Systematic autistic-like behavioral phenotyping of 4 mouse strains using a novel wheel-running assay

Golan Karvat, Tali Kimchi

Research output: Contribution to journalArticlepeer-review

Abstract

Three core symptoms of autistic spectrum disorders are stereotypic movements, resistance to change in routines and deficits in social interaction. In order to understand their neuronal mechanisms, there is a dire need for behavioral paradigms to assess those symptoms in rodents. Here we present a novel method which is based on positive reward in a customized wheel-running apparatus to assess these symptoms. As a proof of concept, 4 mouse strains were tested in the new behavioral paradigm; 2 control lines (C57BL/6 and ICR) and 2 mouse-models of autism (BTBR T+ tf/J and Nlgn3tm1Sud). We found that the C57BL/6, ICR and Nlgn3tm1Sud mice showed a significant reduction in stereotypical behavior in the presence of the running wheel, ability to forfeit the running habit when the running-wheel was jammed, and preference of interacting with a social stimulus over the jammed running-wheel. No difference was found between genotypes of the Nlgn3tm1Sud mice. On the other hand, the BTBR mice exhibited persistent, elevated levels of stereotypical behavior. In addition, they presented a deficit in their ability to adjust to a changing environment, as manifested in persistence to interact with the wheel even when it was jammed. Lastly, the BTBR mice exhibited no significant preference to interact with the stranger mouse over the jammed running-wheel. These results were validated by a set of commonly used behavioral tests. Overall, our novel behavioral paradigm detects multiple components of autistic-like phenotypes, including cognitive rigidity, stereotypic behavior and social deficiency.

Original languageEnglish
Pages (from-to)405-414
Number of pages10
JournalBehavioural Brain Research
Volume233
Issue number2
DOIs
StatePublished - 1 Aug 2012

All Science Journal Classification (ASJC) codes

  • Behavioral Neuroscience

Fingerprint

Dive into the research topics of 'Systematic autistic-like behavioral phenotyping of 4 mouse strains using a novel wheel-running assay'. Together they form a unique fingerprint.

Cite this