The Impact of Mouse Preterm Birth Induction by RU-486 on Microglial Activation and Subsequent Hypomyelination

Cécile Morin1,2, David Guenoun1,2, Irvin Sautet1

  • 1NeuroDiderot, Inserm UMR-1141, Hôpital Robert Debré, Université de Paris, 75019 Paris, France.

Insights

Mifepristone (RU-486) can induce preterm birth with high pup survival. While it reduced microglial reactivity during perinatal inflammation, it did not prevent periventricular white matter injuries in offspring.

Area of Science:

  • Neuroscience
  • Developmental Biology
  • Pharmacology

Background:

  • Preterm birth (PTB) affects 15 million newborns annually, often linked to maternal/fetal infections and inflammation.
  • Neuroinflammation mediated by microglial cells can cause hypomyelination and lifelong disabilities in preterm survivors.
  • Existing PTB models have low survival rates, and data on clinically used drugs like mifepristone (RU-486) and their impact on brain development is scarce.

Purpose of the Study:

  • To develop and characterize a novel model of induced preterm birth (PTB) and periventricular white matter injuries (PWMIs).
  • To investigate the effects of mifepristone (RU-486) for PTB induction combined with perinatal IL-1beta exposure on neuroinflammation and brain development.

Main Methods:

  • A single subcutaneous injection of RU-486 at embryonic day 18.5 induced PTB in OF1 mice.
  • Pups were adopted post-birth, and IL-1beta was administered intraperitoneally from postnatal day 1 to 5.
  • Microglial reactivity and PWMIs were assessed in offspring exposed to both RU-486 and IL-1beta.

Main Results:

  • RU-486 administration induced labor within 24 hours with a high pup survival rate.
  • Animals exposed to RU-486 and IL-1beta exhibited microglial reactivity and developed PWMIs.
  • RU-486 labor induction decreased in vivo microglial reactivity in the context of perinatal inflammation.

Conclusions:

  • Subcutaneous RU-486 is an effective method for inducing PTB with high pup survival.
  • While RU-486 reduced microglial reactivity during perinatal inflammation, it did not prevent the development of PWMIs.
  • This model provides a valuable tool for studying PTB-associated brain injuries and potential interventions.

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