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1.
Genes Brain Behav ; 18(3): e12484, 2019 03.
Article in English | MEDLINE | ID: mdl-29691979

ABSTRACT

Prenatal exposure to alcohol causes a wide range of deficits known as fetal alcohol spectrum disorders (FASDs). Many factors determine vulnerability to developmental alcohol exposure including timing and pattern of exposure, nutrition and genetics. Here, we characterized how a prevalent single nucleotide polymorphism in the human brain-derived neurotrophic factor (BDNF) gene (val66met) modulates FASDs severity. This polymorphism disrupts BDNF's intracellular trafficking and activity-dependent secretion, and has been linked to increased incidence of neuropsychiatric disorders such as depression and anxiety. We hypothesized that developmental ethanol (EtOH) exposure more severely affects mice carrying this polymorphism. We used transgenic mice homozygous for either valine (BDNFval/val ) or methionine (BDNFmet/met ) in residue 68, equivalent to residue 66 in humans. To model EtOH exposure during the second and third trimesters of human pregnancy, we exposed mice to EtOH in vapor chambers during gestational days 12 to 19 and postnatal days 2 to 9. We found that EtOH exposure reduces cell layer volume in the dentate gyrus and the CA1 hippocampal regions of BDNFmet/met but not BDNFval/val mice during the juvenile period (postnatal day 15). During adulthood, EtOH exposure reduced anxiety-like behavior and disrupted trace fear conditioning in BDNFmet/met mice, with most effects observed in males. EtOH exposure reduced adult neurogenesis only in the ventral hippocampus of BDNFval/val male mice. These studies show that the BDNF val66met polymorphism modulates, in a complex manner, the effects of developmental EtOH exposure, and identify a novel genetic risk factor that may regulate FASDs severity in humans.


Subject(s)
Anxiety/genetics , Brain-Derived Neurotrophic Factor/genetics , Central Nervous System Depressants/toxicity , Ethanol/toxicity , Hippocampus/drug effects , Mutation, Missense , Prenatal Exposure Delayed Effects/genetics , Animals , Conditioning, Classical , Fear , Female , Hippocampus/growth & development , Male , Mice , Polymorphism, Single Nucleotide , Pregnancy
2.
Neuroscience ; 324: 107-18, 2016 Jun 02.
Article in English | MEDLINE | ID: mdl-26964687

ABSTRACT

Exposure to ethanol during fetal development produces long-lasting neurobehavioral deficits caused by functional alterations in neuronal circuits across multiple brain regions. Therapeutic interventions currently used to treat these deficits are only partially efficacious, which is a consequence of limited understanding of the mechanism of action of ethanol. Here, we describe a novel effect of ethanol in the developing brain. Specifically, we show that exposure of rats to ethanol in vapor chambers during the equivalent to the third trimester of human pregnancy causes brain micro-hemorrhages. This effect was observed both at low and high doses of ethanol vapor exposure, and was not specific to this exposure paradigm as it was also observed when ethanol was administered via intra-esophageal gavage. The vast majority of the micro-hemorrhages were located in the cerebral cortex but were also observed in the hypothalamus, midbrain, olfactory tubercle, and striatum. The auditory, cingulate, insular, motor, orbital, retrosplenial, somatosensory, and visual cortices were primarily affected. Immunohistochemical experiments showed that the micro-hemorrhages caused neuronal loss, as well as reactive astrogliosis and microglial activation. Analysis with the Catwalk test revealed subtle deficits in motor function during adolescence/young adulthood. In conclusion, our study provides additional evidence linking developmental ethanol exposure with alterations in the fetal cerebral vasculature. Given that this effect was observed at moderate levels of ethanol exposure, our findings lend additional support to the recommendation that women abstain from consuming alcoholic beverages during pregnancy.


Subject(s)
Brain/pathology , Central Nervous System Depressants/toxicity , Ethanol/toxicity , Fetal Alcohol Spectrum Disorders/pathology , Intracranial Hemorrhages/etiology , Intracranial Hemorrhages/pathology , Animals , Astrocytes/drug effects , Astrocytes/pathology , Biomechanical Phenomena , Brain/drug effects , Brain/growth & development , Disease Models, Animal , Female , Fetal Alcohol Spectrum Disorders/physiopathology , Gliosis/etiology , Gliosis/pathology , Gliosis/physiopathology , Intracranial Hemorrhages/physiopathology , Male , Microglia/drug effects , Microglia/pathology , Motor Activity/drug effects , Neurons/drug effects , Neurons/pathology , Pregnancy , Rats, Sprague-Dawley
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