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Design, Synthesis and Evaluation of Bifunctional Acridinine−Naphthalenediimide Redox-Active Conjugates as Antimalarials
[Image: see text] A novel class of bifunctional molecules was synthesized integrating acridine (Ac) and redox-active naphthalenediimide (NDI) scaffolds directly and through a flexible linker (en). We evaluated in vitro antiplasmodial activity, physicochemical properties, and a possible mode of actio...
Autores principales: | , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
American Chemical Society
2016
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Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6044610/ https://www.ncbi.nlm.nih.gov/pubmed/30023479 http://dx.doi.org/10.1021/acsomega.6b00060 |
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author | Dana, Srikanta Keshri, Sudhir Kumar Shukla, Jyoti Vikramdeo, Kunwar Somesh Mondal, Neelima Mukhopadhyay, Pritam Dhar, Suman Kumar |
author_facet | Dana, Srikanta Keshri, Sudhir Kumar Shukla, Jyoti Vikramdeo, Kunwar Somesh Mondal, Neelima Mukhopadhyay, Pritam Dhar, Suman Kumar |
author_sort | Dana, Srikanta |
collection | PubMed |
description | [Image: see text] A novel class of bifunctional molecules was synthesized integrating acridine (Ac) and redox-active naphthalenediimide (NDI) scaffolds directly and through a flexible linker (en). We evaluated in vitro antiplasmodial activity, physicochemical properties, and a possible mode of action. Theoretical studies suggested electronic segmentation between the electron-rich Ac and electron-deficient NDI scaffolds. Orthogonal Ac–NDI molecules showed activities in the micromolar to submicromolar range against a chloroquine (CQ)-sensitive strain of human malaria pathogen Plasmodium falciparum (maximum activity, IC(50): 0.419 μM). The flexible Ac–en–NDI molecules were most potent and showed activity in the nanomolar range against both CQ-sensitive (with most effective compounds, IC(50): 3.65 and 4.33 nM) as well as CQ-resistant (with most effective compounds, IC(50): 52.20 and 28.53 nM) strains of P. falciparum. Significantly, with CQ-resistant strains, the activity of the most effective compounds was 1 order of magnitude better than that of standard drug CQ. Ac–en–NDI-conjugated molecules were significantly more potent than the individual NDI and Ac-based molecules. The structure–activity relationship (SAR) suggests that the flexible spacer (en) linking the Ac and NDI scaffolds plays a vital role in exhibiting improved potency. None of the molecules triggered hemolysis in culture, and the most potent compounds did not show cytotoxicity in vitro against mammalian fibroblast NIH3T3 cells at their respective IC(50) values. The other significant outcome of this work is that some of the investigated molecules have the potential to affect multiple processes in the parasite including the hemozoin formation in digestive vacuoles (DVs), mitochondrial membrane potential, and the redox homeostasis of the parasite. |
format | Online Article Text |
id | pubmed-6044610 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2016 |
publisher | American Chemical Society |
record_format | MEDLINE/PubMed |
spelling | pubmed-60446102018-07-16 Design, Synthesis and Evaluation of Bifunctional Acridinine−Naphthalenediimide Redox-Active Conjugates as Antimalarials Dana, Srikanta Keshri, Sudhir Kumar Shukla, Jyoti Vikramdeo, Kunwar Somesh Mondal, Neelima Mukhopadhyay, Pritam Dhar, Suman Kumar ACS Omega [Image: see text] A novel class of bifunctional molecules was synthesized integrating acridine (Ac) and redox-active naphthalenediimide (NDI) scaffolds directly and through a flexible linker (en). We evaluated in vitro antiplasmodial activity, physicochemical properties, and a possible mode of action. Theoretical studies suggested electronic segmentation between the electron-rich Ac and electron-deficient NDI scaffolds. Orthogonal Ac–NDI molecules showed activities in the micromolar to submicromolar range against a chloroquine (CQ)-sensitive strain of human malaria pathogen Plasmodium falciparum (maximum activity, IC(50): 0.419 μM). The flexible Ac–en–NDI molecules were most potent and showed activity in the nanomolar range against both CQ-sensitive (with most effective compounds, IC(50): 3.65 and 4.33 nM) as well as CQ-resistant (with most effective compounds, IC(50): 52.20 and 28.53 nM) strains of P. falciparum. Significantly, with CQ-resistant strains, the activity of the most effective compounds was 1 order of magnitude better than that of standard drug CQ. Ac–en–NDI-conjugated molecules were significantly more potent than the individual NDI and Ac-based molecules. The structure–activity relationship (SAR) suggests that the flexible spacer (en) linking the Ac and NDI scaffolds plays a vital role in exhibiting improved potency. None of the molecules triggered hemolysis in culture, and the most potent compounds did not show cytotoxicity in vitro against mammalian fibroblast NIH3T3 cells at their respective IC(50) values. The other significant outcome of this work is that some of the investigated molecules have the potential to affect multiple processes in the parasite including the hemozoin formation in digestive vacuoles (DVs), mitochondrial membrane potential, and the redox homeostasis of the parasite. American Chemical Society 2016-09-01 /pmc/articles/PMC6044610/ /pubmed/30023479 http://dx.doi.org/10.1021/acsomega.6b00060 Text en Copyright © 2016 American Chemical Society This is an open access article published under an ACS AuthorChoice License (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html) , which permits copying and redistribution of the article or any adaptations for non-commercial purposes. |
spellingShingle | Dana, Srikanta Keshri, Sudhir Kumar Shukla, Jyoti Vikramdeo, Kunwar Somesh Mondal, Neelima Mukhopadhyay, Pritam Dhar, Suman Kumar Design, Synthesis and Evaluation of Bifunctional Acridinine−Naphthalenediimide Redox-Active Conjugates as Antimalarials |
title | Design, Synthesis and Evaluation of Bifunctional Acridinine−Naphthalenediimide
Redox-Active Conjugates as Antimalarials |
title_full | Design, Synthesis and Evaluation of Bifunctional Acridinine−Naphthalenediimide
Redox-Active Conjugates as Antimalarials |
title_fullStr | Design, Synthesis and Evaluation of Bifunctional Acridinine−Naphthalenediimide
Redox-Active Conjugates as Antimalarials |
title_full_unstemmed | Design, Synthesis and Evaluation of Bifunctional Acridinine−Naphthalenediimide
Redox-Active Conjugates as Antimalarials |
title_short | Design, Synthesis and Evaluation of Bifunctional Acridinine−Naphthalenediimide
Redox-Active Conjugates as Antimalarials |
title_sort | design, synthesis and evaluation of bifunctional acridinine−naphthalenediimide
redox-active conjugates as antimalarials |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6044610/ https://www.ncbi.nlm.nih.gov/pubmed/30023479 http://dx.doi.org/10.1021/acsomega.6b00060 |
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