Exploring the synthesis, molecular structure and biological activities of novel Bis-Schiff base derivatives: A combined theoretical and experimental approach

A library of six novel bis-Schiff base derivatives (2a -f) were synthesized, characterized through modern spectroscopic techniques and screened for their alpha-glucosidase and alpha-amylase inhibitory activities (in vitro). In the series, compound 2a (IC50 = 5.64 +/- 2.22 mu M) and 2f (IC50 = 22.78...

Full description

Bibliographic Details
Published in:JOURNAL OF MOLECULAR STRUCTURE
Main Authors: Gul, Sana; Alam, Aftab; Zainab; Mohammad, Assad; Elhenawy, Ahmed A.; Islam, Mohammad Shahidul; Shah, Syed Adnan Ali; Parveen, Zahida; Shah, Tanzeela Ahmad; Ahmad, Manzoor
Format: Article
Language:English
Published: ELSEVIER 2024
Subjects:
Online Access:https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001207472700001
author Gul
Sana; Alam
Aftab; Zainab; Mohammad
Assad; Elhenawy
Ahmed A.; Islam
Mohammad Shahidul; Shah
Syed Adnan Ali; Parveen
Zahida; Shah
Tanzeela Ahmad; Ahmad
Manzoor
spellingShingle Gul
Sana; Alam
Aftab; Zainab; Mohammad
Assad; Elhenawy
Ahmed A.; Islam
Mohammad Shahidul; Shah
Syed Adnan Ali; Parveen
Zahida; Shah
Tanzeela Ahmad; Ahmad
Manzoor
Exploring the synthesis, molecular structure and biological activities of novel Bis-Schiff base derivatives: A combined theoretical and experimental approach
Chemistry
author_facet Gul
Sana; Alam
Aftab; Zainab; Mohammad
Assad; Elhenawy
Ahmed A.; Islam
Mohammad Shahidul; Shah
Syed Adnan Ali; Parveen
Zahida; Shah
Tanzeela Ahmad; Ahmad
Manzoor
author_sort Gul
spelling Gul, Sana; Alam, Aftab; Zainab; Mohammad, Assad; Elhenawy, Ahmed A.; Islam, Mohammad Shahidul; Shah, Syed Adnan Ali; Parveen, Zahida; Shah, Tanzeela Ahmad; Ahmad, Manzoor
Exploring the synthesis, molecular structure and biological activities of novel Bis-Schiff base derivatives: A combined theoretical and experimental approach
JOURNAL OF MOLECULAR STRUCTURE
English
Article
A library of six novel bis-Schiff base derivatives (2a -f) were synthesized, characterized through modern spectroscopic techniques and screened for their alpha-glucosidase and alpha-amylase inhibitory activities (in vitro). In the series, compound 2a (IC50 = 5.64 +/- 2.22 mu M) and 2f (IC50 = 22.78 +/- 2.37 mu M) were the most potent alpha-amylase inhibitors while the remaining four compounds showed significant to less activity. In case of alpha-glucosidase inhibition, four compounds 2e (IC50 = 2.83 +/- 0.18 mu M), 2c (IC50 = 7.03 +/- 0.15 mu M), 2f (IC50 = 9.99 +/- 0.20 mu M), and 2d (IC50 = 14.68 +/- 0.21 mu M) displayed excellent inhibitory activity while two compounds showed good inhibitory activity, comparing with the standard acarbose drug. The DFT assay was used to measure the FMO of the synthesized molecules, which indicated their stability, bioactivity and charge transfer. The MEP analysis revealed the distribution of electrostatic potential on the molecular surface of 2a -f, which is helpful for understanding reactivity and interactions. The AIM study showed low hydrogen bond energy and non -covalent interactions. This implies that these molecules may have weak hydrogen bonding and non -covalent interactions, which could affect their chemical behavior. The molecular docking study has provided valuable insights into the interactions between the synthesized derivatives of 2,4-dihydroxyacetophenone with alpha-glucosidase and alpha-amylase proteins. The results not only shed light on the binding affinity and key interaction sites but also offer potential avenues for the design of novel drug candidates to control postprandial glucose level in diabetic patients.
ELSEVIER
0022-2860
1872-8014
2024
1306

10.1016/j.molstruc.2024.137828
Chemistry

WOS:001207472700001
https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001207472700001
title Exploring the synthesis, molecular structure and biological activities of novel Bis-Schiff base derivatives: A combined theoretical and experimental approach
title_short Exploring the synthesis, molecular structure and biological activities of novel Bis-Schiff base derivatives: A combined theoretical and experimental approach
title_full Exploring the synthesis, molecular structure and biological activities of novel Bis-Schiff base derivatives: A combined theoretical and experimental approach
title_fullStr Exploring the synthesis, molecular structure and biological activities of novel Bis-Schiff base derivatives: A combined theoretical and experimental approach
title_full_unstemmed Exploring the synthesis, molecular structure and biological activities of novel Bis-Schiff base derivatives: A combined theoretical and experimental approach
title_sort Exploring the synthesis, molecular structure and biological activities of novel Bis-Schiff base derivatives: A combined theoretical and experimental approach
container_title JOURNAL OF MOLECULAR STRUCTURE
language English
format Article
description A library of six novel bis-Schiff base derivatives (2a -f) were synthesized, characterized through modern spectroscopic techniques and screened for their alpha-glucosidase and alpha-amylase inhibitory activities (in vitro). In the series, compound 2a (IC50 = 5.64 +/- 2.22 mu M) and 2f (IC50 = 22.78 +/- 2.37 mu M) were the most potent alpha-amylase inhibitors while the remaining four compounds showed significant to less activity. In case of alpha-glucosidase inhibition, four compounds 2e (IC50 = 2.83 +/- 0.18 mu M), 2c (IC50 = 7.03 +/- 0.15 mu M), 2f (IC50 = 9.99 +/- 0.20 mu M), and 2d (IC50 = 14.68 +/- 0.21 mu M) displayed excellent inhibitory activity while two compounds showed good inhibitory activity, comparing with the standard acarbose drug. The DFT assay was used to measure the FMO of the synthesized molecules, which indicated their stability, bioactivity and charge transfer. The MEP analysis revealed the distribution of electrostatic potential on the molecular surface of 2a -f, which is helpful for understanding reactivity and interactions. The AIM study showed low hydrogen bond energy and non -covalent interactions. This implies that these molecules may have weak hydrogen bonding and non -covalent interactions, which could affect their chemical behavior. The molecular docking study has provided valuable insights into the interactions between the synthesized derivatives of 2,4-dihydroxyacetophenone with alpha-glucosidase and alpha-amylase proteins. The results not only shed light on the binding affinity and key interaction sites but also offer potential avenues for the design of novel drug candidates to control postprandial glucose level in diabetic patients.
publisher ELSEVIER
issn 0022-2860
1872-8014
publishDate 2024
container_volume 1306
container_issue
doi_str_mv 10.1016/j.molstruc.2024.137828
topic Chemistry
topic_facet Chemistry
accesstype
id WOS:001207472700001
url https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001207472700001
record_format wos
collection Web of Science (WoS)
_version_ 1809679005532553216