Induction of mitosis delay, apoptosis and aneuploidy in human cells by phenyl hydroquinone, an Ames test-negative carcinogen
Author:
Affiliation:
1. Graduate School of Life Sciences, Tohoku University
2. Graduate School of Medicine, Tohoku University
Publisher
Genetics Society of Japan
Subject
Genetics,Molecular Biology,General Medicine
Link
http://www.jstage.jst.go.jp/article/ggs/84/1/84_1_73/_pdf
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1. Detection of micronuclei, cell proliferation and hyperdiploidy in bladder epithelial cells of rats treated with o-phenylphenol
2. Rck1 and Rck2 MAPKAP kinases and the HOG pathway are required for oxidative stress resistance
3. O-Phenylphenol and its Sodium and Potassium Salts: A Toxicological Assessment
4. The when and wheres of CDC25 phosphatases
5. Analysis of genotoxicity and the carcinogenic mode of action forortho-phenylphenol
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1. Small molecule–based targeting of TTD-A dimerization to control TFIIH transcriptional activity represents a potential strategy for anticancer therapy;Journal of Biological Chemistry;2018-09
2. The role of urinary pH ino-phenylphenol-induced cytotoxicity and chromosomal damage in the bladders of F344 rats;Environmental and Molecular Mutagenesis;2016-02-26
3. Potential carcinogenic hazards of non-regulated disinfection by-products: Haloquinones, halo-cyclopentene and cyclohexene derivatives, N-halamines, halonitriles, and heterocyclic amines;Toxicology;2011-08
4. Para-phenylenediamine induced DNA damage and apoptosis through oxidative stress and enhanced caspase-8 and -9 activities in Mardin–Darby canine kidney cells;Toxicology in Vitro;2010-06
5. Hydroquinone, a Benzene Metabolite, Induces Hog1-dependent Stress Response Signaling and Causes Aneuploidy in Saccharomyces cerevisiae;Journal of Radiation Research;2010
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