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J Biomol Struct Dyn ; 36(8): 2099-2117, 2018 Jun.
Article in English | MEDLINE | ID: mdl-28571516

ABSTRACT

Aggregation of amyloid beta (Aß) protein considered as one of contributors in development of Alzheimer's disease (AD). Several investigations have identified the importance of non-steroidal anti-inflammatory drugs (NSAIDs) as Aß aggregation inhibitors. Here, we have examined the binding interactions of 24 NSAIDs belonging to eight different classes, with Aß fibrils by exploiting docking and molecular dynamics studies. Minimum energy conformation of the docked NSAIDs were further optimized by density functional theory (DFT) employing Becke's three-parameter hybrid model, Lee-Yang-Parr (B3LYP) correlation functional method. DFT-based global reactivity descriptors, such as electron affinity, hardness, softness, chemical potential, electronegativity, and electrophilicity index were calculated to inspect the expediency of these descriptors for understanding the reactive nature and sites of the molecules. Few selected NSAID-Aß fibrils complexes were subjected to molecular dynamics simulation to illustrate the stability of these complexes and the most prominent interactions during the simulated trajectory. All of the NSAIDs exhibited potential activity against Aß fibrils in terms of predicted binding affinity. Sulindac was found to be the most active compound underscoring the contribution of indene methylene substitution, whereas acetaminophen was observed as least active NSAID. General structural requirements for interaction of NSAIDs with Aß fibril include: aryl/heteroaryl aromatic moiety connected through a linker of 1-2 atoms to a distal aromatic group. Considering these structural requirements and electronic features, new potent agents can be designed and developed as potential Aß fibril inhibitors for the treatment of AD.


Subject(s)
Amyloid beta-Peptides/chemistry , Anti-Inflammatory Agents, Non-Steroidal/chemistry , Molecular Docking Simulation , Molecular Dynamics Simulation , Alzheimer Disease/drug therapy , Alzheimer Disease/metabolism , Amyloid/chemistry , Amyloid/metabolism , Amyloid beta-Peptides/antagonists & inhibitors , Amyloid beta-Peptides/metabolism , Anti-Inflammatory Agents, Non-Steroidal/metabolism , Anti-Inflammatory Agents, Non-Steroidal/therapeutic use , Humans , Hydrophobic and Hydrophilic Interactions , Kinetics , Molecular Structure , Protein Binding , Protein Conformation
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