Effects of maternal experience on pup-induced activation of maternal neural circuits in virgin mice

Horm Behav. 2022 May:141:105129. doi: 10.1016/j.yhbeh.2022.105129. Epub 2022 Feb 12.

Abstract

Maternal experience can promote a long-lasting increase in maternal motivation. This maintenance of caregiving behaviors, rather than avoidant or agnostic responses towards young, is advantageous for the survival of subsequent offspring. We have previously reported that maternal motivation is associated with differential immediate early gene expression in central motivation circuits and aversion circuits. Here we ask how these circuits come to differentially respond to infant cues. We used Targeted Recombination in Active Populations (TRAP) to identify cells that respond to pups in maternally hesitant TRAP2;Ai14 virgin female mice. Following an initial 60 min exposure to foster pups, virgin TRAP2;Ai14 mice were injected with 4-hydroxytamoxifen to induce recombination in c-Fos expressing cells and subsequent permanent expression of a red fluorescent reporter. We then examined whether the same cells that encode pup cues are reactivated during maternal memory retrieval two weeks later using c-Fos immunohistochemistry. Whereas initial pup exposure induced c-Fos activation exclusively in the medial preoptic area (MPOA), following repeated experience, c-Fos expression was significantly higher than baseline in multiple regions of maternal and central aversion circuits (e.g., ventral bed nucleus of the stria terminalis, nucleus accumbens, basolateral amygdala, prefrontal cortex, medial amygdala, and ventromedial nucleus of the hypothalamus). Further, cells in many of these sites were significantly reactivated during maternal memory retrieval. These data suggest that cells across both maternal motivation and central aversion circuits are stably responsive to pups and thus may form the cellular representation of maternal memory.

Keywords: Engram; FosTRAP2; Maternal experience; Maternal memory; Targeted recombination in active populations.

MeSH terms

  • Animals
  • Female
  • Humans
  • Hypothalamus / metabolism
  • Maternal Behavior* / physiology
  • Mice
  • Nucleus Accumbens / metabolism
  • Preoptic Area* / metabolism
  • Proto-Oncogene Proteins c-fos / metabolism

Substances

  • Proto-Oncogene Proteins c-fos