4.5 Article

Perinatal Exposure to BDE-99 Causes Decreased Protein Levels of Cyclin D1 via GSK3β Activation and Increased ROS Production in Rat Pup Livers

期刊

TOXICOLOGICAL SCIENCES
卷 137, 期 2, 页码 491-498

出版社

OXFORD UNIV PRESS
DOI: 10.1093/toxsci/kft257

关键词

BDE-99; reactive oxygen species; CYP enzyme system; thyroid hormone receptors; Akt; GSK3 beta; cyclin D1

资金

  1. Fondo de Investigacion Sanitaria, Ministry of Health, Spain [P107631]
  2. FEDER funds

向作者/读者索取更多资源

We here examined the potential liver toxicity in rat pups from dams exposed during the gestational and lactation periods to 2,2,4,4,5-pentabromodiphenyl ether (BDE-99). Dams were exposed to 0, 1, and 2mg/kg/day of BDE-99 from gestation day 6 to postnatal day 21. When the pups were weaning, the liver from 1 pup of each litter was excised to evaluate oxidative stress markers and the messenger RNA (mRNA) expression of multiple cytochrome P450 (CYP) isoforms. To determine whether thyroid hormone (TH) was disrupted, the protein and mRNA expressions of several TH receptor (TR) isoforms, as well as the protein levels of cyclin D1 and the phosphorylated protein kinases Akt and glycogen synthase kinase 3 beta (GSK3), were evaluated. Perinatal exposure to BDE-99 produced decreased levels of cyclin D1 in rat pup livers. A decrease in the active form of Akt and an increase in the active form of GSK3 were observed. The decreased Akt pathway may be due to a potential disruption of the nongenomic actions of TH by BDE-99 and its metabolites. This possible TH disruption was noted as a decrease in TR isoforms expression. By contrast, we observed an upregulation of CYP2B1 gene expression, which is correlated with an increase in reactive oxygen species production. This outcome indicates activation of the nuclear constitutive androstane receptor, which could induce the expression of other enzymes capable of metabolizing TH. The present findings support the hypothesis that perinatal exposure to PBDEs, at levels found in humans, may have serious implications for metabolic processes in rat pup livers.

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