Is Genotoxicity of Peroxisome Proliferator-Activated Receptor Agonists Due to Oxidative Stress Via Agonistic Pathways?

Authors

  • Sasaki YF* Material and Biological Engineering Course, Department of Industrial Systems Engineering National Institute of Technology, Hachinohe College, Hachinohe, Japan Author
  • Kawaguchi S Material and Biological Engineering Course, Department of Industrial Systems Engineering National Institute of Technology, Hachinohe College, Hachinohe, Japan Author
  • Kadoma Y Material and Biological Engineering Course, Department of Industrial Systems Engineering National Institute of Technology, Hachinohe College, Hachinohe, Japan Author
  • Arai H Material and Biological Engineering Course, Department of Industrial Systems Engineering National Institute of Technology, Hachinohe College, Hachinohe, Japan Author
  • Yamamoto A Material and Biological Engineering Course, Department of Industrial Systems Engineering National Institute of Technology, Hachinohe College, Hachinohe, Japan Author
  • Honma T Material and Biological Engineering Course, Department of Industrial Systems Engineering National Institute of Technology, Hachinohe College, Hachinohe, Japan Author
  • Sato K Material and Biological Engineering Course, Department of Industrial Systems Engineering National Institute of Technology, Hachinohe College, Hachinohe, Japan Author
  • Saito T Material and Biological Engineering Course, Department of Industrial Systems Engineering National Institute of Technology, Hachinohe College, Hachinohe, Japan Author
  • Hasegawa A Material and Biological Engineering Course, Department of Industrial Systems Engineering, National Institute of Technology, Hachinohe College, Hachinohe, Japan Author
  • Matsumoto K Material and Biological Engineering Course, Department of Industrial Systems Engineering National Institute of Technology, Hachinohe College, Hachinohe, Japan Author
  • Nakamura T Department of Pharmaceutical Health Care, Faculty of Pharmaceutical Sciences, Himeji Dokkyo University, Himeji, Japan Author
  • Kojima H Department of Pharmaceutical Health Care, Faculty of Pharmaceutical Sciences, Himeji Dokkyo University, Himeji, Japan Author
  • Kikuchi Y Department of General Science and Education, National Institute of Technology, Hachinohe College, Hachinohe, Japan Author

DOI:

https://doi.org/10.23880/act-16000225

Keywords:

PPAR Agonist, PPAR Antagonist, Genotoxicity, DNA Damage, TK Mutation, ROS, PPAR Agonistic Pathway

Abstract

In order to investigate the relationship between genotoxicity and peroxisome proliferator-activated receptor (PPAR) agonistic effects, we conducted two kinds of comet assays (cellular and acellular), a micronucleus (MN) test, and a TK mutation assay with and without PPAR antagonists using human lymphoblastoid cells. PPARα agonist clofibrate (CLF) and PPARγ agonists indomethacin (IND) and pioglitazone (PGZ) showed positive responses in the cellular comet assay, TK mutation assay, and detection of intracellular reactive oxygen species (ROS), but not in the acellular comet assay and MN test. PPARα antagonist (GW6471) suppressed the induction of ROS, DNA damage, and TK mutation by CLF. PPARγ antagonist (BADGE) suppressed the induction of ROS, DNA damage, and TK mutation by IND and PGZ. Therefore, CLF and two PPARγ agonists (PGZ and IND) show genotoxicity by oxidative stress via PPARα and PPARγ agonistic pathways, respectively. Considering that some unrepaired DNA lesions induced by them persist to form gene mutations but not chromosome aberrations, there is a possibility that their genotoxic potential is due to mutagenic but not clastogenic potential by the production of ROS via agonistic pathway.

Downloads

Published

2021-12-01

Issue

Section

Articles

Most read articles by the same author(s)