New Hybrid Scaffolds based on Hydrazinyl Thiazole Substituted Coumarin; As Novel Leads of Dual Potential; In Vitro α-Amylase Inhibitory and Antioxidant (DPPH and ABTS Radical Scavenging) Activities.
Catalytic Domain
Coumarins
/ chemical synthesis
Enzyme Inhibitors
/ chemical synthesis
Free Radical Scavengers
/ chemical synthesis
Hydrazines
/ chemical synthesis
Ligands
Molecular Docking Simulation
Molecular Structure
Structure-Activity Relationship
Thiazoles
/ chemical synthesis
alpha-Amylases
/ antagonists & inhibitors
ABTS
Coumarin
DPPH
hydrazinyl thiazole
in silico
in vitro
α-amylase activity.
Journal
Medicinal chemistry (Shariqah (United Arab Emirates))
ISSN: 1875-6638
Titre abrégé: Med Chem
Pays: Netherlands
ID NLM: 101240303
Informations de publication
Date de publication:
2019
2019
Historique:
received:
07
11
2017
revised:
24
06
2018
accepted:
25
08
2018
pubmed:
5
9
2018
medline:
1
3
2019
entrez:
5
9
2018
Statut:
ppublish
Résumé
Despite many side effects associated, there are many drugs which are being clinically used for the treatment of type-II diabetes mellitus (DM). In this scenario, there is still need to develop new therapeutic agents with more efficacy and less side effects. By keeping in mind the diverse spectrum of biological potential associated with coumarin and thiazole, a hybrid class based on these two heterocycles was synthesized. Hydrazinyl thiazole substituted coumarins 4-20 were synthesized via two step reaction. First step was the acid catalyzed reaction of 3-formyl/acetyl coumarin derivatives with thiosemicarbazide to form thiosemicarbazone intermediates 1-3, followed by the reaction with different phenacyl bromides to afford products 4-20. All the synthetic analogs 4-20 were characterized by different spectroscopic techniques such as EI-MS, HREI-MS, 1H-NMR and 13C-NMR. Stereochemical assignment of the iminic double bond was carried out by the NOESY experiments. Elemental analysis was found in agreement with the calculated values. Compounds 4-20 were screened for α-amylase inhibitory activity and showed good activity in the range of IC50 = 1.829 ± 0.102-3.37 ± 0.17 µM as compared to standard acarbose (IC50 = 1.819 ± 0.19 µM). Compounds were also investigated for their DPPH and ABTS radical scavenging activities and displayed good radical scavenging potential. In addition to that molecular modelling study was conducted on all compounds to investigate the interaction details of compounds 4- 20 (ligands) with active site (receptor) of enzyme. The newly identified hybrid class may serve as potential lead candidates for the management of diabetes mellitus.
Sections du résumé
BACKGROUND
BACKGROUND
Despite many side effects associated, there are many drugs which are being clinically used for the treatment of type-II diabetes mellitus (DM). In this scenario, there is still need to develop new therapeutic agents with more efficacy and less side effects. By keeping in mind the diverse spectrum of biological potential associated with coumarin and thiazole, a hybrid class based on these two heterocycles was synthesized.
METHOD
METHODS
Hydrazinyl thiazole substituted coumarins 4-20 were synthesized via two step reaction. First step was the acid catalyzed reaction of 3-formyl/acetyl coumarin derivatives with thiosemicarbazide to form thiosemicarbazone intermediates 1-3, followed by the reaction with different phenacyl bromides to afford products 4-20. All the synthetic analogs 4-20 were characterized by different spectroscopic techniques such as EI-MS, HREI-MS, 1H-NMR and 13C-NMR. Stereochemical assignment of the iminic double bond was carried out by the NOESY experiments. Elemental analysis was found in agreement with the calculated values.
RESULTS
RESULTS
Compounds 4-20 were screened for α-amylase inhibitory activity and showed good activity in the range of IC50 = 1.829 ± 0.102-3.37 ± 0.17 µM as compared to standard acarbose (IC50 = 1.819 ± 0.19 µM). Compounds were also investigated for their DPPH and ABTS radical scavenging activities and displayed good radical scavenging potential. In addition to that molecular modelling study was conducted on all compounds to investigate the interaction details of compounds 4- 20 (ligands) with active site (receptor) of enzyme.
CONCLUSION
CONCLUSIONS
The newly identified hybrid class may serve as potential lead candidates for the management of diabetes mellitus.
Identifiants
pubmed: 30179139
pii: MC-EPUB-92781
doi: 10.2174/1573406414666180903162243
doi:
Substances chimiques
Coumarins
0
Enzyme Inhibitors
0
Free Radical Scavengers
0
Hydrazines
0
Ligands
0
Thiazoles
0
alpha-Amylases
EC 3.2.1.1
Types de publication
Journal Article
Langues
eng
Sous-ensembles de citation
IM
Pagination
87-101Informations de copyright
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