Synthesis, Characterization,
In Silico DFT, Molecular
Docking, and Dynamics Simulation Studies of Phenylhydrazono Phenoxyquinolones
for Their Hypoglycemic Efficacy
A series of novel
24 phenylhydrazono phenoxyquinoline
derivatives
were synthesized with moderate to excellent yield and screened for
their efficacy against the α-amylase enzyme through in silico
studies. The structures were characterized using spectroscopic techniques
such as 1HNMR, 13CNMR, and HREI-MS. Comprehensive
computational studies including, drug-likeness and ADMET profiling,
quantum chemical calculations, molecular docking, and molecular dynamics
(MD) simulation studies, were performed. A density functional theory
study of the synthesized compounds indicated a favorable reactivity
profile. The synthesized novel analogues were docked against α-amylase
(PDB 6OCN) enzymes
to investigate the binding interactions. Based on the docking studies,
one of the compounds was found to be the hit with the highest negative
binding affinity for α-amylase. A MD simulation study indicated
stable binding throughout the simulation.