Javascript must be enabled to continue!
Synthesis, carbonic anhydrase inhibitory activity and antioxidant activity of some 1,3‐oxazine derivatives
View through CrossRef
Abstract
Hit, Lead & Candidate Discovery
A series of 1‐(6‐methyl‐2‐substituted phenyl‐4‐thioxo‐4H‐1,3‐oxazin‐5‐yl)ethanones (3a‐n) were synthesized by the reaction of benzoyl isothiocyanates with active methylene compound acetylacetone in the presence of triethyl amine in a one‐pot process. The structures of the products were elucidated by elemental analyses, FT‐IR, 1H NMR, 13C NMR, and mass spectroscopy. These new 1,3‐oxazine derivatives were evaluated for their inhibitory activity against carbonic anhydrase II. Results for in vitro assay revealed that compound 3b having 4‐methoxy phenyl moiety was the most potent inhibitor with IC50 value of 0.144 ± 0.008 μM. It exhibited higher enzyme inhibitory activity as compared to the standard acetazolamide (IC50 = 0.997 ± 0.061 μM). The compounds 3c, 3h, and 3n also displayed superior inhibitory activities compared to the rest of the synthesized oxazine derivatives. The radical scavenging activity of oxazine derivatives was also performed and it was found that compounds showed moderate antioxidant activity. Lipinski rule confirmed the therapeutic potential of the synthesized compounds. Molecular docking studies were also performed to further understand the binding affinity of these compounds with PDBID 1V9E which confirmed that the synthesized derivatives bind in the active binding site of the target protein. Based upon our results, it is proposed that compound 3b may serve as a lead structure to design more potent carbonic anhydrase inhibitors.
Title: Synthesis, carbonic anhydrase inhibitory activity and antioxidant activity of some 1,3‐oxazine derivatives
Description:
Abstract
Hit, Lead & Candidate Discovery
A series of 1‐(6‐methyl‐2‐substituted phenyl‐4‐thioxo‐4H‐1,3‐oxazin‐5‐yl)ethanones (3a‐n) were synthesized by the reaction of benzoyl isothiocyanates with active methylene compound acetylacetone in the presence of triethyl amine in a one‐pot process.
The structures of the products were elucidated by elemental analyses, FT‐IR, 1H NMR, 13C NMR, and mass spectroscopy.
These new 1,3‐oxazine derivatives were evaluated for their inhibitory activity against carbonic anhydrase II.
Results for in vitro assay revealed that compound 3b having 4‐methoxy phenyl moiety was the most potent inhibitor with IC50 value of 0.
144 ± 0.
008 μM.
It exhibited higher enzyme inhibitory activity as compared to the standard acetazolamide (IC50 = 0.
997 ± 0.
061 μM).
The compounds 3c, 3h, and 3n also displayed superior inhibitory activities compared to the rest of the synthesized oxazine derivatives.
The radical scavenging activity of oxazine derivatives was also performed and it was found that compounds showed moderate antioxidant activity.
Lipinski rule confirmed the therapeutic potential of the synthesized compounds.
Molecular docking studies were also performed to further understand the binding affinity of these compounds with PDBID 1V9E which confirmed that the synthesized derivatives bind in the active binding site of the target protein.
Based upon our results, it is proposed that compound 3b may serve as a lead structure to design more potent carbonic anhydrase inhibitors.
Related Results
Fermentchemische Charakterisierung von Carbonat-Hydrolasen (Carboanhydrasen) aus menschlichen Erythrocyten
Fermentchemische Charakterisierung von Carbonat-Hydrolasen (Carboanhydrasen) aus menschlichen Erythrocyten
Carbonic anhydrase, a Zn-containing enzyme, catalyzes the hydration of CO2 and the dehydration of H2CO3. These properties make it the powerful promoter of the CO2 uptake in the tis...
Carbonic anhydrase network of genes trigger cytosolic pH enabling differentiation from quiescence
Carbonic anhydrase network of genes trigger cytosolic pH enabling differentiation from quiescence
Abstract
Background
Carbonic anhydrase regulates various cellular processes. Intracellular pH flux impacted by carbonic anhydra...
DEXAMETHASONE IMPLANT VERSUS TOPICAL CARBONIC ANHYDRASE INHIBITORS IN PATIENTS WITH BILATERAL RETINITIS PIGMENTOSA–RELATED CYSTOID MACULAR EDEMA
DEXAMETHASONE IMPLANT VERSUS TOPICAL CARBONIC ANHYDRASE INHIBITORS IN PATIENTS WITH BILATERAL RETINITIS PIGMENTOSA–RELATED CYSTOID MACULAR EDEMA
Purpose:
To compare within-subject efficacy and safety of intravitreal dexamethasone implant and topical carbonic anhydrase inhibitors in the treatment of retinitis pig...
The relationship between zinc and epilepsy
The relationship between zinc and epilepsy
Abstract
Background
Previous studies have indicated a potential relationship between zinc and epilepsy. The aim of this study is to investigate the causal relationship bet...
Microbially induced calcium carbonate precipitation through CO2 sequestration via an engineered Bacillus subtilis
Microbially induced calcium carbonate precipitation through CO2 sequestration via an engineered Bacillus subtilis
Abstract
Background
Microbially induced calcium carbonate precipitation has been extensively researched for geoengineering applications as well as d...
Interaction of Coumarin, Daphnetin, Fraxetin from Natural Materials with Carbanoic anhydrase II in Inhibiting Glaucoma
Interaction of Coumarin, Daphnetin, Fraxetin from Natural Materials with Carbanoic anhydrase II in Inhibiting Glaucoma
This article explores the interaction of Coumarin compounds and their derivatives obtained from natural extracts with Carbonic anhydrase II protein in inhibiting Glaucoma computati...
Pharmacological screening of synthetic piperidine derivatives
Pharmacological screening of synthetic piperidine derivatives
Piperidine derivatives are essential heterocyclic compounds that have beneficial roles in the medical and commercial sector. They can be isolated from plant material and can be che...
Engineering cyanobacterial carbonic anhydrase surface mutations for fast CO2 hydration and capture
Engineering cyanobacterial carbonic anhydrase surface mutations for fast CO2 hydration and capture
Equilibration between CO2 and the other forms of dissolved inorganic carbon (DIC) is slow under ambient conditions, bottle-necked by the hydration of dissolved CO2 to form bicarbon...

