6533b86cfe1ef96bd12c8b09
RESEARCH PRODUCT
Capacity of novelty-induced locomotor activity and the hole-board test to predict sensitivity to the conditioned rewarding effects of cocaine
M. Carmen ArenasManuel Daza-losadaJosé MiñarroMaría A. AguilarMarta Rodríguez-ariasAntonio Vidal-infersubject
MalePopulationPhysiologyExperimental and Cognitive PsychologyMotor ActivityDevelopmental psychologyMiceBehavioral NeuroscienceCocaineDopamine Uptake InhibitorsRewardReaction TimeAnimalsSensation seekingYoung adulteducationAnalysis of Varianceeducation.field_of_studyHole-board testAge FactorsNovelty seekingNoveltyConditioned place preferenceExploratory BehaviorLinear ModelsConditioning OperantConditioningFemalePsychologydescription
Novelty-seeking in rodents, defined as enhanced specific exploration of novel situations, is considered to predict the response of animals to drugs of abuse and, thus, allow "drug-vulnerable" individuals to be identified. The main objective of this study was to assess the predictive ability of two well-known paradigms of the novelty-seeking trait - novelty-induced locomotor activity (which distinguishes High- and Low-Responder mice, depending on their motor activity) and the hole-board test (which determines High- and Low-Novelty Seeker mice depending on the number of head dips they perform) - to identify subjects that would subsequently be more sensitive to the conditioned rewarding effects of cocaine in a population of young adult (PND 56) and adolescent (PND 35) OF1 mice of both sexes. Conditioned place preference (CPP), a useful tool for evaluating the sensitivity of individuals to the incentive properties of addictive drugs, was induced with a sub-threshold dose of cocaine (1 mg/kg, i.p.). Our results showed that novelty-induced motor activity had a greater predictive capacity to identify "vulnerable-drug" individuals among young-adult mice (PND 56), while the hole-board test was more effective in adolescents (PND 35). High-NR young-adults, which presented higher motor activity in the first ten minutes of the test (novelty-reactivity), were 3.9 times more likely to develop cocaine-induced CPP than Low-NR young-adults. When total activity (1h) was evaluated (novelty-habituation), only High-R (novelty-non-habituating) young-adult male and Low-R (novelty-habituating) female mice produced a high conditioning score. However, only High-Novelty Seeker male and female adolescents and Low-Novelty Seeker female young-adult animals (according to the hole-board test), acquired cocaine-induced CPP. These findings should contribute to the development of screening methods for identifying at-risk human drug users and prevention strategies for those with specific vulnerabilities.
year | journal | country | edition | language |
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2012-07-26 | Physiology & Behavior |