New QSPR study for the pbkp_rediction of aqueous solubility of drug-like compounds


Abstract:

Solubility has become one of the key physicochemical screens at early stages of the drug development process. Solubility pbkp_rediction through Quantitative Structure-Property Relationships (QSPR) modeling is a growing area of modern pharmaceutical research, being compatible with both High Throughput Screening technologies and limited compound availability characteristic of early stages of drug development. We resort to the QSPR theory for analyzing the aqueous solubility exhibited by 145 diverse drug-like organic compounds (0.781 being the average Tanimoto distances between all possible pairs of compounds in the training set). An accurate and generally applicable model is derived, consisting on a linear regression equation that involves three DRAGON molecular descriptors selected from more than a thousand available. Alternatively, we apply the linear QSPR to other 21 commonly employed validation compounds, leading to solubility estimations that compare fairly well with the performance achieved by previously reported Group Contribution Methods. © 2008 Elsevier Ltd. All rights reserved.

Año de publicación:

2008

Keywords:

  • Replacement method variable subset selection
  • QSPR Theory
  • Aqueous solubility
  • Dragon molecular descriptors
  • Group contribution method

Fuente:

scopusscopus

Tipo de documento:

Article

Estado:

Acceso restringido

Áreas de conocimiento:

  • Relación cuantitativa estructura-actividad

Áreas temáticas:

  • Farmacología y terapéutica
  • Química física