Please use this identifier to cite or link to this item: http://digitalrepository.fccollege.edu.pk/handle/123456789/1251
Title: New naphthalene derivative for cost-effective AChE inhibitors for Alzheimer’s treatment: In silico identification, in vitro and in vivo validation
Authors: Anwar, Fareeha
Saleem, , Uzma
Ahmad, , Bashir
Ashraf, Muhammad
Rehman, Atta Ur
Froeyen, Matheus
Kee, Lee Yean
Abdullah, Iskandar
Mirza, Muhammad Usman
Ahmad, Sarfraz
Keywords: DPPH
Acetylcholinesterase
Butyrylcholinesterase
Lipoxygenase
α-Glucosidase
Issue Date: 18-Sep-2020
Publisher: ELSEVIER
Citation: Anwar F, Saleem U, Ahmad B, Ashraf M, Rehman AU, Froeyen M, Kee LY, Abdullah I, Mirza MU, Ahmad S. New naphthalene derivative for cost-effective AChE inhibitors for Alzheimer's treatment: In silico identification, in vitro and in vivo validation. Comput Biol Chem. 2020 Dec;89:107378. doi: 10.1016/j.compbiolchem.2020.107378. Epub 2020 Sep 18. PMID: 33002716.
Series/Report no.: Comput Biol Chem . 2020 Dec;89:107378.;
Abstract: Neurodegenerative diseases have complex etiology and pose a challenge to scientists to develop simple and cost effective synthetic compounds as potential drug candidates for such diseases. Here, we report an extension of our previously published in silico screening, where we selected four new compounds as AChE inhibitors. Further, based on favorable binding possess, MD simulation and MMGBSA, two most promising compounds (3a and 3b) were selected, keeping in view the ease of synthesis and cost-effectiveness. Due to the critical role of BChE, LOX and α-glucosidase in neurodegeneration, the selected compounds were also screened against these enzymes. The IC50 values of 3a against AChE and BChE found to be 12.53 and 352.42 μM, respectively. Moderate to slight inhibitions of 45.26 % and 28.68 % were presented by 3a against LOX and α-glucosidase, respectively, at 0.5 mM. Insignificant inhibitions were observed with 3b against the four selected enzymes. Further, in vivo trial demonstrated that 3a could significantly diminish AChE levels in the mice brain as compared to the control. These findings were in agreement with the histopathological analysis of the brain tissues. The results corroborate that selected compounds could serve as a potential lead for further development and optimization as AChE in hibitors to achieve cost-effective anti-Alzheimer’s drugs.
Description: https://pubmed.ncbi.nlm.nih.gov/33002716/
URI: http://localhost:8080/xmlui/handle/123456789/1251
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