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Transcriptome-metabolome-wide association study (TMWAS) in rats revealed a potential carcinogenic effect of DEHP in thyroid associated with eicosanoids

Title
Transcriptome-metabolome-wide association study (TMWAS) in rats revealed a potential carcinogenic effect of DEHP in thyroid associated with eicosanoids
Authors
Kim, Jae KwanZhang, JianHwang, SeungwooCho, SeonghaYu, Wook-JoonJeong, Ji-SeongPark, Il-HyunLee, Byung-ChulJee, Sun HaLim, Kyung-MinPark, Youngja H.
Ewha Authors
임경민
SCOPUS Author ID
임경민scopus
Issue Date
2022
Journal Title
ENVIRONMENTAL RESEARCH
ISSN
0013-9351JCR Link

1096-0953JCR Link
Citation
ENVIRONMENTAL RESEARCH vol. 214
Keywords
Di-2-ethylhexyl phthalateThyroid cancerTranscriptomicsMetabolomicsEicosanoids
Publisher
ACADEMIC PRESS INC ELSEVIER SCIENCE
Indexed
SCIE; SCOPUS WOS scopus
Document Type
Article
Abstract
The incidence of thyroid cancer (TC) has increased considerably in the last few decades. Environmental factors, including plasticizers, are recognized as potential risks leading to thyroid cancer in humans. In this study, we used a transcriptome-metabolome-wide association study to find the unidentified carcinogenic mechanism of di2-ethylhexyl phthalate (DEHP) in thyroid and biomarkers for non-invasive diagnosis. Rats were treated with different doses of DEHP (0, 0.3, 3, 30, 150 mg DEHP/kg bw/day) for 13 weeks. Then, the thyroids were processed for Ki67 staining and RNA-seq. Also, 17-h urine samples were collected for high-resolution metabolomics analysis. After a high dose of DEHP exposure, the terminal body weights and the thyroid and parathyroid glands weights were not altered. However, the liver weights and numbers of Ki67-positive cells were increased. Further, multivariate statistical analysis revealed that metabolic shifts were considerably altered above 30 mg DEHP/kg bw/day. In RNA-seq analysis, some cancer-related genes were altered, including 18 upregulated and 9 downregulated transcripts. These cancer transcripts and whole metabolome data were integrated to uncover thyroid cancer-related metabolic pathways, which revealed that cancer-related transcripts had a network structure linked to eicosanoids such as leukotriene D4 and prostaglandin. In brief, our study demonstrated that DEHP can induce thyroid hyperplasia through the eicosanoid-associated pathway, providing further insight into the mechanism of DEHP-associated thyroid cancer.
DOI
10.1016/j.envres.2022.113805
Appears in Collections:
약학대학 > 약학과 > Journal papers
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