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Photochemistry and Photobiology|March 7, 2014
Phosphorylation of histone H2AX generated by linear alkylbenzene sulfonates and its suppression by UVB exposureToru Kubota, Tatsushi Toyooka, Xiaoxu Zhao, et al.Plos One|April 16, 2015
Bacterial genotoxins promote inside-out integrin β1 activation, formation of focal adhesion complexes and cell spreadingLaura Levi, Tatsushi Toyooka, Manuel Patarroyo, et al.Carcinogenesis|January 9, 2014
Cigarette sidestream smoke induces histone H3 phosphorylation via JNK and PI3K/Akt pathways, leading to the expression of proto-oncogenesYuko Ibuki, Tatsushi Toyooka, Xiaoxu Zhao, et al.The Science of the Total Environment|January 20, 2009
DNA can sediment TiO2 particles and decrease the uptake potential by mammalian cellsTatsushi Toyooka, Takeharu Amano, Hiroshi Suzuki, et al.Mutation Research. Genetic Toxicology and Environmental Mutagenesis|December 15, 2015
New mechanism of γ-H2AX generation: Surfactant-induced actin disruption causes deoxyribonuclease I translocation to the nucleus and forms DNA double-strand breaksXiaoxu Zhao, Gang Yang, Tatsushi Toyooka, et al.Journal of Applied Toxicology : JAT|May 4, 2018
Trichloroethylene exposure results in the phosphorylation of histone H2AX in a human hepatic cell line through cytochrome P450 2E1-mediated oxidative stressTatsushi Toyooka, Yukie Yanagiba, Yuko Ibuki, et al.Plos One|January 8, 2025
Preliminary evaluation of ex vivo and in vivo skin permeability of aromatic aminesYukie Yanagiba, Megumi Ono, Tatsushi Toyooka, et al.Environmental and Molecular Mutagenesis|March 21, 2007
Water soluble fraction of solar-simulated light-exposed crude oil generates phosphorylation of histone H2AX in human skin cells under UVA exposureYuko Ibuki, Tatsushi Toyooka, Jisshou Shirahata, et al.International Journal of Pharmaceutics|May 10, 2012
Beneficial effects of curcumin on antitumor activity and adverse reactions of doxorubicinYasuyuki Sadzuka, Makiko Nagamine, Tatsushi Toyooka, et al.Mutation Research|May 5, 2015
γ-H2AX induced by linear alkylbenzene sulfonates is due to deoxyribonuclease-1 translocation to the nucleus via actin disruptionXiaoxu Zhao, Tatsushi Toyooka, Toru Kubota, et al.Pageof 6