articleTop 1% cited
New Substructure Filters for Removal of Pan Assay Interference Compounds (PAINS) from Screening Libraries and for Their Exclusion in Bioassays
Journal of Medicinal Chemistry · 2010 · Vol. 53(7) · pp. 2719–2740
Jonathan B. Baell✉(Walter and Eliza Hall Institute of Medical Research)Georgina A. Holloway(Walter and Eliza Hall Institute of Medical Research)
Abstract
This report describes a number of substructural features which can help to identify compounds that appear as frequent hitters (promiscuous compounds) in many biochemical high throughput screens. The compounds identified by such substructural features are not recognized by filters commonly used to identify reactive compounds. Even though these substructural features were identified using only one assay detection technology, such compounds have been reported to be active from many different assays. In fact, these compounds are increasingly prevalent in the literature as potential starting points for further exploration, whereas they may not be.
Computational Drug Discovery MethodsAdvanced Biosensing Techniques and ApplicationsAnalytical Chemistry and ChromatographyChemistryBioassayHigh-throughput screeningCombinatorial chemistryComputational biologyChromatographyBiochemistryBiology
MeSH terms
Drug Evaluation, PreclinicalReproducibility of ResultsDatabases, FactualHigh-Throughput Screening Assays
Funding
- Australian Government
- State Government of Victoria
- Cancer Therapeutics Cooperative Research Centre
- National Health and Medical Research Council
Citations
3,863
FWCI
76.20
field-weighted impact
References
191
Percentile
100%
vs. same field & year
Citations per year
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References
A Common Mechanism Underlying Promiscuous Inhibitors from Virtual and High-Throughput Screening
Journal of Medicinal Chemistry · 2002 · 1,044 citations
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