Molecular Structure-Based Prediction of the Partition Coefficients of Organic Chemicals for Physiological Pharmacokinetic Models
- 1 January 1996
- journal article
- research article
- Published by Taylor & Francis in Toxicology Mechanisms and Methods
- Vol. 6 (3) , 117-137
- https://doi.org/10.3109/15376519609068458
Abstract
The objectives of the present study were (1) to develop and validate a methodology for predicting tissue:air (pt:a) and blood:air (Pb:a) partition coefficients (PCs) of organic chemicals from molecular structure information, and (2) to incorporate this methodology within physiologically based pharmacokinetic (PBPK) models to enable automated calculation of PCs from molecular structure information provided as input to the model. The proposed methodology involves (1) estimating n-octanol:water or oil:water (Po:w) PCs and water:air (Pw:a) PCs at 25°C of chemicals from their molecular structure information using previously validated fragment constant methods, (2) correcting for the temperature dependence of vapor pressures using the Clausius-Clapeyron equation to extrapolate the Pw:a to 37°C, and (3) incorporating these data along with data on volumes of neutral lipids, phospholipids, and water in tissues and blood in an algorithm to predict Pt:a and Pb:a. The predictions of rat and human Pt:a (liver, muscle, and adipose tissue) and Pb:a for 17 chemicals obtained with the present methodology were, in general, within a factor of two of the corresponding experimental values obtained from the literature. Following the incorporation of the elements of this methodology within a human PBPK model for dichloromethane, the Pt:a and Pb:a values were automatically calculated during each run within the model from the molecular structure information provided as input. The methodological approaches proposed in this article represent a significant step toward the development of PBPK models from molecular structure information provided as the sole input.Keywords
This publication has 25 references indexed in Scilit:
- An algorithm for predicting tissue : Blood partition coefficients of organic chemicals fromn‐octanol: Water partition coefficient dataJournal of Toxicology and Environmental Health, 1995
- A biologically-based algorithm for predicting human tissue: blood partition coefficients of organic chemicalsHuman & Experimental Toxicology, 1995
- Partition coefficients of some acetate esters and alcohols in water, blood, olive oil, and rat tissues.Occupational and Environmental Medicine, 1994
- Prediction of the partition coefficient of lipophilic compounds in the air-mammal tissue systemScience of The Total Environment, 1993
- QSAR Approach to Estimation of the Distribution of Xenobiotics and the Target Organ in the BodyDrug Metabolism and Drug Interactions, 1991
- Partition coefficients of low-molecular-weight volatile chemicals in various liquids and tissuesToxicology and Applied Pharmacology, 1989
- Solubility properties in polymers and biological media. 2. The correlation and prediction of the solubilities of nonelectrolytes in biological tissues and fluidsJournal of Medicinal Chemistry, 1985
- Effects of Biosolubility on Pulmonary Uptake and Disposition of Gases and Vapors of Lipophilic ChemicalsDrug Metabolism Reviews, 1984
- Osmolarity Determines the Solubility of Anesthetics in Aqueous Solutions at 37°CAnesthesiology, 1983
- SOLUBILITY COEFFICIENTS FOR INHALED ANAESTHETICS FOR WATER, OIL AND BIOLOGICAL MEDIABritish Journal of Anaesthesia, 1973