Literature DB >> 14768905

In silico prediction of aqueous solubility, human plasma protein binding and volume of distribution of compounds from calculated pKa and AlogP98 values.

Mario Lobell1, Vinothini Sivarajah.   

Abstract

We have investigated whether three important ADME (absorption, distribution, metabolism, excretion) related properties (aqueous solubility, human plasma protein binding, and human volume of distribution at steady-state) can be predicted from chemical structure alone if only the predicted predominant ionisation state and lipophilicity (calculated logP [P = octanol-water partition coefficient]) are considered. A simple, fast method for the in silico prediction of aqueous solubility of predominantly uncharged compounds has been developed, while some potential is shown for the prediction of predominantly charged or zwitterionic compounds. Ten other known in silico prediction methods for aqueous solubility have also been evaluated. It has furthermore been demonstrated that the molecular weight (MW) profile of training sets for the development of aqueous solubility prediction methods can influence their predictive performance with regard to test sets of either matching or diverging profiles. The same property descriptors which have been found most relevant for the prediction of aqueous solubility have also proved useful for the prediction of human plasma protein binding and human volume of distribution at steady-state.

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Year:  2003        PMID: 14768905     DOI: 10.1023/b:modi.0000006562.93049.36

Source DB:  PubMed          Journal:  Mol Divers        ISSN: 1381-1991            Impact factor:   2.943


  35 in total

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4.  Estimation of aqueous solubility in drug design.

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5.  Application of associative neural networks for prediction of lipophilicity in ALOGPS 2.1 program.

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6.  Differential Shannon entropy analysis identifies molecular property descriptors that predict aqueous solubility of synthetic compounds with high accuracy in binary QSAR calculations.

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7.  SLIPPER-2001 -- software for predicting molecular properties on the basis of physicochemical descriptors and structural similarity.

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8.  Recent advances in the prediction of blood-brain partitioning from molecular structure.

Authors:  Mario Lobell; László Molnár; György M Keserü
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Review 9.  Physiological parameters in laboratory animals and humans.

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Review 10.  The influence of DMPK as an integrated partner in modern drug discovery.

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  19 in total

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3.  Real Patient and its Virtual Twin: Application of Quantitative Systems Toxicology Modelling in the Cardiac Safety Assessment of Citalopram.

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5.  On quantitative relationships between drug-like compound lipophilicity and plasma free fraction in monkey and human.

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8.  The use of pseudo-equilibrium constant affords improved QSAR models of human plasma protein binding.

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Journal:  Pharm Res       Date:  2013-04-09       Impact factor: 4.200

9.  Three-class classification models of logS and logP derived by using GA-CG-SVM approach.

Authors:  Hui Zhang; Ming-Li Xiang; Chang-Ying Ma; Qi Huang; Wei Li; Yang Xie; Yu-Quan Wei; Sheng-Yong Yang
Journal:  Mol Divers       Date:  2009-01-31       Impact factor: 3.364

10.  Complementary PLS and KNN algorithms for improved 3D-QSDAR consensus modeling of AhR binding.

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