Genomic Profiling Reveals Unique Molecular Alterations in Hepatoblastomas and Adjacent Hepatocellular Carcinomas in B6C3F1 Mice

Author:

Bhusari Sachin1,Pandiri Arun R.12,Nagai Hiroaki1,Wang Yu1,Foley Julie1,Hong Hue-Hua L.1,Ton Thai-Vu1,DeVito Michael3,Shockley Keith R.4,Peddada Shyamal D.4,Gerrish Kevin E.5,Malarkey David E.1,Hooth Michelle J.6,Sills Robert C.1,Hoenerhoff Mark J.1

Affiliation:

1. Cellular and Molecular Pathology Branch, National Institute of Environmental Health Sciences, Research Triangle Park, North Carolina, USA

2. Experimental Pathology Laboratories, Research Triangle Park, North Carolina, USA

3. Toxicology Branch, Division of the National Toxicology Program, National Institute of Environmental Health Sciences, Research Triangle Park, North Carolina, USA

4. Biostatistics and Computational Biology Branch, National Institute of Environmental Health Sciences, Research Triangle Park, North Carolina, USA

5. Molecular Genomics Core, National Institute of Environmental Health Sciences, Research Triangle Park, North Carolina, USA

6. Program Operations Branch, Division of the National Toxicology Program, Research Triangle Park, North Carolina, USA

Abstract

The cell of origin of hepatoblastoma (HB) in humans and mice is unknown; it is hypothesized to be a transformed hepatocyte, oval cell, or hepatic progenitor cell. In mice, current dogma is that HBs arise from preexisting hepatocellular neoplasms as a result of further neoplastic transformation. However, there is little evidence supporting this direct relationship. To better understand the relationship between hepatocellular carcinoma (HCC) and HB and determine molecular similarities between mouse and human HB, global gene expression analysis and targeted mutation analysis were performed using HB, HCC, and adjacent liver from the same animals in a recent National Toxicology Program bioassay. There were significant differences in Hras and Ctnnb1 mutation spectra, and by microarray, HBs showed dysregulation of embryonic development, stem cell pluripotency, and genomic imprinting compared to HCC. Meta-analysis showed similarities between HB, early mouse embryonic liver, and hepatocyte-derived stem/progenitor cells compared to HCC. Our data show that there are striking differences between HB and HCC and suggest that HB is a significantly different entity that may arise from a hepatic precursor cell. Furthermore, mouse HB is similar to the human disease at the pathway level and therefore is likely a relevant model for evaluating human cancer hazard.

Publisher

SAGE Publications

Subject

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

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