| Literature DB >> 18816385 |
David Lagorce1, Olivier Sperandio, Hervé Galons, Maria A Miteva, Bruno O Villoutreix.
Abstract
BACKGROUND: Drug discovery and chemical biology are exceedingly complex and demanding enterprises. In recent years there are been increasing awareness about the importance of predicting/optimizing the absorption, distribution, metabolism, excretion and toxicity (ADMET) properties of small chemical compounds along the search process rather than at the final stages. Fast methods for evaluating ADMET properties of small molecules often involve applying a set of simple empirical rules (educated guesses) and as such, compound collections' property profiling can be performed in silico. Clearly, these rules cannot assess the full complexity of the human body but can provide valuable information and assist decision-making.Entities:
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Year: 2008 PMID: 18816385 PMCID: PMC2561050 DOI: 10.1186/1471-2105-9-396
Source DB: PubMed Journal: BMC Bioinformatics ISSN: 1471-2105 Impact factor: 3.169
Figure 1Schematic diagram of the FAF-Drugs2 package architecture. FAF-Drugs2 requires as input files a compound collection in SDF format and two parameter files, one containing physicochemical thresholds and the other, the list of substructures that have to be investigated. Several output files are generated, among others, one containing the molecules that do pass the filters and another one, the molecules that do not pass the test. In addition, a table file reporting all the computed values/descriptors for each compound is provided (see text for explanations).
Figure 2Analysis of the main physicochemical properties of compound from the ChemBridge EXPRESS-Pick™ Database. Physicochemical profile of the ChemBridge molecules as computed by FAF-Drugs2.
Figure 3Examples of undesirable substructures/functional groups assessed by FAF-Drugs2. Many functional groups/molecules can be problematic for drug discovery projects. Here we illustrate this point with three undesirable groups/compounds searched by FAF-Drugs2 (see Text for details).