Early Ethanol Exposure Inhibits the Differentiation of Hippocampal Dentate Gyrus Granule Cells in a Mouse Model of Fetal Alcohol Spectrum Disorders

被引:1
作者
Xu, Wenhua [1 ,2 ]
Li, Hui [1 ]
He, Caigu [1 ,3 ]
Frank, Jacqueline [1 ]
Chen, Gang [1 ]
机构
[1] Univ Kentucky, Coll Med, Dept Pharmacol & Nutr Sci, Lexington, KY USA
[2] Univ Sci & Technol China, Affiliated Hosp 1, Dept Neurology (, Hefei, Peoples R China
[3] Fujian Univ Tradit Chinese Med, Dept Histol & Embryol, Fuzhou, Peoples R China
来源
ALCOHOL-CLINICAL AND EXPERIMENTAL RESEARCH | 2020年 / 44卷 / 05期
关键词
Alcohol; Fetal Alcohol Spectrum Disorders; Hippocampus; Dentate Gyrus; Granule Cell Differentiation; NEURONAL DEFICITS; RAT HIPPOCAMPUS; REDUCTIONS; PROTEIN;
D O I
10.1111/acer.14330
中图分类号
R194 [卫生标准、卫生检查、医药管理];
学科分类号
摘要
Background Alcohol consumption during pregnancy may damage the developing central nervous system of the fetus and lead to brain structural and functional deficits in the children, known as fetal alcohol spectrum disorders. The underlying mechanisms have not been fully elucidated. Previously, using a third trimester-equivalent mouse model, ethanol (EtOH)-induced behavioral deficits (including spatial learning and memory dysfunction) in the mice were detected on postnatal day (PD) 35. The hippocampal formation is critically involved in spatial learning/memory and contains 2 major neuron populations: the pyramidal cells in the hippocampus proper and the dentate gyrus granule cells (DGGCs) in the dentate gyrus (DG). In rodents, while the pyramidal cells are almost exclusively generated prenatally, the DG granule neurons are majorly generated during the first 2 weeks postnatally, which coincides with the period of EtOH exposure in our mouse model. Therefore, in the current study the effects of EtOH exposure on the development of the DGGCs were examined. Methods C57BL/6 mice were treated with 4 g/kg of EtOH by intubation on PD 4 to 10 to mimic alcohol exposure to the fetus during the third trimester in humans, and the development of DGGCs was examined by immunohistochemistry and quantified on PD 35. Results EtOH exposure does not affect the number of total or newly generated DGGCs, but reduces the number of mature DGGCs on PD 35 in both male and female mice. The ratio of immature DGGCs over total DGGCs was increased, and the ratio of mature DGGCs over total DGGCs was decreased by EtOH exposure. In addition, no sex-dependent effects of EtOH treatment were detected. Conclusion Our data indicate that EtOH exposure in mice during PD 4 to 10 does not affect the generation/proliferation but inhibits the differentiation of the DGGCs on PD 35.
引用
收藏
页码:1112 / 1122
页数:11
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