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Assessment of Feasibility for Developing Toxicogenomics Biomarkers by comparing in vitro and in vivo Genomic Profiles Specific to Liver Toxicity Induced by Acetaminophen
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  • Assessment of Feasibility for Developing Toxicogenomics Biomarkers by comparing in vitro and in vivo Genomic Profiles Specific to Liver Toxicity Induced by Acetaminophen
  • Assessment of Feasibility for Developing Toxicogenomics Biomarkers by comparing in vitro and in vivo Genomic Profiles Specific to Liver Toxicity Induced by Acetaminophen
저자명
Kang. Jin-Seok,Jeong. Youn-Kyoung,Suh. Soo-Kyung,Kim. Joo-Hwan,Lee. Woo-Sun,Lee. Eun-Mi,Shin. Ji-He,Jung. Hai-Kwan,Kim. Seung-He
간행물명
Molecular & cellular toxicology
권/호정보
2007년|3권 3호|pp.177-184 (8 pages)
발행정보
대한독성유전단백체학회
파일정보
정기간행물|ENG|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

As a possible feasibility of the extrapolation between in vivo and in vitro systems, we investigated the global gene expression from both mouse liver and mouse hepatic cell line treated with hepatotoxic chemical, acetaminophen (APAP), and compared between in vivo and in vitro genomic profiles. For in vivo study, mice were orally treated with APAP and sacrificed at 6 and 24 h. For in vitro study, APAP were administered to a mouse hepatic cell line, BNL CL.2 and sampling was carried out at 6 and 24 h. Hepatotoxicity was assessed by analyzing hepatic enzymes and histopathological examination (in vivo) or lactate dehydrogenase (LDH) assay and morphological examination (in vitro). Global gene expression was assessed using microarray. In high dose APAPtreated group, there was centrilobular necrosis (in vivo) and cellular toxicity with the elevation of LDH (in vitro) at 24 h. Statistical analysis of global gene expression identified that there were similar numbers of altered genes found between in vivo and in vitro at each time points. Pathway analysis identified glutathione metabolism pathway as common pathways for hepatotoxicty caused by APAP. Our results suggest it may be feasible to develop toxicogenomics biomarkers or profiles by comparing in vivo and in vitro genomic profiles specific to this hepatotoxic chemical for application to prediction of liver toxicity.