Literature DB >> 32752941

Exploring 3-Benzyloxyflavones as new lead cholinesterase inhibitors: synthesis, structure-activity relationship and molecular modelling simulations.

Ehsan Ullah Mughal1, Amina Sadiq2, Momna Ayub2, Nafeesa Naeem1, Asif Javid1, Sajjad Hussain Sumrra1, Muhammad Naveed Zafar3, Bilal Ahmad Khan4, Fouzia Perveen Malik5, Ishtiaq Ahmed6.   

Abstract

In this protocol, a series of 3-benzyloxyflavone derivatives have been designed, synthesized, characterized and investigated in vitro as cholinesterase inhibitors. The findings showed that all the synthesized target compounds (1-10) are potent dual inhibitors of acetylcholinesterase (AChE) and butyrylcholinesterase (BChE) enzymes with varying IC50 values. In comparison, they are more active against AChE than BChE. Remarkably, amongst the series, the compound 2 was identified as the most active inhibitor of both AChE (IC50 = 0.05 ± 0.01 μM) and BChE (IC50 = 0.09 ± 0.02 μM) relative to the standard Donepezil (IC50 = 0.09 ± 0.01 for AChE and 0.13 ± 0.04 μM for BChE). Moreover, the derivatives 5 (IC50 = 0.07 ± 0.02 μM) and 10 (0.08 ± 0.02 μM) exhibited the highest selective inhibition against AChE as compared to the standard. Preliminary structure-activity relationship was established and thus found that cholinesterase inhibitory activities of these compounds are highly dependent on the nature and position of various substituents on Ring-B of the 3-Benzyloxyflavone scaffolds. In order to find out the nature of binding interactions of the compounds and active sites of the enzymes, molecular docking studies were carried out.HIGHLIGHTS3-benzyloxyflavone analogues were designed, synthesized and characterized.The target molecules (1-10) were evaluated for their inhibitory potential against AChE and BChE inhibitory activities.Limited structure-activity relationship was developed based on the different substituent patterns on aryl part.Molecular docking studies were conducted to correlate the in vitro results and to identify possible mode of interactions at the active pocket site of the enzyme.

Entities:  

Keywords:  3-Benzyloxyflavones; Alzheimer’s disease; Benzyl chloride; Cholinesterase inhibitors; Flavonoids; Molecular modelling studies

Year:  2020        PMID: 32752941     DOI: 10.1080/07391102.2020.1803136

Source DB:  PubMed          Journal:  J Biomol Struct Dyn        ISSN: 0739-1102


  3 in total

Review 1.  Inhibitory potential of nitrogen, oxygen and sulfur containing heterocyclic scaffolds against acetylcholinesterase and butyrylcholinesterase.

Authors:  Rami J Obaid; Nafeesa Naeem; Ehsan Ullah Mughal; Munirah M Al-Rooqi; Amina Sadiq; Rabab S Jassas; Ziad Moussa; Saleh A Ahmed
Journal:  RSC Adv       Date:  2022-07-12       Impact factor: 4.036

2.  Design, Synthesis, and Structural Characterization of Thioflavones and Thioflavonols as Potential Tyrosinase Inhibitors: In Vitro and In Silico Studies.

Authors:  Ehsan Ullah Mughal; Jamshaid Ashraf; Essam M Hussein; Yasir Nazir; Abdulaziz S Alwuthaynani; Nafeesa Naeem; Amina Sadiq; Reem I Alsantali; Saleh A Ahmed
Journal:  ACS Omega       Date:  2022-05-10

3.  Synthesis and Evaluation of 1,3,5-Triaryl-2-Pyrazoline Derivatives as Potent Dual Inhibitors of Urease and α-Glucosidase Together with Their Cytotoxic, Molecular Modeling and Drug-Likeness Studies.

Authors:  Rabia Mehmood; Amina Sadiq; Reem I Alsantali; Ehsan Ullah Mughal; Meshari A Alsharif; Nafeesa Naeem; Asif Javid; Munirah M Al-Rooqi; Gul-E-Saba Chaudhry; Saleh A Ahmed
Journal:  ACS Omega       Date:  2022-01-20
  3 in total

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