Synthesis and antiplasmodial activity of EG-artemisinin ethers and artemisinin-quinoline hybrids

The aim of this study was to synthesize a series of ethylene glycol (EG) ethers and quinoline hybrids of the antimalarial drug artemisinin and to evaluate their antimalarial activity in vitro against Plasmodium falciparum strains. The ethers were synthesized in a one-step process by coupling ethylene glycol (EG) moieties of various chain lengths to carbon 10 of dihydroartemisinin, while the artemisinin-quinoline hybrids were obtained by condensation of dihydroartemisinin with different amine-functionalized quinoline moieties. For solubility reasons, part of the hybrids were converted to oxalate salts upon reaction of the free bases with oxalic acid. All the synthesized compounds were tested against chloroquine (CQ) susceptible (CQS) D10 and chloroquine resistant (CQR) Dd2 Plasmodiumfalciparum strains. The IC50 values revealed that all the ethers were active against both strains but less potent than artemether irrespective of the strain. However, they were more active than CQ against the resistant strain. Ether 8 featuring three EO units was the most active of all ethers. It showed activity similar to that of CQ against D10 and much more potency than CQ against Dd2 strain (IC50, 0.023 vs. 0.473 nM). The hybrids and their salts were also all active against both strains. Hybrid 19 which possessed an isopropyl linker and its oxalate salt 19A: were the most active against the Dd2 strain. They were more potent than CQ (IC50, 0.009 and 0.011 vs. 0.255 nM, respectively).

Saved in:
Bibliographic Details
Main Authors: N'Da,David D., Breytenbach,Jaco C.
Format: Digital revista
Language:English
Published: The South African Chemical Institute 2011
Online Access:http://www.scielo.org.za/scielo.php?script=sci_arttext&pid=S0379-43502011000100024
Tags: Add Tag
No Tags, Be the first to tag this record!
id oai:scielo:S0379-43502011000100024
record_format ojs
spelling oai:scielo:S0379-435020110001000242015-07-16Synthesis and antiplasmodial activity of EG-artemisinin ethers and artemisinin-quinoline hybridsN'Da,David D.Breytenbach,Jaco C. Artemisinin (ART) dihydroartemisinin (DHA) artemether (ARM) chloroquine (CQ) malaria Plasmodium falciparum ethylene glycol) (EG) ethylene oxide (EO) hybrid The aim of this study was to synthesize a series of ethylene glycol (EG) ethers and quinoline hybrids of the antimalarial drug artemisinin and to evaluate their antimalarial activity in vitro against Plasmodium falciparum strains. The ethers were synthesized in a one-step process by coupling ethylene glycol (EG) moieties of various chain lengths to carbon 10 of dihydroartemisinin, while the artemisinin-quinoline hybrids were obtained by condensation of dihydroartemisinin with different amine-functionalized quinoline moieties. For solubility reasons, part of the hybrids were converted to oxalate salts upon reaction of the free bases with oxalic acid. All the synthesized compounds were tested against chloroquine (CQ) susceptible (CQS) D10 and chloroquine resistant (CQR) Dd2 Plasmodiumfalciparum strains. The IC50 values revealed that all the ethers were active against both strains but less potent than artemether irrespective of the strain. However, they were more active than CQ against the resistant strain. Ether 8 featuring three EO units was the most active of all ethers. It showed activity similar to that of CQ against D10 and much more potency than CQ against Dd2 strain (IC50, 0.023 vs. 0.473 nM). The hybrids and their salts were also all active against both strains. Hybrid 19 which possessed an isopropyl linker and its oxalate salt 19A: were the most active against the Dd2 strain. They were more potent than CQ (IC50, 0.009 and 0.011 vs. 0.255 nM, respectively).The South African Chemical InstituteSouth African Journal of Chemistry v.64 20112011-01-01journal articletext/htmlhttp://www.scielo.org.za/scielo.php?script=sci_arttext&pid=S0379-43502011000100024en
institution SCIELO
collection OJS
country Sudáfrica
countrycode ZA
component Revista
access En linea
databasecode rev-scielo-za
tag revista
region África del Sur
libraryname SciELO
language English
format Digital
author N'Da,David D.
Breytenbach,Jaco C.
spellingShingle N'Da,David D.
Breytenbach,Jaco C.
Synthesis and antiplasmodial activity of EG-artemisinin ethers and artemisinin-quinoline hybrids
author_facet N'Da,David D.
Breytenbach,Jaco C.
author_sort N'Da,David D.
title Synthesis and antiplasmodial activity of EG-artemisinin ethers and artemisinin-quinoline hybrids
title_short Synthesis and antiplasmodial activity of EG-artemisinin ethers and artemisinin-quinoline hybrids
title_full Synthesis and antiplasmodial activity of EG-artemisinin ethers and artemisinin-quinoline hybrids
title_fullStr Synthesis and antiplasmodial activity of EG-artemisinin ethers and artemisinin-quinoline hybrids
title_full_unstemmed Synthesis and antiplasmodial activity of EG-artemisinin ethers and artemisinin-quinoline hybrids
title_sort synthesis and antiplasmodial activity of eg-artemisinin ethers and artemisinin-quinoline hybrids
description The aim of this study was to synthesize a series of ethylene glycol (EG) ethers and quinoline hybrids of the antimalarial drug artemisinin and to evaluate their antimalarial activity in vitro against Plasmodium falciparum strains. The ethers were synthesized in a one-step process by coupling ethylene glycol (EG) moieties of various chain lengths to carbon 10 of dihydroartemisinin, while the artemisinin-quinoline hybrids were obtained by condensation of dihydroartemisinin with different amine-functionalized quinoline moieties. For solubility reasons, part of the hybrids were converted to oxalate salts upon reaction of the free bases with oxalic acid. All the synthesized compounds were tested against chloroquine (CQ) susceptible (CQS) D10 and chloroquine resistant (CQR) Dd2 Plasmodiumfalciparum strains. The IC50 values revealed that all the ethers were active against both strains but less potent than artemether irrespective of the strain. However, they were more active than CQ against the resistant strain. Ether 8 featuring three EO units was the most active of all ethers. It showed activity similar to that of CQ against D10 and much more potency than CQ against Dd2 strain (IC50, 0.023 vs. 0.473 nM). The hybrids and their salts were also all active against both strains. Hybrid 19 which possessed an isopropyl linker and its oxalate salt 19A: were the most active against the Dd2 strain. They were more potent than CQ (IC50, 0.009 and 0.011 vs. 0.255 nM, respectively).
publisher The South African Chemical Institute
publishDate 2011
url http://www.scielo.org.za/scielo.php?script=sci_arttext&pid=S0379-43502011000100024
work_keys_str_mv AT ndadavidd synthesisandantiplasmodialactivityofegartemisininethersandartemisininquinolinehybrids
AT breytenbachjacoc synthesisandantiplasmodialactivityofegartemisininethersandartemisininquinolinehybrids
_version_ 1756006622001364992