Paternal high molecular weight poly I:C administration alters the sperm small non-coding RNA profile and offspring

Nicholas van de Garde1, Qi Meng2, Ganani Dontamsetti2

  • 1Florey Institute of Neuroscience and Mental Health, Parkville, Victoria, Australia; Florey Department of Neuroscience and Mental Health, University of Melbourne, Parkville, Victoria, Australia.

Insights

Paternal immune activation using high molecular weight poly I:C in fathers alters sperm small non-coding RNAs, impacting offspring brain development and behavior. These changes highlight specific epigenetic inheritance patterns.

Area of Science:

  • Neuroscience
  • Immunology
  • Epigenetics

Background:

  • Paternal immune activation (PIA) influences offspring physiology and behavior.
  • Previous studies with low molecular weight poly I:C showed sperm small non-coding RNA (sncRNA) alterations and offspring phenotypes.
  • High molecular weight (HMW) poly I:C induces a stronger immune response, increasing cytokine levels.

Purpose of the Study:

  • To investigate the effects of HMW poly I:C-induced PIA on sperm sncRNA profiles and subsequent offspring brain development and behavior.
  • To compare the impact of HMW poly I:C with previous findings using LMW poly I:C.

Main Methods:

  • Male C57BL/6J mice (F0) were injected with HMW poly I:C.
  • Mice were mated with naive females four weeks post-injection.
  • Offspring (F1) underwent behavioral testing and brain tissue analysis.
  • Sperm sncRNA profiles of F0 males were analyzed.

Main Results:

  • Adult offspring (F1) exhibited reduced somatosensory cortex and corpus callosum thickness, and altered social behavior.
  • Male offspring showed reduced striatum weight, fewer striatal microglia, and impaired associative learning.
  • Female offspring displayed increased microglia activation in the striatum and corpus callosum.
  • F0 sperm sncRNA profiles revealed dysregulation, including upregulation of miR-141-3p and miR-200a-3p.

Conclusions:

  • HMW poly I:C-induced PIA distinctly alters sperm epigenome and offspring phenotypes compared to LMW poly I:C.
  • Paternal immune activation can modulate offspring brain development and function through specific epigenetic mechanisms.
  • Findings suggest potential for preventing detrimental effects of paternal immune activation via epigenetic inheritance.