Different Pathways of Constitutive Androstane Receptor–mediated Liver Hypertrophy and Hepatocarcinogenesis in Mice Treated with Piperonyl Butoxide or Decabromodiphenyl Ether

Author:

Sakamoto Yohei1,Inoue Kaoru1,Takahashi Miwa1,Taketa Yoshikazu1,Kodama Yukio2,Nemoto Kiyomitsu3,Degawa Masakuni3,Gamou Toshie4,Ozawa Shogo4,Nishikawa Akiyoshi5,Yoshida Midori1

Affiliation:

1. Division of Pathology, National Institute of Health Sciences, Setagaya-ku, Tokyo, Japan

2. Division of Cellular and Molecular Toxicology, National Institute of Health Sciences, Setagaya-ku, Tokyo, Japan

3. Department of Molecular Toxicology, School of Pharmaceutical Sciences, University of Shizuoka, Shizuoka, Japan

4. Department of Pharmacodynamics Molecular Genetics, School of Pharmacy, Iwate Medical University, Iwate, Japan

5. Biological Safety Center, National Institute of Health Sciences, Tokyo, Japan

Abstract

The constitutive androstane receptor (CAR) is essential for Cyp2b induction, liver hypertrophy, and hepatocarcinogenesis in response to phenobarbital (PB). Liver hypertrophy with Cyp2b induction is a major mode of action of hepatocarcinogenesis in rodents. However, it remains unclear whether CAR is involved in the response to many other nongenotoxic hepatocarcinogens besides PB. In this study, we investigated CAR involvement in liver hypertrophy and hepatocarcinogenesis of Cyp2b-inducing nongenotoxic hepatocarcinogens, piperonyl butoxide (PBO), and decabromodiphenyl ether (DBDE), using wild-type and CAR knockout (CARKO) male mice. PB was used as the positive control. In the wild-type mice, 4-week treatment with PBO, DBDE, or PB induced hepatocellular hypertrophy with increased Cyp2b10 messenger RNA and Cyp2b protein expression. In CARKO mice, only PBO showed liver hypertrophy with Cyp2b10 and Cyp3a11 induction. After 27-week treatment following diethylnitrosamine initiation, PBO and PB generated many eosinophilic altered foci/adenomas in wild-type mice; however, the lesions were far less frequent in CARKO mice. DBDE increased the multiplicity of basophilic altered foci/adenomas in wild-type and CARKO mice. Our findings indicate that murine CAR plays major roles in hepatocarcinogenesis but not in liver hypertrophy of PBO. DBDE may act via CAR-independent pathways during hepatocarcinogenesis.

Publisher

SAGE Publications

Subject

Cell Biology,Toxicology,Molecular Biology,Pathology and Forensic Medicine

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