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Brain Res ; 933(2): 164-71, 2002 Apr 19.
Article in English | MEDLINE | ID: mdl-11931861

ABSTRACT

Prenatal protein malnutrition has deleterious effects on hippocampal structure and function that likely result from decreased synapse number. We thus evaluated long-term effects of prenatal protein malnutrition on the mossy fibers-CA3 thorny excrescences asymmetrical synapses in 220-day-old rats. Protein malnourished rats born from pregnant dams fed with 6% casein diet were cross-fostered to lactating control rats at birth. Control animals were fed with a 25% casein diet. Timm's stained material was used to estimate the total reference volume of the mossy fiber system suprapyramidal bundle by means of stereology. The mossy fiber-CA3 asymmetrical synapse numerical density was obtained by electron microscopy, using the physical disector method. The total number of mossy fiber-CA3 asymmetrical synapses was determined on the basis of the total reference volume of the mossy fiber system suprapyramidal bundle and the mossy fiber-CA3 asymmetrical synapse numerical density. Prenatal protein malnutrition produced long-lasting, significant decreases in the volume of the mossy fiber system suprapyramidal bundle and in the numerical density of mossy fiber-CA3 asymmetrical synapse, suggesting a reduction in the total number of this synapse type. Hence, prenatal protein malnutrition induces long lasting deleterious effects on the progression of developmental programs controlling synaptogenesis and/or synaptic consolidation, likely by affecting a myriad of cellular processes.


Subject(s)
Cell Differentiation/physiology , Dendrites/pathology , Food, Formulated/adverse effects , Mossy Fibers, Hippocampal/embryology , Mossy Fibers, Hippocampal/pathology , Placental Insufficiency/pathology , Protein Deficiency/pathology , Synapses/pathology , Animals , Body Weight/physiology , Caseins/metabolism , Cell Count , Dendrites/metabolism , Dendrites/ultrastructure , Female , Male , Microscopy, Electron , Mossy Fibers, Hippocampal/ultrastructure , Organ Size/physiology , Placental Insufficiency/metabolism , Placental Insufficiency/physiopathology , Pregnancy , Protein Deficiency/metabolism , Protein Deficiency/physiopathology , Rats , Rats, Sprague-Dawley , Silver Staining , Synapses/metabolism , Synapses/ultrastructure
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