articleTop 1% cited
Rapid calculation of polar molecular surface area and its application to the prediction of transport phenomena. 2. Prediction of blood–brain barrier penetration
Journal of Pharmaceutical Sciences · 1999 · Vol. 88(8) · pp. 815–821
David E. Clark✉(Barking and Dagenham College)
Abstract
This paper describes the derivation of a simple QSAR model for the prediction of log BB from a set of 55 diverse organic compounds. The model contains two variables: polar surface area (PSA) and calculated logP, both of which can be rapidly computed. It therefore permits the prediction of log BB for large compound sets, such as virtual combinatorial libraries. The performance of this QSAR on two test sets taken from the literature is illustrated and compared with results from other reported computational approaches to log BB prediction.
Computational Drug Discovery MethodsAnalytical Chemistry and ChromatographyProtein Structure and DynamicsPolar surface areaPolarQuantitative structure–activity relationshipSet (abstract data type)Penetration (warfare)Molecular descriptorSimple (philosophy)Surface (topology)Biological systemComputer science
MeSH terms
AlgorithmsBlood-Brain BarrierChemistry, PhysicalComputer SimulationPharmaceutical PreparationsModels, ChemicalMolecular ConformationMolecular WeightRegression AnalysisStructure-Activity RelationshipSurface PropertiesChemical Phenomena
Citations
511
FWCI
19.01
field-weighted impact
References
31
Percentile
100%
vs. same field & year
Citations per year
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References
Rapid calculation of polar molecular surface area and its application to the prediction of transport phenomena. 1. Prediction of intestinal absorption
Journal of Pharmaceutical Sciences · 1999 · 611 citations
Experimental and computational approaches to estimate solubility and permeability in drug discovery and development settings 1PII of original article: S0169-409X(96)00423-1. The article was originally published in Advanced Drug Delivery Reviews 23 (1997) 3–25. 1
Advanced Drug Delivery Reviews · 2001 · 17,620 citations
Simple Method of Calculating Octanol/Water Partition Coefficient.
Chemical and Pharmaceutical Bulletin · 1992 · 523 citations
Experimental and computational approaches to estimate solubility and permeability in drug discovery and development settings
Advanced Drug Delivery Reviews · 1997 · 11,043 citations
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