Related Experiment Video
Updated: Jun 27, 2026

Use of a High-throughput In Vitro Microfluidic System to Develop Oral Multi-species Biofilms
Published on: December 1, 2014
Predicting human oral bioavailability of a compound: development of a novel quantitative structure-bioavailability
C W Andrews1, L Bennett, L X Yu
1GlaxoWellcome Inc., Research Triangle Park, North Carolina 27709, USA.
Purpose:
The purpose of this investigation was to develop a quantitative structure-bioavailability relationship (QSBR) model for drug discovery and development.
Methods:
A database of drugs with human oral bioavailability was assembled in electronic form with structure in SMILES format. Using that database, a stepwise regression procedure was used to link oral bioavailability in humans and substructural fragments in drugs. The regression model was compared with Lipinski's Rule of Five.
Results:
The human oral bioavailability database contains 591 compounds. A regression model employing 85 descriptors was built to predict the human oral bioavailability of a compound based on its molecular structure. Compared to Lipinski's Rule of Five, the false negative predictions were reduced from 5% to 3% while the false positive predictions decreased from 78% to 53%. A set of substructural descriptors was identified to show which fragments tend to increase/decrease human oral bioavailability.
Conclusions:
A novel quantitative structure-bioavailability relationship (QSBR) was developed. Despite a large degree of experimental error, the model was reasonably predictive and stood up to cross-validation. When compared to Lipinski's Rule of Five, the QSBR model was able to reduce false positive predictions.
More Related Videos
Related Concept Videos
Bioavailability: Overview
Bioavailability: Overview
Bioavailability Study Design: Absolute Versus Relative Bioavailability
Bioavailability Study Design: Single Versus Multiple Dose Studies
Measurement of Bioavailability: Pharmacodynamic Methods
Bioavailability Enhancement: Determination and Conceptual Approaches in Overcoming Bioavailability Problems

