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Behavioural Brain Research
Volume 180, Issue 2, 18 June 2007, Pages 119-126
 
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doi:10.1016/j.bbr.2007.02.032    
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Copyright © 2007 Elsevier B.V. All rights reserved.

Research report

Hyperactivity in the rat is associated with spontaneous low level of n-3 polyunsaturated fatty acids in the frontal cortex

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S. Vancassela, Corresponding Author Contact Information, E-mail The Corresponding Author, C. Blondeaub, S. Lallemanda, M. Cadorb, A. Linarda, M. Laviallea and F. Dellu-Hagedornb

aUnité de Nutrition et Régulation Lipidique des Fonctions Cérébrales, NuRéLiCe, INRA, domaine de Vilvert, 78352 Jouy-en-Josas cedex, France

bUniversité Bordeaux 2; Université Bordeaux 1; CNRS UMR 5227, 33076 Bordeaux cedex, France


Received 11 January 2007; 
revised 16 February 2007; 
accepted 23 February 2007. 
Available online 25 February 2007.

Abstract

Inattention, hyperactivity and impulsiveness are the main symptoms of the heterogeneous attention-deficit/hyperactivity disorder (ADHD). It has been suggested that ADHD is associated with an imbalance in polyunsaturated fatty acid (PUFA) composition, with abnormal low levels of the main n-3 PUFA, DHA (22: 6n-3). DHA is highly accumulated in nervous tissue membranes and is implicated in neural function. Animal studies have shown that diet-induced lack of DHA in the brain leads to alterations in cognitive processes, but the relationship between DHA and hyperactivity is unclear. We examined the membrane phospholipid fatty acid profile in frontal cortex of rats characterized for attention, impulsiveness and motricity in various environmental contexts to determine the relationship between brain PUFA composition and the symptoms of ADHD. The amounts of n-3 PUFA in the PE were significantly correlated with nocturnal locomotor activity and the locomotor response to novelty: hyperactive individuals had less n-3 PUFA than hypoactive ones. We conclude that spontaneous hyperactivity in rats is the symptom of ADHD that best predicts the n-3 PUFA content of the frontal cortex. This differential model in rats should help to better understand the role of PUFA in several psychopathologies in which PUFA composition is modified.

Keywords: DHA; Inter-individual differences; Locomotor hyperactivity; n-3 PUFA; Rat frontal cortex

Article Outline

1. Introduction
2. Materials and methods
2.1. Animals
2.2. Apparatus and behavioural testing
2.3. Motor activity
2.3.1. Running-wheels
2.3.2. Circular corridors
2.3.3. Cages
2.4. Attention and impulsiveness
2.4.1. Apparatus
2.4.2. Procedures
2.4.3. Training
2.4.4. Tests
2.5. Analysis of fatty acid in phospholipids
2.6. Statistical analysis
3. Results
3.1. Relationship between scores of locomotor activity, impulsiveness and attention scores
3.2. Fatty acid composition of the frontal cortex is unrelated to impulsiveness and attention scores
3.3. Fatty acid composition of the frontal cortex is related to locomotor activity
4. Discussion
Acknowledgements
References





Corresponding Author Contact InformationCorresponding author. Tel.: +33 1 34 65 28 36; fax: +33 1 34 65 23 11.

Behavioural Brain Research
Volume 180, Issue 2, 18 June 2007, Pages 119-126
 
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