kill dormant liver stages (hypnozoites) will be essential. A new compound with potential radical cure activity was identified using a low-throughput assay of in vitro-cultured hypnozoite forms of Plasmodium cynomolgi (an excellent and accessible model for Plasmodium vivax). In this assay, primary rhesus hepatocytes are infected with P. cynomolgi sporozoites, and exoerythrocytic development is monitored in the presence of compounds. Liver stage cultures are fixed after 6 days and stained with anti-Hsp70 antibodies, and the relative proportions of small (hypnozoite) and large (schizont) forms relative to the untreated controls are determined. This assay was used to screen a series of 18 known antimalarials and 14 new non-8-aminoquinolines (preselected for blood and/or liver stage activity) in three-point 10-fold dilutions (0.1, 1, and 10 μM final concentrations). A novel compound, designated KAI407 showed an activity profile similar to that of primaquine (PQ), efficiently killing the earliest stages of the parasites that become either primary hepatic schizonts or hypnozoites (50% inhibitory concentration [IC(50)] for hypnozoites, KAI407, 0.69 μM, and PQ, 0.84 μM; for developing liver stages, KAI407, 0.64 μM, and PQ, 0.37 μM). When given as causal prophylaxis, a single oral dose of 100 mg/kg of body weight prevented blood stage parasitemia in mice. From these results, we conclude that KAI407 may represent a new compound class for P. vivax malaria prophylaxis and potentially a radical cure. |
format | Online Article Text |
id | pubmed-3957848 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2014 |
publisher | American Society for Microbiology |
record_format | MEDLINE/PubMed |
spelling | pubmed-39578482014-04-10 KAI407, a Potent Non-8-Aminoquinoline Compound That Kills Plasmodium cynomolgi Early Dormant Liver Stage Parasites In Vitro Zeeman, Anne-Marie van Amsterdam, Sandra M. McNamara, Case W. Voorberg-van der Wel, Annemarie Klooster, Els J. van den Berg, Alexander Remarque, Edmond J. Plouffe, David M. van Gemert, Geert-Jan Luty, Adrian Sauerwein, Robert Gagaring, Kerstin Borboa, Rachel Chen, Zhong Kuhen, Kelli Glynne, Richard J. Chatterjee, Arnab K. Nagle, Advait Roland, Jason Winzeler, Elizabeth A. Leroy, Didier Campo, Brice Diagana, Thierry T. Yeung, Bryan K. S. Thomas, Alan W. Kocken, Clemens H. M. Antimicrob Agents Chemother Experimental Therapeutics Preventing relapses of Plasmodium vivax malaria through a radical cure depends on use of the 8-aminoquinoline primaquine, which is associated with safety and compliance issues. For future malaria eradication strategies, new, safer radical curative compounds that efficiently kill dormant liver stages (hypnozoites) will be essential. A new compound with potential radical cure activity was identified using a low-throughput assay of in vitro-cultured hypnozoite forms of Plasmodium cynomolgi (an excellent and accessible model for Plasmodium vivax). In this assay, primary rhesus hepatocytes are infected with P. cynomolgi sporozoites, and exoerythrocytic development is monitored in the presence of compounds. Liver stage cultures are fixed after 6 days and stained with anti-Hsp70 antibodies, and the relative proportions of small (hypnozoite) and large (schizont) forms relative to the untreated controls are determined. This assay was used to screen a series of 18 known antimalarials and 14 new non-8-aminoquinolines (preselected for blood and/or liver stage activity) in three-point 10-fold dilutions (0.1, 1, and 10 μM final concentrations). A novel compound, designated KAI407 showed an activity profile similar to that of primaquine (PQ), efficiently killing the earliest stages of the parasites that become either primary hepatic schizonts or hypnozoites (50% inhibitory concentration [IC(50)] for hypnozoites, KAI407, 0.69 μM, and PQ, 0.84 μM; for developing liver stages, KAI407, 0.64 μM, and PQ, 0.37 μM). When given as causal prophylaxis, a single oral dose of 100 mg/kg of body weight prevented blood stage parasitemia in mice. From these results, we conclude that KAI407 may represent a new compound class for P. vivax malaria prophylaxis and potentially a radical cure. American Society for Microbiology 2014-03 /pmc/articles/PMC3957848/ /pubmed/24366744 http://dx.doi.org/10.1128/AAC.01927-13 Text en Copyright © 2014 Zeeman et al. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution 3.0 Unported license (http://creativecommons.org/licenses/by/3.0/) . |
spellingShingle | Experimental Therapeutics Zeeman, Anne-Marie van Amsterdam, Sandra M. McNamara, Case W. Voorberg-van der Wel, Annemarie Klooster, Els J. van den Berg, Alexander Remarque, Edmond J. Plouffe, David M. van Gemert, Geert-Jan Luty, Adrian Sauerwein, Robert Gagaring, Kerstin Borboa, Rachel Chen, Zhong Kuhen, Kelli Glynne, Richard J. Chatterjee, Arnab K. Nagle, Advait Roland, Jason Winzeler, Elizabeth A. Leroy, Didier Campo, Brice Diagana, Thierry T. Yeung, Bryan K. S. Thomas, Alan W. Kocken, Clemens H. M. KAI407, a Potent Non-8-Aminoquinoline Compound That Kills Plasmodium cynomolgi Early Dormant Liver Stage Parasites In Vitro |
title | KAI407, a Potent Non-8-Aminoquinoline Compound That Kills Plasmodium cynomolgi Early Dormant Liver Stage Parasites In Vitro |
title_full | KAI407, a Potent Non-8-Aminoquinoline Compound That Kills Plasmodium cynomolgi Early Dormant Liver Stage Parasites In Vitro |
title_fullStr | KAI407, a Potent Non-8-Aminoquinoline Compound That Kills Plasmodium cynomolgi Early Dormant Liver Stage Parasites In Vitro |
title_full_unstemmed | KAI407, a Potent Non-8-Aminoquinoline Compound That Kills Plasmodium cynomolgi Early Dormant Liver Stage Parasites In Vitro |
title_short | KAI407, a Potent Non-8-Aminoquinoline Compound That Kills Plasmodium cynomolgi Early Dormant Liver Stage Parasites In Vitro |
title_sort | kai407, a potent non-8-aminoquinoline compound that kills plasmodium cynomolgi early dormant liver stage parasites in vitro |
topic | Experimental Therapeutics |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3957848/ https://www.ncbi.nlm.nih.gov/pubmed/24366744 http://dx.doi.org/10.1128/AAC.01927-13 |
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