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Le Moene, O.

Publications and source records attributed to Le Moene, O..

2 recordsLinked to original sources

The Disc1 deletion common to many inbred mouse strains has negligible effects on social behavior of 129S4 mice in a semi-natural environment

Numerous mouse models have been engineered to carry alterations to the Disrupted in Schizophrenia 1 (Disc1) gene, thought to be involved in neurodevelopmental conditions. However, most Swiss and probably all 129 mouse substrains, which are widely used in biological research, naturally carry a 25 bp deletion in Disc1 exon 6. Despite the prevalence of these strains, little has been done to characterize the extent to which this natural mutation affects behavioral output and may unintentionally impact studies. Here, we report on experiments to test the effects of this deletion on social and exploratory behaviors. To model natural conditions, we designed a seminatural environment to house groups of mice (4 females and 1 male; 3 groups per strain) for prolonged periods and then employed this model to study social behaviors. First, we compared behavioral phenotypes in C57Bl/6Jrj (B6) mice and 129S4 (S4Disc1-/-) natural mutants to validate our setup. Then, to assess the contribution of the naturally mutated Disc1 to social behavior differences, the wild-type (WT) Disc1 allele was crossed into S4 mice (S4Disc1+/+). S4 and B6 lines were drastically different, with S4 mice being hypoactive, less explorative, and less social than B6 mice. However, S4 mice expressing WT Disc1 only marginally differed from S4Disc1-/- mice, showing little to no contribution of Disc1 to their behavioral phenotype. Thus, this mutation holds little significance for natural exploratory and social behaviors in the seminatural environment.

animal behavior and cognition↗

Social avoidance of mice in pain in naturalistic conditions

Pain and social behavior are subject to reciprocal modulation. Both humans and rodents experience emotional contagion from afflicted conspecifics, and may act to relieve the afflicted state of these. Little has been done to investigate the motivation of such prosocial behavior in rodents in naturalistic conditions. Here, we analyzed social interactions in mice group-housed in a seminatural environment (SNE). Social buffering reduced nocifensive behavior in formalin-injected mice. These mice were also both socially withdrawn and avoided by other mice. These findings appear counter to those showing empathy in mouse pain models. It is possible that in naturalistic conditions, healthy mice simply avoid individuals in pain and the cost associated with emotional contagion. Interestingly, behaviors involving direct body contact were not different between saline- and formalin-treated mice, and thus may carry a prosocial, altruistic component. These findings unveil new patterns of social modulation by pain in a naturalistic laboratory setting holding high translational value. TeaserIn a new, ethological assay, mice in pain are socially withdrawn and avoided by others, challenging findings of empathy in rodent models.

neuroscience↗