Affiliation:
1. Department of Chemistry, Motilal Nehru College, University of Delhi, South Campus, Delhi, 110021, India
2. Department of Chemistry, Bhaskaracharya College of Applied Sciences, University of Delhi, New Delhi, 110075, India
Abstract
Abstract:
Despite significant scientific progress over the last two decades, malaria remains a global burden that causes thousands of deaths every year. In the absence of effective and practical preven-tive measures, the only current option for reducing the mortality and morbidity of malaria is chemo-therapy. However, due to the minimal stock of active antiparasitic analogs, issues of toxicity, and the repeated appearance of drug resistance, scientists must broaden the arsenal of existing therapies beyond conventional medicinal chemistry. To curb this menace, a series of potential metal-based hybrids have been synthesized and screened. Ferrocene is one of the potent organometallic candi-dates and the hybridization of ferrocene with other pharmacophores results in compounds with en-hanced biological activities. Many researchers have reported the ferrocene compounds as potent pharmacophores and useful as anticancer and antimalarial agents when hybridized with other phar-maceutical hybrids. Drug, such as Ferroquine (FQ, SSR97193), is currently the most advanced or-ganometallic compound developed from the hybridization of ferrocene and chloroquine and has demonstrated great potency in clinical trials against both drug-sensitive and drug-resistant malaria. Not only ferroquine but its derivatives have shown significant activity as antimalarial agents. The present review focuses on the discovery of FQ, the hypothesis of its mode of action, and recent clin-ical trials of ferrocene compounds as a new class of antimalarial agents. The structure-activity rela-tionship (SAR) of ferrocene derivatives is also discussed to provide insight into the rational design of more effective antimalarial candidates. Finally, efforts have been made to discuss the future ex-pectations for ferrocene-based antimalarial drugs.
Publisher
Bentham Science Publishers Ltd.
Subject
Drug Discovery,General Medicine
Reference98 articles.
1. Berman J.J.; Taxonomic Guide to Infectious Diseases: Understanding the Biologic Classes of Pathogenic Organisms, First edition 2012,103-109
2. Menkin-Smith L.; Winders W.T.; Plasmodium Vivax Malaria. 2019
3. Adams J.H.; Mueller I.; The biology of Plasmodium vivax. Cold Spring Harb Perspect Med 2017,7(9),a025585
4. World Health Organization (WHO). World Malaria ReportAvailable from: 2021
5. Global Malaria Control and Elimination: Report of a technical review. January 17-18, Geneva, Switzerland.2008