Quantitative Structure-Activity Relationships Based on Functional and Structural Characteristics of Organic Compounds
- 1 December 2001
- journal article
- research article
- Published by Taylor & Francis in SAR and QSAR in Environmental Research
- Vol. 12 (6) , 565-591
- https://doi.org/10.1080/10629360108039835
Abstract
In the present quantitative structure-activity relationship (QSAR) modeling, organic compounds, including priority pollutants, have been considered and classified based on their functional and structural characteristics. Five physico-chemical characteristics have been used to develop a QSAR model for Pimephales promelas, by means of multiple regression analysis. Collinearity diagnostics was carried out using two different approaches based on condition index and K correlation index. The outlier analysis was carried out using the variable subsets obtained through both the approaches. An attempt has been made to justify the deletion of outliers in each group referring to their physicochemical characteristics. The expressions obtained by using both approaches provide almost the same prediction accuracy, however, the latter approach resulted in expressions with reduced number of molecular descriptors. The QSARs obtained through this exercise would certainly assist in designing environment-friendly molecules with lower toxicity.Keywords
This publication has 18 references indexed in Scilit:
- Aquatic toxicity of eighteen phthalate estersEnvironmental Toxicology and Chemistry, 1997
- Linear solvation energy relationships: "rule of thumb" for estimation of variable valuesEnvironmental Science & Technology, 1991
- Determining chemical toxicity to aquatic speciesEnvironmental Science & Technology, 1990
- ES&T Critical Review: Structure-activity relationships. Quantitative techniques for predicting the behavior of chemicals in the ecosystemEnvironmental Science & Technology, 1988
- Linear solvation energy relationships. 44. Parameter estimation rules that allow accurate prediction of octanol/water partition coefficients and other solubility and toxicity properties of polychlorinated biphenyls and polycyclic aromatic hydrocarbonsEnvironmental Science & Technology, 1988
- On the prediction of soil sorption coefficients of organic pollutants from molecular structure: application of molecular topology modelEnvironmental Science & Technology, 1987
- Solubility properties in polymers and biological media. 8. An analysis of the factors that influence toxicities of organic nonelectrolytes to the golden orfe fish (Leuciscus idus melanotus)Environmental Science & Technology, 1987
- Solubility Properties in Biological Media 9: Prediction of Solubility and Partition of Organic Nonelectrolytes in Blood and Tissues from Solvatochromic ParametersJournal of Pharmaceutical Sciences, 1987
- Linear Solvation Energy Relationships: 36. Molecular Properties Governing Solubilities of Organic Nonelectrolytes In WaterJournal of Pharmaceutical Sciences, 1986
- Structure–Toxicity Relationships for the Fathead Minnow, Pimephales promelas: Narcotic Industrial ChemicalsCanadian Journal of Fisheries and Aquatic Sciences, 1983