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Published on: March 20, 2012
Prenatal ethanol exposure selectively reduces the mRNA encoding alpha-1 thyroid hormone receptor in fetal rat brain
H C Scott1, G Y Sun, R T Zoeller
1Department of Pathology, University of Missouri School of Medicine, Columbia, USA.
Abstract:
Some of the developmental defects characteristic of congenital or experimental hypothyroidism are also observed in children or experimental animals prenatally exposed to ethanol, suggesting that a subset of neurological defects attributable to ethanol exposure are produced by interfering with thyroid hormone action. In this article, we tested whether an ethanol treatment regimen known to produce neurological damage in rats can alter the expression of the mRNAs encoding the thyroid hormone receptor isoforms (TR alpha-1, TR alpha-2, and TR beta-1) in the fetal rat brain neocortex and hippocampus. Rats were fed an ethanol-containing diet beginning on gestational day (G) 6 and continuing until sacrifice on G15, G17, or G21; controls included animals pair-fed a liquid control diet or fed lab chow. Ethanol selectively reduced the expression of TR alpha-1 mRNA in the neocortex and hippocampus on G21, compared with pair-fed and control fetuses. In contrast, pair-feeding selectively reduced TR alpha-2 mRNA in both neocortex and hippocampus on G21, and increased TR beta-1 mRNA on G17. These data support the hypothesis that ethanol may interfere with thyroid hormone action during fetal brain development. In addition, these data indicate that ethanol and pair-feeding exert independent effects on thyroid hormone receptor expression in the developing brain.
Insights
Prenatal ethanol exposure may disrupt fetal brain development by interfering with thyroid hormone action. This study found ethanol altered thyroid hormone receptor expression in developing rat brains, suggesting a mechanism for ethanol-induced neurological defects.
Area of Science:
- Neuroscience
- Developmental Biology
- Endocrinology
Background:
- Prenatal ethanol exposure causes neurological defects similar to hypothyroidism.
- Thyroid hormones are crucial for fetal brain development.
- Ethanol's impact on thyroid hormone pathways is not fully understood.
Purpose of the Study:
- To investigate if ethanol exposure alters thyroid hormone receptor (TR) mRNA expression in the fetal rat brain.
- To examine the effects of ethanol on TR alpha-1, TR alpha-2, and TR beta-1 isoforms.
Main Methods:
- Rats were fed ethanol from gestational day 6.
- TR mRNA expression was analyzed in the neocortex and hippocampus on gestational days 15, 17, and 21.
- Control groups included pair-fed and chow-fed animals.
Main Results:
- Ethanol selectively reduced TR alpha-1 mRNA expression in the neocortex and hippocampus by gestational day 21.
- Pair-feeding selectively reduced TR alpha-2 mRNA and increased TR beta-1 mRNA.
- Ethanol and pair-feeding had independent effects on TR expression.
Conclusions:
- Ethanol exposure can interfere with thyroid hormone action during fetal brain development.
- Altered thyroid hormone receptor expression may contribute to ethanol-induced neurological deficits.
- Ethanol and nutritional factors (pair-feeding) have distinct impacts on developing brain TR expression.

