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A novel class of fast‐acting antimalarial agents: Substituted 15‐membered azalides

BACKGROUND AND PURPOSE: Efficacy of current antimalarial treatments is declining as a result of increasing antimalarial drug resistance, so new and potent antimalarial drugs are urgently needed. Azithromycin, an azalide antibiotic, was found useful in malaria therapy, but its efficacy in humans is l...

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Autores principales: Peric, Mihaela, Pešić, Dijana, Alihodžić, Sulejman, Fajdetić, Andrea, Herreros, Esperanza, Gamo, Francisco Javier, Angulo‐Barturen, Iñigo, Jiménez‐Díaz, María Belén, Ferrer‐Bazaga, Santiago, Martínez, María S., Gargallo‐Viola, Domingo, Mathis, Amanda, Kessler, Albane, Banjanac, Mihailo, Padovan, Jasna, Bencetić Mihaljević, Vlatka, Munic Kos, Vesna, Bukvić, Mirjana, Eraković Haber, Vesna, Spaventi, Radan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9328652/
https://www.ncbi.nlm.nih.gov/pubmed/33085774
http://dx.doi.org/10.1111/bph.15292
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author Peric, Mihaela
Pešić, Dijana
Alihodžić, Sulejman
Fajdetić, Andrea
Herreros, Esperanza
Gamo, Francisco Javier
Angulo‐Barturen, Iñigo
Jiménez‐Díaz, María Belén
Ferrer‐Bazaga, Santiago
Martínez, María S.
Gargallo‐Viola, Domingo
Mathis, Amanda
Kessler, Albane
Banjanac, Mihailo
Padovan, Jasna
Bencetić Mihaljević, Vlatka
Munic Kos, Vesna
Bukvić, Mirjana
Eraković Haber, Vesna
Spaventi, Radan
author_facet Peric, Mihaela
Pešić, Dijana
Alihodžić, Sulejman
Fajdetić, Andrea
Herreros, Esperanza
Gamo, Francisco Javier
Angulo‐Barturen, Iñigo
Jiménez‐Díaz, María Belén
Ferrer‐Bazaga, Santiago
Martínez, María S.
Gargallo‐Viola, Domingo
Mathis, Amanda
Kessler, Albane
Banjanac, Mihailo
Padovan, Jasna
Bencetić Mihaljević, Vlatka
Munic Kos, Vesna
Bukvić, Mirjana
Eraković Haber, Vesna
Spaventi, Radan
author_sort Peric, Mihaela
collection PubMed
description BACKGROUND AND PURPOSE: Efficacy of current antimalarial treatments is declining as a result of increasing antimalarial drug resistance, so new and potent antimalarial drugs are urgently needed. Azithromycin, an azalide antibiotic, was found useful in malaria therapy, but its efficacy in humans is low. EXPERIMENTAL APPROACH: Four compounds belonging to structurally different azalide classes were tested and their activities compared to azithromycin and chloroquine. in vitro evaluation included testing against sensitive and resistant Plasmodium falciparum , cytotoxicity against HepG2 cells, accumulation and retention in human erythrocytes, antibacterial activity, and mode of action studies (delayed death phenotype and haem polymerization). in vivo assessment enabled determination of pharmacokinetic profiles in mice, rats, dogs, and monkeys and in vivo efficacy in a humanized mouse model. KEY RESULTS: Novel fast‐acting azalides were highly active in vitro against P. falciparum strains exhibiting various resistance patterns, including chloroquine‐resistant strains. Excellent antimalarial activity was confirmed in a P. falciparum murine model by strong inhibition of haemozoin‐containing trophozoites and quick clearance of parasites from the blood. Pharmacokinetic analysis revealed that compounds are metabolically stable and have moderate oral bioavailability, long half‐lives, low clearance, and substantial exposures, with blood cells as the preferred compartment, especially infected erythrocytes. Fast anti‐plasmodial action is achieved by the high accumulation into infected erythrocytes and interference with parasite haem polymerization, a mode of action different from slow‐acting azithromycin. CONCLUSION AND IMPLICATIONS: The hybrid derivatives described here represent excellent antimalarial drug candidates with the potential for clinical use in malaria therapy.
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spelling pubmed-93286522022-07-30 A novel class of fast‐acting antimalarial agents: Substituted 15‐membered azalides Peric, Mihaela Pešić, Dijana Alihodžić, Sulejman Fajdetić, Andrea Herreros, Esperanza Gamo, Francisco Javier Angulo‐Barturen, Iñigo Jiménez‐Díaz, María Belén Ferrer‐Bazaga, Santiago Martínez, María S. Gargallo‐Viola, Domingo Mathis, Amanda Kessler, Albane Banjanac, Mihailo Padovan, Jasna Bencetić Mihaljević, Vlatka Munic Kos, Vesna Bukvić, Mirjana Eraković Haber, Vesna Spaventi, Radan Br J Pharmacol Research Papers BACKGROUND AND PURPOSE: Efficacy of current antimalarial treatments is declining as a result of increasing antimalarial drug resistance, so new and potent antimalarial drugs are urgently needed. Azithromycin, an azalide antibiotic, was found useful in malaria therapy, but its efficacy in humans is low. EXPERIMENTAL APPROACH: Four compounds belonging to structurally different azalide classes were tested and their activities compared to azithromycin and chloroquine. in vitro evaluation included testing against sensitive and resistant Plasmodium falciparum , cytotoxicity against HepG2 cells, accumulation and retention in human erythrocytes, antibacterial activity, and mode of action studies (delayed death phenotype and haem polymerization). in vivo assessment enabled determination of pharmacokinetic profiles in mice, rats, dogs, and monkeys and in vivo efficacy in a humanized mouse model. KEY RESULTS: Novel fast‐acting azalides were highly active in vitro against P. falciparum strains exhibiting various resistance patterns, including chloroquine‐resistant strains. Excellent antimalarial activity was confirmed in a P. falciparum murine model by strong inhibition of haemozoin‐containing trophozoites and quick clearance of parasites from the blood. Pharmacokinetic analysis revealed that compounds are metabolically stable and have moderate oral bioavailability, long half‐lives, low clearance, and substantial exposures, with blood cells as the preferred compartment, especially infected erythrocytes. Fast anti‐plasmodial action is achieved by the high accumulation into infected erythrocytes and interference with parasite haem polymerization, a mode of action different from slow‐acting azithromycin. CONCLUSION AND IMPLICATIONS: The hybrid derivatives described here represent excellent antimalarial drug candidates with the potential for clinical use in malaria therapy. John Wiley and Sons Inc. 2020-12-16 2021-01 /pmc/articles/PMC9328652/ /pubmed/33085774 http://dx.doi.org/10.1111/bph.15292 Text en © 2020 The Authors. British Journal of Clinical Pharmacology published by John Wiley & Sons Ltd on behalf of British Pharmacological Society https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Papers
Peric, Mihaela
Pešić, Dijana
Alihodžić, Sulejman
Fajdetić, Andrea
Herreros, Esperanza
Gamo, Francisco Javier
Angulo‐Barturen, Iñigo
Jiménez‐Díaz, María Belén
Ferrer‐Bazaga, Santiago
Martínez, María S.
Gargallo‐Viola, Domingo
Mathis, Amanda
Kessler, Albane
Banjanac, Mihailo
Padovan, Jasna
Bencetić Mihaljević, Vlatka
Munic Kos, Vesna
Bukvić, Mirjana
Eraković Haber, Vesna
Spaventi, Radan
A novel class of fast‐acting antimalarial agents: Substituted 15‐membered azalides
title A novel class of fast‐acting antimalarial agents: Substituted 15‐membered azalides
title_full A novel class of fast‐acting antimalarial agents: Substituted 15‐membered azalides
title_fullStr A novel class of fast‐acting antimalarial agents: Substituted 15‐membered azalides
title_full_unstemmed A novel class of fast‐acting antimalarial agents: Substituted 15‐membered azalides
title_short A novel class of fast‐acting antimalarial agents: Substituted 15‐membered azalides
title_sort novel class of fast‐acting antimalarial agents: substituted 15‐membered azalides
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9328652/
https://www.ncbi.nlm.nih.gov/pubmed/33085774
http://dx.doi.org/10.1111/bph.15292
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