| Title : In silico methods to assist drug developers in acetylcholinesterase inhibitor design - Bermudez-Lugo_2011_Curr.Med.Chem_18_1122 |
| Author(s) : Bermudez-Lugo JA , Rosales-Hernandez MC , Deeb O , Trujillo-Ferrara J , Correa-Basurto J |
| Ref : Curr Med Chem , 18 :1122 , 2011 |
|
Abstract :
Alzheimer's disease (AD) is a neurodegenerative disease characterized by a low acetylcholine (ACh) concentration in the hippocampus and cortex. ACh is a neurotransmitter hydrolyzed by acetylcholinesterase (AChE). Therefore, it is not surprising that AChE inhibitors (AChEIs) have shown better results in the treatment of AD than any other strategy. To improve the effects of AD, many researchers have focused on designing and testing new AChEIs. One of the principal strategies has been the use of computational methods (structural bioinformatics or in silico methods). In this review, we summarize the in silico methods used to enhance the understanding of AChE, particularly at the binding site, to design new AChEIs. Several computational methods have been used, such as docking approaches, molecular dynamics studies, quantum mechanical studies, electronic properties, hindrance effects, partition coefficients (Log P) and molecular electrostatic potentials surfaces, among other physicochemical methods that exhibit quantitative structure-activity relationships. |
| PubMedSearch : Bermudez-Lugo_2011_Curr.Med.Chem_18_1122 |
| PubMedID: 21291371 |
Bermudez-Lugo JA, Rosales-Hernandez MC, Deeb O, Trujillo-Ferrara J, Correa-Basurto J (2011)
In silico methods to assist drug developers in acetylcholinesterase inhibitor design
Curr Med Chem
18 :1122
Bermudez-Lugo JA, Rosales-Hernandez MC, Deeb O, Trujillo-Ferrara J, Correa-Basurto J (2011)
Curr Med Chem
18 :1122