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Endoperoxide antimalarials: development, structural diversity and pharmacodynamic aspects with reference to 1,2,4-trioxane-based structural scaffold.
- Source :
-
Drug design, development and therapy [Drug Des Devel Ther] 2016 Nov 01; Vol. 10, pp. 3575-3590. Date of Electronic Publication: 2016 Nov 01 (Print Publication: 2016). - Publication Year :
- 2016
-
Abstract
- Malaria disease continues to be a major health problem worldwide due to the emergence of multidrug-resistant strains of Plasmodium falciparum . In recent days, artemisinin (ART)-based drugs and combination therapies remain the drugs of choice for resistant P. falciparum malaria. However, resistance to ART-based drugs has begun to appear in some parts of the world. Endoperoxide compounds (natural/semisynthetic/synthetic) representing a huge number of antimalarial agents possess a wide structural diversity with a desired antimalarial effectiveness against resistant P. falciparum malaria. The 1,2,4-trioxane ring system lacking the lactone ring that constitutes the most important endoperoxide structural scaffold is believed to be the key pharmacophoric moiety and is primarily responsible for the pharmacodynamic potential of endoperoxide-based antimalarials. Due to this reason, research into endoperoxide, particularly 1,2,4-trioxane-, 1,2,4-trioxolane- and 1,2,4,5-teraoxane-based scaffolds, has gained significant interest in recent years for developing antimalarial drugs against resistant malaria. In this paper, a comprehensive effort has been made to review the development of endoperoxide antimalarials from traditional antimalarial leads (natural/semisynthetic) and structural diversity of endoperoxide molecules derived from 1,2,4-trioxane-, 1,2,4-trioxolane- and 1,2,4,5-teraoxane-based structural scaffolds, including their chimeric (hybrid) molecules, which are newer and potent antimalarial agents.<br />Competing Interests: The authors report no conflicts of interest in this work.
- Subjects :
- Animals
Artemisinins chemistry
Artemisinins pharmacology
Drug Resistance
Humans
Malaria, Falciparum parasitology
Molecular Structure
Plasmodium falciparum growth & development
Plasmodium falciparum pathogenicity
Structure-Activity Relationship
Antimalarials chemical synthesis
Antimalarials pharmacology
Drug Design
Heterocyclic Compounds chemical synthesis
Heterocyclic Compounds pharmacology
Malaria, Falciparum drug therapy
Peroxides chemical synthesis
Peroxides pharmacology
Plasmodium falciparum drug effects
Subjects
Details
- Language :
- English
- ISSN :
- 1177-8881
- Volume :
- 10
- Database :
- MEDLINE
- Journal :
- Drug design, development and therapy
- Publication Type :
- Academic Journal
- Accession number :
- 27843298
- Full Text :
- https://doi.org/10.2147/DDDT.S118116