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Applications of integrated data mining methods to exploring natural product space for acetylcholinesterase inhibitors.


ABSTRACT: Nature, especially the plant kingdom, is a rich source for novel bioactive compounds that can be used as lead compounds for drug development. In order to exploit this resource, the two neural network-based virtual screening techniques novelty detection with self-organizing maps (SOMs) and counterpropagation neural network were evaluated as tools for efficient lead structure discovery. As application scenario, significant descriptors for acetylcholinesterase (AChE) inhibitors were determined and used for model building, theoretical model validation, and virtual screening. Top-ranked virtual hits from both approaches were docked into the AChE binding site to approve the initial hits. Finally, in vitro testing of selected compounds led to the identification of forsythoside A and (+)-sesamolin as novel AChE inhibitors.

SUBMITTER: Schuster D 

PROVIDER: S-EPMC3547168 | biostudies-literature | 2010 Jan

REPOSITORIES: biostudies-literature

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Applications of integrated data mining methods to exploring natural product space for acetylcholinesterase inhibitors.

Schuster Daniela D   Kern Lisa L   Hristozov Dimitar P DP   Terfloth Lothar L   Bienfait Bruno B   Laggner Christian C   Kirchmair Johannes J   Grienke Ulrike U   Wolber Gerhard G   Langer Thierry T   Stuppner Hermann H   Gasteiger Johann J   Rollinger Judith M JM  

Combinatorial chemistry & high throughput screening 20100101 1


Nature, especially the plant kingdom, is a rich source for novel bioactive compounds that can be used as lead compounds for drug development. In order to exploit this resource, the two neural network-based virtual screening techniques novelty detection with self-organizing maps (SOMs) and counterpropagation neural network were evaluated as tools for efficient lead structure discovery. As application scenario, significant descriptors for acetylcholinesterase (AChE) inhibitors were determined and  ...[more]

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