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Microglial dopamine receptor elimination defines sex-specific nucleus accumbens development and social behavior in adolescent rats. | LitMetric

AI Article Synopsis

  • Adolescence is a key developmental stage where the brain's reward system, particularly the nucleus accumbens (NAc), undergoes notable changes influenced by dopamine D1 receptors (D1rs).
  • This study reveals that microglia and immune responses selectively eliminate D1rs in male rats during adolescence, which affects their social play behavior, but not in females.
  • The findings highlight the significance of immune signaling in male brain development during adolescence and its role in shaping social behaviors, introducing new insights into sex differences in brain function.

Article Abstract

Adolescence is a developmental period in which the mesolimbic dopaminergic "reward" circuitry of the brain, including the nucleus accumbens (NAc), undergoes significant plasticity. Dopamine D1 receptors (D1rs) in the NAc are critical for social behavior, but how these receptors are regulated during adolescence is not well understood. In this report, we demonstrate that microglia and complement-mediated phagocytic activity shapes NAc development by eliminating D1rs in male, but not female rats, during adolescence. Moreover, immune-mediated elimination of D1rs is required for natural developmental changes in male social play behavior. These data demonstrate for the first time that microglia and complement-mediated immune signaling (i) participate in adolescent brain development in a sex-specific manner, and (ii) are causally implicated in developmental changes in behavior. These data have broad implications for understanding the adolescent critical period of development, the molecular mechanisms underlying social behavior, and sex differences in brain structure and function.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6156594PMC
http://dx.doi.org/10.1038/s41467-018-06118-zDOI Listing

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