A study for finding new phototoxicity descriptors related to potential energy
Author:
Affiliation:
1. Pharmacokinetis & Toxicology Laboratories, Senju Pharmaceutical Co. Ltd.
Publisher
Japanese Society of Toxicology
Link
https://www.jstage.jst.go.jp/article/fts/4/3/4_105/_pdf
Reference9 articles.
1. Haranosono, Y., Kurata, M. and Sakaki, H. (2014): Establishment of an in silico phototoxicity prediction method by combining descriptors related to photo-absorption and photo-reaction. J. Toxicol. Sci., 41, 321-328.
2. Kleinman, M.H., Smith, M.D., Kurali, E., Kleinpeter, S., Jiang, K., Zhang, Y., Kennedy-Gabb, S.A., Lynch, A.M. and Geddes, C.D. (2010): An evaluation of chemical photoreactivity and the relationship to phototoxicity. Regul. Toxicol. Pharmacol., 58, 224-232.
3. Peters, B. and Holzhütter, H.G. (2002): In vitro phototoxicity testing: Development and validation of a new concentration response analysis software and biostatistical analyses related to the use of various prediction models. Altern. Lab. Anim., 30, 415-432.
4. Photosafety evaluation of pharmaceuticals S10, International Conference on Harmonization of Technical Requirements for Registration of Pharmaceuticals for Human Use (2013).
5. Ringeissen, S., Marrot, L., Note, R., Labarussiat, A., Imbert, S., Todorov, M., Mekenyan, O. and Meunier, J.R. (2011): Development of a mechanistic SAR model for the detection of phototoxic chemicals and use in an integrated testing strategy. Toxicol. In Vitro, 25, 324-334.
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