Cargando…
A Comparative Analysis of Radical Scavenging, Antifungal and Enzyme Inhibition Activity of 3′-8″-Biflavones and Their Monomeric Subunits
Biflavonoids are dimeric forms of flavonoids that have recently gained importance as an effective new scaffold for drug discovery. In particular, 3′-8″-biflavones exhibit antiviral and antimicrobial activity and are promising molecules for the treatment of neurodegenerative and metabolic diseases as...
Autores principales: | , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2023
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10604771/ https://www.ncbi.nlm.nih.gov/pubmed/37891933 http://dx.doi.org/10.3390/antiox12101854 |
_version_ | 1785126914939158528 |
---|---|
author | Jurčević Šangut, Iva Šarkanj, Bojan Karalija, Erna Šamec, Dunja |
author_facet | Jurčević Šangut, Iva Šarkanj, Bojan Karalija, Erna Šamec, Dunja |
author_sort | Jurčević Šangut, Iva |
collection | PubMed |
description | Biflavonoids are dimeric forms of flavonoids that have recently gained importance as an effective new scaffold for drug discovery. In particular, 3′-8″-biflavones exhibit antiviral and antimicrobial activity and are promising molecules for the treatment of neurodegenerative and metabolic diseases as well as cancer therapies. In the present study, we directly compared 3′-8″-biflavones (amentoflavone, bilobetin, ginkgetin, isoginkgetin, and sciadopitysin) and their monomeric subunits (apigenin, genkwanin, and acacetin) and evaluated their radical scavenging activity (with DPPH), antifungal activity against mycotoxigenic fungi (Alternaria alternata, Aspergillus flavus, Aspergillus ochraceus, Fusarium graminearum, and Fusarium verticillioides), and inhibitory activity on enzymes (acetylcholinesterase, tyrosinase, α-amylase, and α-glucosidase). All the tested compounds showed weak radical scavenging activity, while antifungal activity strongly depended on the tested concentration and fungal species. Biflavonoids, especially ginkgetin and isoginkgetin, proved to be potent acetylcholinesterase inhibitors, whereas monomeric flavonoids showed higher tyrosinase inhibitory activity than the tested 3′-8″-biflavones. Amentoflavone proved to be a potent α-amylase and α-glucosidase inhibitor, and in general, 3′-8″-biflavones showed a stronger inhibitory potential on these enzymes than their monomeric subunits. Thus, we can conclude that 3′-8″-dimerization enhanced acetylcholinesterase, α-amylase, and α-glucosidase activities, but the activity also depends on the number of hydroxyl and methoxy groups in the structure of the compound. |
format | Online Article Text |
id | pubmed-10604771 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2023 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-106047712023-10-28 A Comparative Analysis of Radical Scavenging, Antifungal and Enzyme Inhibition Activity of 3′-8″-Biflavones and Their Monomeric Subunits Jurčević Šangut, Iva Šarkanj, Bojan Karalija, Erna Šamec, Dunja Antioxidants (Basel) Article Biflavonoids are dimeric forms of flavonoids that have recently gained importance as an effective new scaffold for drug discovery. In particular, 3′-8″-biflavones exhibit antiviral and antimicrobial activity and are promising molecules for the treatment of neurodegenerative and metabolic diseases as well as cancer therapies. In the present study, we directly compared 3′-8″-biflavones (amentoflavone, bilobetin, ginkgetin, isoginkgetin, and sciadopitysin) and their monomeric subunits (apigenin, genkwanin, and acacetin) and evaluated their radical scavenging activity (with DPPH), antifungal activity against mycotoxigenic fungi (Alternaria alternata, Aspergillus flavus, Aspergillus ochraceus, Fusarium graminearum, and Fusarium verticillioides), and inhibitory activity on enzymes (acetylcholinesterase, tyrosinase, α-amylase, and α-glucosidase). All the tested compounds showed weak radical scavenging activity, while antifungal activity strongly depended on the tested concentration and fungal species. Biflavonoids, especially ginkgetin and isoginkgetin, proved to be potent acetylcholinesterase inhibitors, whereas monomeric flavonoids showed higher tyrosinase inhibitory activity than the tested 3′-8″-biflavones. Amentoflavone proved to be a potent α-amylase and α-glucosidase inhibitor, and in general, 3′-8″-biflavones showed a stronger inhibitory potential on these enzymes than their monomeric subunits. Thus, we can conclude that 3′-8″-dimerization enhanced acetylcholinesterase, α-amylase, and α-glucosidase activities, but the activity also depends on the number of hydroxyl and methoxy groups in the structure of the compound. MDPI 2023-10-12 /pmc/articles/PMC10604771/ /pubmed/37891933 http://dx.doi.org/10.3390/antiox12101854 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/). |
spellingShingle | Article Jurčević Šangut, Iva Šarkanj, Bojan Karalija, Erna Šamec, Dunja A Comparative Analysis of Radical Scavenging, Antifungal and Enzyme Inhibition Activity of 3′-8″-Biflavones and Their Monomeric Subunits |
title | A Comparative Analysis of Radical Scavenging, Antifungal and Enzyme Inhibition Activity of 3′-8″-Biflavones and Their Monomeric Subunits |
title_full | A Comparative Analysis of Radical Scavenging, Antifungal and Enzyme Inhibition Activity of 3′-8″-Biflavones and Their Monomeric Subunits |
title_fullStr | A Comparative Analysis of Radical Scavenging, Antifungal and Enzyme Inhibition Activity of 3′-8″-Biflavones and Their Monomeric Subunits |
title_full_unstemmed | A Comparative Analysis of Radical Scavenging, Antifungal and Enzyme Inhibition Activity of 3′-8″-Biflavones and Their Monomeric Subunits |
title_short | A Comparative Analysis of Radical Scavenging, Antifungal and Enzyme Inhibition Activity of 3′-8″-Biflavones and Their Monomeric Subunits |
title_sort | comparative analysis of radical scavenging, antifungal and enzyme inhibition activity of 3′-8″-biflavones and their monomeric subunits |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10604771/ https://www.ncbi.nlm.nih.gov/pubmed/37891933 http://dx.doi.org/10.3390/antiox12101854 |
work_keys_str_mv | AT jurcevicsangutiva acomparativeanalysisofradicalscavengingantifungalandenzymeinhibitionactivityof38biflavonesandtheirmonomericsubunits AT sarkanjbojan acomparativeanalysisofradicalscavengingantifungalandenzymeinhibitionactivityof38biflavonesandtheirmonomericsubunits AT karalijaerna acomparativeanalysisofradicalscavengingantifungalandenzymeinhibitionactivityof38biflavonesandtheirmonomericsubunits AT samecdunja acomparativeanalysisofradicalscavengingantifungalandenzymeinhibitionactivityof38biflavonesandtheirmonomericsubunits AT jurcevicsangutiva comparativeanalysisofradicalscavengingantifungalandenzymeinhibitionactivityof38biflavonesandtheirmonomericsubunits AT sarkanjbojan comparativeanalysisofradicalscavengingantifungalandenzymeinhibitionactivityof38biflavonesandtheirmonomericsubunits AT karalijaerna comparativeanalysisofradicalscavengingantifungalandenzymeinhibitionactivityof38biflavonesandtheirmonomericsubunits AT samecdunja comparativeanalysisofradicalscavengingantifungalandenzymeinhibitionactivityof38biflavonesandtheirmonomericsubunits |