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Derivatives of diisopropyl phenoxyphosphate with controlled reactivity for enhancement of Acetylcholine (ACh) neurotransmitter

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dc.contributor.author Khadim Sheikh, Hamdullah
dc.contributor.author Arshad, Tanzila
dc.contributor.author Sher Mohammad, Zainab
dc.contributor.author Khalil Moussa, Isra
dc.contributor.author Usman, Rafia
dc.contributor.author Mohtasheemul Hasan, Muhammad
dc.date.accessioned 2022-10-12T10:10:01Z
dc.date.available 2022-10-12T10:10:01Z
dc.date.issued 2020-09-04
dc.identifier.citation Sheikh, H. K., Arshad, T., Mohammad, Z. S., Moussa, I. K., Usman, R., & Hasan, M. M. (2020). Derivatives of diisopropyl phenoxyphosphate with controlled reactivity for enhancement of Acetylcholine (ACh) neurotransmitter. Pakistan Journal of Pharmaceutical Sciences, 33(5 (Supplementary)), 2239-2242. en_US
dc.identifier.issn 1011-601X
dc.identifier.uri http://142.54.178.187:9060/xmlui/handle/123456789/13020
dc.description.abstract Here, new phenoxide derivatives of diisopropyl flourophosphate for reaction with Lewis basic sites on acetyl cholinesterase (AChE) were designed. Such binding interaction or reaction inhibits the hydrolysis of the acetylcholine (ACh) neurotransmitter thus enhancing its concentration. This increased neurotransmitter concentration can enhance memory and cognition thus improving symptoms of neurodegenerative diseases such as Alzheimer disease and down syndrome. For docking analysis, we particularly targeted those reception sites on AChE that interacts with the ACh. This led to structural design of derivatives of diisopropyl phenoxyphosphate with controlled reactivity stemming from para substituted phenoxide leaving group. Impact of electron donating (CH3, OCH3) and withdrawing substituents (COCH3) on para position of phenol group on rate of acyl addition elimination reaction was modeled using QM DFT technique. Difference in activation energy between electron donating and withdrawing substituents on phenoxide was noted hence making the derivatives of diisopropyl phenoxyphosphate less reactive and more selective. Docking also confirmed binding of designed derivatives with AChE. Hence novel derivatives with high binding energy and controlled reactivity were designed for retrosynthesis. en_US
dc.language.iso en en_US
dc.publisher Karachi:Pakistan Journal of Pharmaceutical Sciences, university of Karachi. en_US
dc.subject Acetylcholinesterase en_US
dc.subject Neurotransmitter en_US
dc.subject Density Functional Theory en_US
dc.subject Molecular Docking Simulation en_US
dc.subject Diisopropyl Phosphate Derivatives en_US
dc.title Derivatives of diisopropyl phenoxyphosphate with controlled reactivity for enhancement of Acetylcholine (ACh) neurotransmitter en_US
dc.type Article en_US


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