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Nutr Neurosci ; 16(6): 269-74, 2013 Nov.
Article in English | MEDLINE | ID: mdl-23394149

ABSTRACT

Choline is an essential nutrient required for early development. Previous studies have shown that prenatal choline availability influences adult memory abilities depending on the medial temporal lobe integrity. The relevance of prenatal choline availability on object recognition memory was assessed in adult Wistar rats. Three groups of pregnant Wistar rats were fed from E12 to E18 with choline-deficient (0 g/kg choline chloride), standard (1.1 g/kg choline chloride), or choline-supplemented (5 g/kg choline chloride) diets. The offspring was cross-fostered to rat dams fed a standard diet during pregnancy and tested at the age of 3 months in an object recognition memory task applying retention tests 24 and 48 hours after acquisition. Although no significant differences have been found in the performance of the three groups during the first retention test, the supplemented group exhibited improved memory compared with both the standard and the deficient group in the second retention test, 48 hours after acquisition. In addition, at the second retention test the deficient group did not differ from chance. Taken together, the results support the notion of a long-lasting beneficial effect of prenatal choline supplementation on object recognition memory which is evident when the rats reach adulthood. The results are discussed in terms of their relevance for improving the understanding of the cholinergic involvement in object recognition memory and the implications of the importance of maternal diet for lifelong cognitive abilities.


Subject(s)
Choline Deficiency/prevention & control , Choline/therapeutic use , Dietary Supplements , Maternal Nutritional Physiological Phenomena , Memory Disorders/prevention & control , Memory, Long-Term , Recognition, Psychology , Animals , Behavior, Animal , Choline/metabolism , Choline Deficiency/metabolism , Choline Deficiency/physiopathology , Female , Male , Memory Disorders/etiology , Nootropic Agents/metabolism , Nootropic Agents/therapeutic use , Pregnancy , Rats , Rats, Wistar
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