Fluorinated indeno-quinoxaline bearing thiazole moieties as hypoglycaemic agents targeting α-amylase, and α-glucosidase: synthesis, molecular docking, and ADMET studies

J Enzyme Inhib Med Chem. 2024 Dec;39(1):2367128. doi: 10.1080/14756366.2024.2367128. Epub 2024 Jun 24.

Abstract

Inhibition of α-glucosidase and α-amylase are key tactics for managing blood glucose levels. Currently, stronger, and more accessible inhibitors are needed to treat diabetes. Indeno[1,2-b] quinoxalines-carrying thiazole hybrids 1-17 were created and described using NMR. All analogues were tested for hypoglycaemic effect against STZ-induced diabetes in mice. Compounds 4, 6, 8, and 16 were the most potent among the synthesised analogues. These hybrids were examined for their effects on plasma insulin, urea, creatinine, GSH, MDA, ALT, AST, and total cholesterol. Moreover, these compounds were tested against α-glucosidase and α-amylase enzymes in vitro. The four hybrids 4, 6, 8, and 16 represented moderate to potent activity with IC50 values 0.982 ± 0.04, to 10.19 ± 0.21 for α-glucosidase inhibition and 17.58 ± 0.74 to 121.6 ± 5.14 μM for α-amylase inhibition when compared to the standard medication acarbose with IC50=0.316 ± 0.02 μM for α-glucosidase inhibition and 31.56 ± 1.33 μM for α-amylase inhibition. Docking studies as well as in silico ADMT were done.

Keywords: Fluorinated indeno-quinoxaline; α-Amylase; α-Glucosidase.

MeSH terms

  • Animals
  • Diabetes Mellitus, Experimental / drug therapy
  • Dose-Response Relationship, Drug*
  • Enzyme Inhibitors / chemical synthesis
  • Enzyme Inhibitors / chemistry
  • Enzyme Inhibitors / pharmacology
  • Glycoside Hydrolase Inhibitors* / chemical synthesis
  • Glycoside Hydrolase Inhibitors* / chemistry
  • Glycoside Hydrolase Inhibitors* / pharmacology
  • Halogenation
  • Hypoglycemic Agents* / chemical synthesis
  • Hypoglycemic Agents* / chemistry
  • Hypoglycemic Agents* / pharmacology
  • Male
  • Mice
  • Molecular Docking Simulation*
  • Molecular Structure
  • Quinoxalines* / chemical synthesis
  • Quinoxalines* / chemistry
  • Quinoxalines* / pharmacology
  • Streptozocin
  • Structure-Activity Relationship
  • Thiazoles* / chemical synthesis
  • Thiazoles* / chemistry
  • Thiazoles* / pharmacology
  • alpha-Amylases* / antagonists & inhibitors
  • alpha-Amylases* / metabolism
  • alpha-Glucosidases* / metabolism

Substances

  • Quinoxalines
  • alpha-Amylases
  • alpha-Glucosidases
  • Hypoglycemic Agents
  • Glycoside Hydrolase Inhibitors
  • Thiazoles
  • Streptozocin
  • Enzyme Inhibitors

Grants and funding

The project has been funded by the Taif University Researchers Supporting Project (TURSP) at Taif University, Taif, Saudi Arabia, under Grant (TURSP-2020/220). The authors extend their appreciation to Tife University, Saudi Arabia, for supporting this work through project number (TU-DSPP-2024-85).