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.
Abstract:
Paternal immune activation (PIA), including via the viral mimic polyinosinic:polycytidylic acid (poly I:C), impacts offspring physiology and behaviour. A previous model employing low molecular weight (LMW) poly I:C showed alterations in the sperm small non-coding RNA (sncRNA) profile and offspring phenotypes. High molecular weight (HMW) poly I:C increases translatability by eliciting a robust sickness response accompanied by a significant increase of key cytokines. Here, male C57BL/6J mice (F0) were intraperitoneally injected with 12 mg/kg HMW poly I:C and mated with naïve females four weeks later. Adult offspring (F1) displayed reduced somatosensory cortex and corpus callosum thickness, and altered social-interaction behaviour. Male offspring displayed a reduction in gross striatum weight, reduced striatal microglia numbers and disruption to Pavlovian associative learning, while female offspring displayed increased striatal and corpus callosum microglia activation. The F0 sperm sncRNA profile showed upregulation of miR-141-3p and miR-200a-3p among 29 dysregulated sncRNAs. These results are distinct from previous LMW poly I:C administration studies, demonstrating sperm epigenome changes and subsequent offspring phenotypes may be highly specific to particular immune pathways and activation states. Our present data provide new insights into how PIA may be able to modulate brain development and function. These new findings contribute to our understanding of how paternal viral-like immune activation affects sperm and offspring phenotypes, with implications for the future prevention of the detrimental effects of such epigenetic inheritance.
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