Structure‐activity relationship approaches and applications
- 1 August 2003
- journal article
- review article
- Published by Wiley in Environmental Toxicology and Chemistry
- Vol. 22 (8), 1680-1695
- https://doi.org/10.1897/01-198
Abstract
New techniques and software have enabled ubiquitous use of structure-activity relationships (SARs) in the pharmaceutical industry and toxicological sciences. We review the status of SAR technology by using examples to underscore the advances as well as the unique technical challenges. Applying SAR involves two steps: Characterization of the chemicals under investigation, and application of chemometric approaches to explore data patterns or to establish the relationships between structure and activity. We describe generally but not exhaustively the SAR methodologies popular use in toxicology, including representation of chemical structure, and chemometric techniques where models are both unsupervised and supervised. The utility of SAR technology is most evident when supervised methods are used to predict toxicity of untested chemicals based only on chemical structure. Such models can predict on both an ordinal scale (e.g., active vs inactive) or a continuous scale (e.g., median lethal dose [LD50] dose). The reader is also referred to a companion paper in this issue that discusses quantitative structure-activity relationship (QSAR) methods that have advanced markedly over the past decade.Keywords
This publication has 123 references indexed in Scilit:
- The optimal fragmentation principle–ReplyDrug Discovery Today, 2001
- Polynomial Neural Network for Linear and Non-linear Model Selection in Quantitative-Structure Activity Relationship Studies on the InternetSAR and QSAR in Environmental Research, 2000
- A gene expression database for the molecular pharmacology of cancerNature Genetics, 2000
- Comparison of Estrogen Receptor α and β Subtypes Based on Comparative Molecular Field Analysis (CoMFA)SAR and QSAR in Environmental Research, 1999
- DNA on a chip: Serving up the genome for diagnostics and researchMolecular Medicine Today, 1997
- Qsar Models for Predicting the Acute Toxicity of Selected Organic Chemicals with Diverse Structures to Aquatic Non-Vertebrates and HumansSAR and QSAR in Environmental Research, 1994
- Simple Method of Calculating Octanol/Water Partition Coefficient.CHEMICAL & PHARMACEUTICAL BULLETIN, 1992
- Linear Solvation Energy Relationships: 36. Molecular Properties Governing Solubilities of Organic Nonelectrolytes In WaterJournal of Pharmaceutical Sciences, 1986
- Pattern recognition by means of disjoint principal components modelsPattern Recognition, 1976
- Problems in the Analysis of Survey Data, and a ProposalJournal of the American Statistical Association, 1963