Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Antidiabetic Potential of Novel 1,3,5-Trisubstituted-2-Thioxoimidazloidin-4-One Analogues: Insights into α-Glucosidase, α-Amylase, and Antioxidant Activities

View through CrossRef
As the ninth leading cause of death globally, diabetes mellitus (DM) is considered to be the worst chronic metabolic disease requiring an enormous need for healthcare with over 578 million expected cases by 2023. Several recent findings have demonstrated that mediating the activity of carbohydrate-hydrolyzing enzymes, including α-amylase and α-glucosidase, could be a potential strategy for managing the development of DM. In the presented study, a novel set of 1,3,5-trisubstituted-2-thioxoimidazolidin-4-ones was designed, synthesized, and characterized. The antidiabetic activity of the synthesized compounds was explored by assessing their inhibitory activity toward α-amylase and α-glucosidase enzymes. The results demonstrated that this class of compounds exhibits considerable inhibitory activity toward both α-amylase and α-glucosidase enzymes. Among the synthesized compounds, compound 5a demonstrated the most inhibitory activity with IC50 of 5.08 and µg/mL and 0.21 µg/mL toward α-glucosidase and α-amylase activities, respectively, as compared to the drug Acarbose (IC50 = 5.76 µg/mL and 0.39 µg/mL, respectively). To gain insights into the antidiabetic potential of compound 5a, we assessed the cytotoxic and antioxidant activities. Our findings indicated that compound 5a displays considerable cytotoxicity toward WI-38 cells with an IC50 of 88.54 µg/mL, as compared to the drug Celecoxib (IC50 = 93.05 µg/mL). Further, compound 5a exhibited a high scavenging activity toward 2,2-Diphenyl1-picrylhydrazyl (DPPH) free radicals (IC50 = 51.75 µg/mL) and showed a low potential to produce ROS as indicated by the monitoring of the generated H2O2 (132.4 pg/mL), as compared to Trolox (IC50 = 58.09 µg/mL) and Celecoxib (171.6 pg/mL). Finally, we performed extensive molecular modeling studies to affirm the binding affinity of this class of compounds to the binding pocket of α-amylase and α-glucosidase enzymes. Collectively, our findings indicate that this class of compounds, particularly compound 5a, could be utilized as a lead structure for the development of novel compounds with potential antidiabetic and antioxidant activities.
Title: Antidiabetic Potential of Novel 1,3,5-Trisubstituted-2-Thioxoimidazloidin-4-One Analogues: Insights into α-Glucosidase, α-Amylase, and Antioxidant Activities
Description:
As the ninth leading cause of death globally, diabetes mellitus (DM) is considered to be the worst chronic metabolic disease requiring an enormous need for healthcare with over 578 million expected cases by 2023.
Several recent findings have demonstrated that mediating the activity of carbohydrate-hydrolyzing enzymes, including α-amylase and α-glucosidase, could be a potential strategy for managing the development of DM.
In the presented study, a novel set of 1,3,5-trisubstituted-2-thioxoimidazolidin-4-ones was designed, synthesized, and characterized.
The antidiabetic activity of the synthesized compounds was explored by assessing their inhibitory activity toward α-amylase and α-glucosidase enzymes.
The results demonstrated that this class of compounds exhibits considerable inhibitory activity toward both α-amylase and α-glucosidase enzymes.
Among the synthesized compounds, compound 5a demonstrated the most inhibitory activity with IC50 of 5.
08 and µg/mL and 0.
21 µg/mL toward α-glucosidase and α-amylase activities, respectively, as compared to the drug Acarbose (IC50 = 5.
76 µg/mL and 0.
39 µg/mL, respectively).
To gain insights into the antidiabetic potential of compound 5a, we assessed the cytotoxic and antioxidant activities.
Our findings indicated that compound 5a displays considerable cytotoxicity toward WI-38 cells with an IC50 of 88.
54 µg/mL, as compared to the drug Celecoxib (IC50 = 93.
05 µg/mL).
Further, compound 5a exhibited a high scavenging activity toward 2,2-Diphenyl1-picrylhydrazyl (DPPH) free radicals (IC50 = 51.
75 µg/mL) and showed a low potential to produce ROS as indicated by the monitoring of the generated H2O2 (132.
4 pg/mL), as compared to Trolox (IC50 = 58.
09 µg/mL) and Celecoxib (171.
6 pg/mL).
Finally, we performed extensive molecular modeling studies to affirm the binding affinity of this class of compounds to the binding pocket of α-amylase and α-glucosidase enzymes.
Collectively, our findings indicate that this class of compounds, particularly compound 5a, could be utilized as a lead structure for the development of novel compounds with potential antidiabetic and antioxidant activities.

Related Results

Evaluation of Antioxidant and α-glucosidase Inhibitory Activities of Codonopsisjavanica (Blume) Hook. f. Thoms’ Root Extract
Evaluation of Antioxidant and α-glucosidase Inhibitory Activities of Codonopsisjavanica (Blume) Hook. f. Thoms’ Root Extract
This study aims to evaluate the antioxidant ability and α-glucosidase inhibitory activities of Codonopsisjavanica extract to elucidate its mechanism in the treatment of diabetes ty...
Appropriating conditions for acquisition high-content α – amylase of germinated brown rice variety Oryza stiva Anhdao
Appropriating conditions for acquisition high-content α – amylase of germinated brown rice variety Oryza stiva Anhdao
Brown rice is a food ingredient which has high nutritious values. During germination, some nutritious and functional components are increased such as lysine, vitamin E, B1, B6, mag...
Alpha-amylase and Alpha-glucosidase Inhibitory Activities of Philippine Indigenous Medicinal Plants
Alpha-amylase and Alpha-glucosidase Inhibitory Activities of Philippine Indigenous Medicinal Plants
In the Philippines, medicinal plants still provide the first line of therapeutic remedies and their reported efficacy in traditional treatments provides an opportunity for drug dis...
HYPOGLYCEMIC POTENTIAL OF HIBISCUS ROSA-SINENSIS AND MANGIFERA INDICA LEAVES BY IN VITRO METHODS
HYPOGLYCEMIC POTENTIAL OF HIBISCUS ROSA-SINENSIS AND MANGIFERA INDICA LEAVES BY IN VITRO METHODS
Objective: The objective of the present study was to provide in vitro evidence for the potential inhibitory activity of extracts of Mangifera indica (MI) and Hibiscus rosa-sinensis...
COMPARATIVE PHYTOCHEMICAL ANALYSIS AND ANTIDIABETIC ACTIVITIES OF TENDER AND RIPENED COCONUT FRUIT PARTS
COMPARATIVE PHYTOCHEMICAL ANALYSIS AND ANTIDIABETIC ACTIVITIES OF TENDER AND RIPENED COCONUT FRUIT PARTS
Objective: Diabetes mellitus is a chronic metabolic disorder, which leads to a decrease in quality of life and even death. There are various treatments for diabetes available in th...
Phytochemical profiling and antidiabetic evaluation of Peperomia pellucida as a potential alpha glucosidase inhibitor
Phytochemical profiling and antidiabetic evaluation of Peperomia pellucida as a potential alpha glucosidase inhibitor
Abstract. Hidayati S, Agustin AT, Sari EK, Sari SM, Destiawan RA, Silvana WA. 2023. Phytochemical profiling and antidiabetic evaluation of Peperomia pellucida as a potential alpha ...
Expression of β-Amylase from Alfalfa Taproots
Expression of β-Amylase from Alfalfa Taproots
Abstract Alfalfa (Medicago sativa L.) roots contain large quantities of β-amylase, but little is known about its role in vivo. We studied this by isolating a β-amyla...

Back to Top