Heuristic analysis of structure, activity and selectivity relationships of isocoumarin derivatives as potential antifungal agents

A series of recently synthetized and biologically evaluated isocoumarin derivatives (n=16, including voriconazole as standard) were used for heuristic analysis of structure, activity and selectivity relationships. While research of isocoumarins found in the literature was mainly focused on antifunga...

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Main Authors: Simić Milena, Erić Slavica
Format: Article
Language:srp
Published: Pharmaceutical Association of Serbia, Belgrade, Serbia 2024-01-01
Series:Arhiv za farmaciju
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Online Access:https://scindeks-clanci.ceon.rs/data/pdf/0004-1963/2024/0004-19632406796S.pdf
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author Simić Milena
Erić Slavica
author_facet Simić Milena
Erić Slavica
author_sort Simić Milena
collection DOAJ
description A series of recently synthetized and biologically evaluated isocoumarin derivatives (n=16, including voriconazole as standard) were used for heuristic analysis of structure, activity and selectivity relationships. While research of isocoumarins found in the literature was mainly focused on antifungal properties of 3-alkyl/aryl compounds, this study used structures synthetized by a strategy merging antifungal properties of isocoumarins with some known fungal pharmacophores. Rationalization of activity and selectivity was performed using the results of testing against C. albicans (CA) and testing on a normal human lung fibroblast cell line (MRC5). Structures were created and optimized using the ChemDraw Ultra 8.0 and MOPAC software. Calculation of molecular descriptors and the heuristic method, using the Codessa software, were applied for the selection of the most significant descriptors for activity against CA, as well as selectivity against CA versus MRC5. Biological tests for determination of activity against CA used in studies include inhibition of hyphal growth, so the activity against resistant cells was also considered. The supposed mechanisms of action, including lacton opening and electrophilic attack on nucleophiles, as well as inhibition of lanosterol 14a-demethylase (CYP51), were in agreement with the results obtained. The results could serve as a basis for further optimization of isocoumarin derivatives with respect to better activity, selectivity and action against resistant species.
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institution Kabale University
issn 0004-1963
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language srp
publishDate 2024-01-01
publisher Pharmaceutical Association of Serbia, Belgrade, Serbia
record_format Article
series Arhiv za farmaciju
spelling doaj-art-da031c6ed9154d4287ddab5a01d7dd242025-01-08T15:12:31ZsrpPharmaceutical Association of Serbia, Belgrade, SerbiaArhiv za farmaciju0004-19632217-87672024-01-0174679680810.5937/arhfarm74-545390004-19632406796SHeuristic analysis of structure, activity and selectivity relationships of isocoumarin derivatives as potential antifungal agentsSimić Milena0https://orcid.org/0000-0002-0865-5509Erić Slavica1https://orcid.org/0000-0002-6381-9940University of Belgrade, Faculty of Pharmacy, Belgrade, SerbiaUniversity of Belgrade, Faculty of Pharmacy, Belgrade, SerbiaA series of recently synthetized and biologically evaluated isocoumarin derivatives (n=16, including voriconazole as standard) were used for heuristic analysis of structure, activity and selectivity relationships. While research of isocoumarins found in the literature was mainly focused on antifungal properties of 3-alkyl/aryl compounds, this study used structures synthetized by a strategy merging antifungal properties of isocoumarins with some known fungal pharmacophores. Rationalization of activity and selectivity was performed using the results of testing against C. albicans (CA) and testing on a normal human lung fibroblast cell line (MRC5). Structures were created and optimized using the ChemDraw Ultra 8.0 and MOPAC software. Calculation of molecular descriptors and the heuristic method, using the Codessa software, were applied for the selection of the most significant descriptors for activity against CA, as well as selectivity against CA versus MRC5. Biological tests for determination of activity against CA used in studies include inhibition of hyphal growth, so the activity against resistant cells was also considered. The supposed mechanisms of action, including lacton opening and electrophilic attack on nucleophiles, as well as inhibition of lanosterol 14a-demethylase (CYP51), were in agreement with the results obtained. The results could serve as a basis for further optimization of isocoumarin derivatives with respect to better activity, selectivity and action against resistant species.https://scindeks-clanci.ceon.rs/data/pdf/0004-1963/2024/0004-19632406796S.pdfisocoumarinsheuristic analysisc albicanscyp51antifungals
spellingShingle Simić Milena
Erić Slavica
Heuristic analysis of structure, activity and selectivity relationships of isocoumarin derivatives as potential antifungal agents
Arhiv za farmaciju
isocoumarins
heuristic analysis
c albicans
cyp51
antifungals
title Heuristic analysis of structure, activity and selectivity relationships of isocoumarin derivatives as potential antifungal agents
title_full Heuristic analysis of structure, activity and selectivity relationships of isocoumarin derivatives as potential antifungal agents
title_fullStr Heuristic analysis of structure, activity and selectivity relationships of isocoumarin derivatives as potential antifungal agents
title_full_unstemmed Heuristic analysis of structure, activity and selectivity relationships of isocoumarin derivatives as potential antifungal agents
title_short Heuristic analysis of structure, activity and selectivity relationships of isocoumarin derivatives as potential antifungal agents
title_sort heuristic analysis of structure activity and selectivity relationships of isocoumarin derivatives as potential antifungal agents
topic isocoumarins
heuristic analysis
c albicans
cyp51
antifungals
url https://scindeks-clanci.ceon.rs/data/pdf/0004-1963/2024/0004-19632406796S.pdf
work_keys_str_mv AT simicmilena heuristicanalysisofstructureactivityandselectivityrelationshipsofisocoumarinderivativesaspotentialantifungalagents
AT ericslavica heuristicanalysisofstructureactivityandselectivityrelationshipsofisocoumarinderivativesaspotentialantifungalagents