Probing the physico-chemical, antioxidant and anticancer influence of β-lactoglobulin on dietary flavonoid daidzein

The molecular nature, antioxidant, and anticancer actions of the dietary flavonoid daidzein binding to two types of β-lactoglobulin (βLG) are investigated in this work by using different kinds of spectroscopic techniques, electrochemical analysis, molecular docking, and molecular dynamics simulation...

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Main Authors: Elham Sattarinezhad, Najmeh Fani, Abdol-Khalegh Bordbar, Parisa Hatami, Abolghasem Abbasi Kajani, Mahmood Taki
Format: Article
Language:English
Published: Elsevier 2021-01-01
Series:Informatics in Medicine Unlocked
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2352914821001325
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spelling doaj-56411cdc9d5e4b3b9b55037c927d14f82021-09-05T04:40:55ZengElsevierInformatics in Medicine Unlocked2352-91482021-01-0125100643Probing the physico-chemical, antioxidant and anticancer influence of β-lactoglobulin on dietary flavonoid daidzeinElham Sattarinezhad0Najmeh Fani1Abdol-Khalegh Bordbar2Parisa Hatami3Abolghasem Abbasi Kajani4Mahmood Taki5Department of Chemistry, University of Isfahan, Isfahan, 81746-73441, IranDepartment of Chemistry, University of Isfahan, Isfahan, 81746-73441, Iran; Corresponding author.Department of Chemistry, University of Isfahan, Isfahan, 81746-73441, IranDepartment of Chemistry, University of Isfahan, Isfahan, 81746-73441, IranDepartment of Chemistry, University of Isfahan, Isfahan, 81746-73441, IranDepartment of Chemistry, Isfahan University of Technology, Isfahan, 84156-83111, IranThe molecular nature, antioxidant, and anticancer actions of the dietary flavonoid daidzein binding to two types of β-lactoglobulin (βLG) are investigated in this work by using different kinds of spectroscopic techniques, electrochemical analysis, molecular docking, and molecular dynamics simulation. The results showed that hydrogen bonds and van der Waals interactions played a major role in the development of the stable complex. It may be deduced from molecular docking studies and competitive assays that daidzein binds to the outer surface of βLG with appropriate binding energies. The results of molecular dynamics showed the creation of a relatively stable complex in which daidzein binding reduced the flexibility of key residues in the binding site. In terms of the masking effect of βLG, the best antioxidant activity was found at low concentrations of the βLG-daidzein complex. After 48 h of exposure to a 50 μM mixture of βLG and daidzein, the complexes showed increased anticancer activity with maximal mortalities of 38.62 and 47.08% for HeLa and MCF-7 cells, respectively. The improvement of daidzein's solubility and anticancer activity as a result of its complexation with βLG, as well as its light and heat stability, could be a beneficial approach in the food and pharmaceutical industries.http://www.sciencedirect.com/science/article/pii/S2352914821001325Daidzeinβ-lactoglobulinAntioxidant activityAnticancer activityMulti-spectroscopic methodsMolecular docking
collection DOAJ
language English
format Article
sources DOAJ
author Elham Sattarinezhad
Najmeh Fani
Abdol-Khalegh Bordbar
Parisa Hatami
Abolghasem Abbasi Kajani
Mahmood Taki
spellingShingle Elham Sattarinezhad
Najmeh Fani
Abdol-Khalegh Bordbar
Parisa Hatami
Abolghasem Abbasi Kajani
Mahmood Taki
Probing the physico-chemical, antioxidant and anticancer influence of β-lactoglobulin on dietary flavonoid daidzein
Informatics in Medicine Unlocked
Daidzein
β-lactoglobulin
Antioxidant activity
Anticancer activity
Multi-spectroscopic methods
Molecular docking
author_facet Elham Sattarinezhad
Najmeh Fani
Abdol-Khalegh Bordbar
Parisa Hatami
Abolghasem Abbasi Kajani
Mahmood Taki
author_sort Elham Sattarinezhad
title Probing the physico-chemical, antioxidant and anticancer influence of β-lactoglobulin on dietary flavonoid daidzein
title_short Probing the physico-chemical, antioxidant and anticancer influence of β-lactoglobulin on dietary flavonoid daidzein
title_full Probing the physico-chemical, antioxidant and anticancer influence of β-lactoglobulin on dietary flavonoid daidzein
title_fullStr Probing the physico-chemical, antioxidant and anticancer influence of β-lactoglobulin on dietary flavonoid daidzein
title_full_unstemmed Probing the physico-chemical, antioxidant and anticancer influence of β-lactoglobulin on dietary flavonoid daidzein
title_sort probing the physico-chemical, antioxidant and anticancer influence of β-lactoglobulin on dietary flavonoid daidzein
publisher Elsevier
series Informatics in Medicine Unlocked
issn 2352-9148
publishDate 2021-01-01
description The molecular nature, antioxidant, and anticancer actions of the dietary flavonoid daidzein binding to two types of β-lactoglobulin (βLG) are investigated in this work by using different kinds of spectroscopic techniques, electrochemical analysis, molecular docking, and molecular dynamics simulation. The results showed that hydrogen bonds and van der Waals interactions played a major role in the development of the stable complex. It may be deduced from molecular docking studies and competitive assays that daidzein binds to the outer surface of βLG with appropriate binding energies. The results of molecular dynamics showed the creation of a relatively stable complex in which daidzein binding reduced the flexibility of key residues in the binding site. In terms of the masking effect of βLG, the best antioxidant activity was found at low concentrations of the βLG-daidzein complex. After 48 h of exposure to a 50 μM mixture of βLG and daidzein, the complexes showed increased anticancer activity with maximal mortalities of 38.62 and 47.08% for HeLa and MCF-7 cells, respectively. The improvement of daidzein's solubility and anticancer activity as a result of its complexation with βLG, as well as its light and heat stability, could be a beneficial approach in the food and pharmaceutical industries.
topic Daidzein
β-lactoglobulin
Antioxidant activity
Anticancer activity
Multi-spectroscopic methods
Molecular docking
url http://www.sciencedirect.com/science/article/pii/S2352914821001325
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