Schultz, T.W.; Yarbrough, J.W.; Koss, S.K. Identification of reactive toxicants: Structure-activity relationships for amides. Cell Biol. Toxicol. 2006, 22, 5, 339–349.

QsarDB Repository

Schultz, T.W.; Yarbrough, J.W.; Koss, S.K. Identification of reactive toxicants: Structure-activity relationships for amides. Cell Biol. Toxicol. 2006, 22, 5, 339–349.

QDB archive DOI: 10.15152/QDB.60   DOWNLOAD

QsarDB content

Property IGC50: 40-h Tetrahymena toxicity as IGC50 [mmol/L]

Property pIGC50: 40-h Tetrahymena toxicity as log(1/IGC50) [log(L/mmol)]

1: Nonspecific aliphatic toxicity

Regression model (regression)

Open in:QDB ExplorerQDB Predictor

NameTypen

R2

σ

Trainingtraining280.3500.846

Citing

When using this QDB archive, please cite (see details) it together with the original article:

  • Ruusmann, V. Data for: Identification of reactive toxicants: Structure-activity relationships for amides. QsarDB repository, QDB.60. 2012. https://doi.org/10.15152/QDB.60

  • Schultz, T. W.; Yarbrough, J. W.; Koss, S. K. Identification of reactive toxicants: Structure-activity relationships for amides. Cell Biol. Toxicol. 2006, 22, 339–349. https://doi.org/10.1007/s10565-006-0079-z

Metadata

Show simple item record

dc.date.accessioned2012-05-23T15:59:42Z
dc.date.available2012-05-23T15:59:42Z
dc.date.issued2012-05-23
dc.identifier.urihttp://hdl.handle.net/10967/60
dc.identifier.urihttp://dx.doi.org/10.15152/QDB.60
dc.description.abstractA diverse series of amides were evaluated for aquatic toxicity (IGC(50)) assessed in the Tetrahymena pyriformis population growth impairment assay and for reactivity (EC(50)) with the model soft nucleophile thiol in the form of the cysteine residue of the tripeptide glutathione. All alkylamides along with some halo-substituted amides are well predicted by the simple hydrophobicity (log K (ow))-electrophilicity (E (lumo)) response-surface model [log(IGC(-1) (50)) = 0.45(log K (ow)) - 0.342(E (lumo)) - 1.11]. However, 2-halo amides with the halogen at the end of the molecule and alpha,beta-unsaturated primary amides are among those derivatives identified as being more toxic than predicted by the model. Amides, which exhibit excess toxicity, were capable of forming covalent bonds through an S(N)2 displacement or a Michael addition. Moreover, only those amides exhibiting excess toxicity were reactive with thiol, suggesting that the reactivity with model nucleophiles such as the thiol group may provide a means of accurately defining reactive toxicants.
dc.publisherVillu Ruusmann
dc.rightsAttribution 4.0 International
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/
dc.titleSchultz, T.W.; Yarbrough, J.W.; Koss, S.K. Identification of reactive toxicants: Structure-activity relationships for amides. Cell Biol. Toxicol. 2006, 22, 5, 339–349.
qdb.property.endpoint6. Other (Acute toxicity to ciliate protozoa)
qdb.property.speciesTetrahymena pyriformis
qdb.descriptor.applicationClogP
qdb.descriptor.applicationTSAR 3.3
bibtex.entryarticle
bibtex.entry.authorSchultz, T. W.
bibtex.entry.authorYarbrough, J. W.
bibtex.entry.authorKoss, S. K.
bibtex.entry.doi10.1007/s10565-006-0079-z
bibtex.entry.journalCell Biol. Toxicol.
bibtex.entry.number5
bibtex.entry.pages339–349
bibtex.entry.titleIdentification of reactive toxicants: Structure-activity relationships for amides
bibtex.entry.volume22
bibtex.entry.year2006
qdb.model.typeRegression model (regression)


Files in this item

NameDescriptionFormatSizeView
v526846442048643.qdb.zipn/aapplication/zip10.12KbView/Open
Files associated with this item are distributed
under Creative Commons license.

This item appears in the following Collection(s)

Show simple item record