volume 142 pages 106916

Piperazine-2-carboxylic acid derivatives as MTDLs anti-Alzheimer agents: Anticholinesterase activity, mechanistic aspect, and molecular modeling studies

Publication typeJournal Article
Publication date2024-01-01
scimago Q1
wos Q1
SJR0.786
CiteScore8.3
Impact factor4.7
ISSN00452068, 10902120
Organic Chemistry
Drug Discovery
Biochemistry
Molecular Biology
Abstract
Development of multitarget-Directed Ligands (MTDLs) is a promising approach to combat the complex etiologies of Alzheimer disease (AD). Herein we report the design, synthesis, and characterization of a new series of 1,4-bisbenzylpiperazine-2-carboxylic acid derivatives 3–5(a-g), 7a-f, 8a-s, and their piperazine-2-yl-1,3,4-oxadiazole analogs 6a-g. In vitro inhibitory activity against Electrophorus electricus acetylcholinesterase (AChE) and butyryl-cholinesterase (BChE) from Equine serum was evaluated using modified Ellman’s method, considering donepezil and tacrine as reference drugs. Lineweaver–Burk plot analysis of the results proved competitive inhibition of AChE and BChE with Ki values, in low micromolar range. The free carboxylic acid series 4a-g showed enhanced selectivity for AChE. Hence, 4c, 1,4-bis (4-chlorobenzyl)-piperazinyl-2-carboxylic acid), was the most active member of this series (Ki (AChE) = 10.18 ± 1.00 µM) with clear selectivity for AChE (SI ∼ 17.90). However, the hydroxamic acids 7a-f and carboxamides 8a-s congeners were more potent and selective inhibitors of BChE (SI ∼ 5.38 – 21862.5). Extraordinarily, 1,4-bis (2-chlorobenzyl)-piperazinyl-2-hydroxamic acid 7b showed promising inhibitory activity against BChE enzyme (Ki = 1.6 ± 0.08 nM, SI = 21862.5), that was significantly superior to that elicited by donepezil (Ki = 12.5 ± 2.6 µM) and tacrine (Ki = 17.3 ± 2.3 nM). Cytotoxicity assessment of 4c and 7b, on human neuroblastoma (SH-SY5Y) cell lines, revealed lower toxicity than staurosporine and was nearly comparable to that of donepezil. Molecular docking and molecular dynamics simulation afforded unblemished insights into the structure–activity relationships for AChE and BChE inhibition. The results showed stable binding with fair H-bonding, hydrophobic and/or ionic interactions to the catalytic and peripheral anionic sites of the enzymes. In silico predicted ADME and physicochemical properties of conjugates showed good CNS bioavailability and safety parameters. In this regard, compound (7b) might be considered as a promising inhibitor of BChE with an innovative donepezil-based anti-Alzheimer activity. Further assessments of the most potent AChE and BChE inhibitors as potential MTDLs anti-Alzheimer’s agents are under investigation with our research group and will be published later.
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Soliman A. M. et al. Piperazine-2-carboxylic acid derivatives as MTDLs anti-Alzheimer agents: Anticholinesterase activity, mechanistic aspect, and molecular modeling studies // Bioorganic Chemistry. 2024. Vol. 142. p. 106916.
GOST all authors (up to 50) Copy
Soliman A. M., Abd El-wahab H. A. A., Akıncıoğlu H., Gulcin İ., Omar F. B. Piperazine-2-carboxylic acid derivatives as MTDLs anti-Alzheimer agents: Anticholinesterase activity, mechanistic aspect, and molecular modeling studies // Bioorganic Chemistry. 2024. Vol. 142. p. 106916.
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RIS Copy
TY - JOUR
DO - 10.1016/j.bioorg.2023.106916
UR - https://doi.org/10.1016/j.bioorg.2023.106916
TI - Piperazine-2-carboxylic acid derivatives as MTDLs anti-Alzheimer agents: Anticholinesterase activity, mechanistic aspect, and molecular modeling studies
T2 - Bioorganic Chemistry
AU - Soliman, Aya M.
AU - Abd El-wahab, Hend A. A.
AU - Akıncıoğlu, Hulya
AU - Gulcin, İlhami
AU - Omar, Faeza Burhan
PY - 2024
DA - 2024/01/01
PB - Elsevier
SP - 106916
VL - 142
PMID - 37913584
SN - 0045-2068
SN - 1090-2120
ER -
BibTex
Cite this
BibTex (up to 50 authors) Copy
@article{2024_Soliman,
author = {Aya M. Soliman and Hend A. A. Abd El-wahab and Hulya Akıncıoğlu and İlhami Gulcin and Faeza Burhan Omar},
title = {Piperazine-2-carboxylic acid derivatives as MTDLs anti-Alzheimer agents: Anticholinesterase activity, mechanistic aspect, and molecular modeling studies},
journal = {Bioorganic Chemistry},
year = {2024},
volume = {142},
publisher = {Elsevier},
month = {jan},
url = {https://doi.org/10.1016/j.bioorg.2023.106916},
pages = {106916},
doi = {10.1016/j.bioorg.2023.106916}
}