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A reactive oxygen species (ROS) assay was previously developed for photosafety assessment; however, the phototoxic potential of some chemicals cannot be evaluated because of their limited aqueous solubility. The present study was undertaken to develop a new micellar ROS (mROS) assay system for poorly water-soluble chemicals using a micellar solution of 0.5

作者:Yoshiki, Seto;Masashi, Kato;Shizuo, Yamada;Satomi, Onoue

来源:Toxicology in vitro : an international journal published in association with BIBRA 2013 年 27卷 6期

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收藏
| 浏览:60
作者:
Yoshiki, Seto;Masashi, Kato;Shizuo, Yamada;Satomi, Onoue
来源:
Toxicology in vitro : an international journal published in association with BIBRA 2013 年 27卷 6期
标签:
CV DMSO Micellar solution NBT NaPB OECD PABA Photoreactivity Photosafety assessment Phototoxicity Poorly water-soluble chemicals ROS Reactive oxygen species SD SDS UV coefficient of variation dimethyl sulfoxide mROS assay micellar reactive oxygen species assay nitroblue tetrazolium p-aminobenzoic acid reactive oxygen species sodium dodecyl sulfate sodium phosphate buffer standard deviation the Organisation for Economic Co-operation and Development ultraviolet
A reactive oxygen species (ROS) assay was previously developed for photosafety assessment; however, the phototoxic potential of some chemicals cannot be evaluated because of their limited aqueous solubility. The present study was undertaken to develop a new micellar ROS (mROS) assay system for poorly water-soluble chemicals using a micellar solution of 0.5