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Coumarin-Annulated Ferrocenyl 1,3-Oxazine Derivatives Possessing In Vitro Antimalarial and Antitrypanosomal Potency

A tailored series of coumarin-based ferrocenyl 1,3-oxazine hybrid compounds was synthesized and investigated for potential antiparasitic activity, drawing inspiration from the established biological efficacy of the constituent chemical motifs. The structural identity of the synthesized compounds was...

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Autores principales: Mbaba, Mziyanda, Dingle, Laura M. K., Zulu, Ayanda I., Laming, Dustin, Swart, Tarryn, de la Mare, Jo-Anne, Hoppe, Heinrich C., Edkins, Adrienne L., Khanye, Setshaba D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7958634/
https://www.ncbi.nlm.nih.gov/pubmed/33801371
http://dx.doi.org/10.3390/molecules26051333
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author Mbaba, Mziyanda
Dingle, Laura M. K.
Zulu, Ayanda I.
Laming, Dustin
Swart, Tarryn
de la Mare, Jo-Anne
Hoppe, Heinrich C.
Edkins, Adrienne L.
Khanye, Setshaba D.
author_facet Mbaba, Mziyanda
Dingle, Laura M. K.
Zulu, Ayanda I.
Laming, Dustin
Swart, Tarryn
de la Mare, Jo-Anne
Hoppe, Heinrich C.
Edkins, Adrienne L.
Khanye, Setshaba D.
author_sort Mbaba, Mziyanda
collection PubMed
description A tailored series of coumarin-based ferrocenyl 1,3-oxazine hybrid compounds was synthesized and investigated for potential antiparasitic activity, drawing inspiration from the established biological efficacy of the constituent chemical motifs. The structural identity of the synthesized compounds was confirmed by common spectroscopic techniques: NMR, HRMS and IR. Biological evaluation studies reveal that the compounds exhibit higher in vitro antiparasitic potency against the chemosensitive malarial strain (3D7 P. falciparum) over the investigated trypanosomiasis causal agent (T. b. brucei 427) with mostly single digit micromolar IC(50) values. When read in tandem with the biological performance of previously reported structurally similar non-coumarin, phenyl derivatives (i.e., ferrocenyl 1,3-benzoxazines and α-aminocresols), structure-activity relationship analyses suggest that the presence of the coumarin nucleus is tolerated for biological activity though this may lead to reduced efficacy. Preliminary mechanistic studies with the most promising compound (11b) support hemozoin inhibition and DNA interaction as likely mechanistic modalities by which this class of compounds may act to produce plasmocidal and antitrypanosomal effects.
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spelling pubmed-79586342021-03-16 Coumarin-Annulated Ferrocenyl 1,3-Oxazine Derivatives Possessing In Vitro Antimalarial and Antitrypanosomal Potency Mbaba, Mziyanda Dingle, Laura M. K. Zulu, Ayanda I. Laming, Dustin Swart, Tarryn de la Mare, Jo-Anne Hoppe, Heinrich C. Edkins, Adrienne L. Khanye, Setshaba D. Molecules Article A tailored series of coumarin-based ferrocenyl 1,3-oxazine hybrid compounds was synthesized and investigated for potential antiparasitic activity, drawing inspiration from the established biological efficacy of the constituent chemical motifs. The structural identity of the synthesized compounds was confirmed by common spectroscopic techniques: NMR, HRMS and IR. Biological evaluation studies reveal that the compounds exhibit higher in vitro antiparasitic potency against the chemosensitive malarial strain (3D7 P. falciparum) over the investigated trypanosomiasis causal agent (T. b. brucei 427) with mostly single digit micromolar IC(50) values. When read in tandem with the biological performance of previously reported structurally similar non-coumarin, phenyl derivatives (i.e., ferrocenyl 1,3-benzoxazines and α-aminocresols), structure-activity relationship analyses suggest that the presence of the coumarin nucleus is tolerated for biological activity though this may lead to reduced efficacy. Preliminary mechanistic studies with the most promising compound (11b) support hemozoin inhibition and DNA interaction as likely mechanistic modalities by which this class of compounds may act to produce plasmocidal and antitrypanosomal effects. MDPI 2021-03-02 /pmc/articles/PMC7958634/ /pubmed/33801371 http://dx.doi.org/10.3390/molecules26051333 Text en © 2021 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Mbaba, Mziyanda
Dingle, Laura M. K.
Zulu, Ayanda I.
Laming, Dustin
Swart, Tarryn
de la Mare, Jo-Anne
Hoppe, Heinrich C.
Edkins, Adrienne L.
Khanye, Setshaba D.
Coumarin-Annulated Ferrocenyl 1,3-Oxazine Derivatives Possessing In Vitro Antimalarial and Antitrypanosomal Potency
title Coumarin-Annulated Ferrocenyl 1,3-Oxazine Derivatives Possessing In Vitro Antimalarial and Antitrypanosomal Potency
title_full Coumarin-Annulated Ferrocenyl 1,3-Oxazine Derivatives Possessing In Vitro Antimalarial and Antitrypanosomal Potency
title_fullStr Coumarin-Annulated Ferrocenyl 1,3-Oxazine Derivatives Possessing In Vitro Antimalarial and Antitrypanosomal Potency
title_full_unstemmed Coumarin-Annulated Ferrocenyl 1,3-Oxazine Derivatives Possessing In Vitro Antimalarial and Antitrypanosomal Potency
title_short Coumarin-Annulated Ferrocenyl 1,3-Oxazine Derivatives Possessing In Vitro Antimalarial and Antitrypanosomal Potency
title_sort coumarin-annulated ferrocenyl 1,3-oxazine derivatives possessing in vitro antimalarial and antitrypanosomal potency
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7958634/
https://www.ncbi.nlm.nih.gov/pubmed/33801371
http://dx.doi.org/10.3390/molecules26051333
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