Shh activation restores interneurons and cognitive function in newborns with intraventricular haemorrhage

Bokun Cheng1,2, Deep R Sharma1,2, Ajeet Kumar1

  • 1Department of Pediatrics, Albert Einstein College of Medicine, Bronx, NY, USA.

Insights

Intraventricular hemorrhage (IVH) in premature infants impairs neurodevelopment by reducing cortical interneurons. Activating Sonic Hedgehog signaling restored interneuron production and improved neurobehavioral outcomes in a preterm rabbit model.

Area of Science:

  • Neuroscience
  • Developmental Biology
  • Pediatrics

Background:

  • Premature infants with germinal matrix haemorrhage-intraventricular haemorrhage (GMH-IVH) experience neurodevelopmental deficits.
  • Impaired interneuron development is linked to neuropsychiatric disorders, but IVH mechanisms remain unclear.

Purpose of the Study:

  • To investigate if IVH reduces medial ganglionic eminence (MGE) interneuron neurogenesis and cortical interneuron populations.
  • To determine if Sonic Hedgehog (Shh) signaling activation can restore neurogenesis, interneuron populations, and neurobehavioral function in IVH models.

Main Methods:

  • A preterm rabbit model of IVH and human autopsy samples were used to compare interneuron progenitors, cortical interneurons, and transcription factors.
  • Single-cell transcriptomics of the MGE and neurobehavioral assessments were performed.
  • Shh signaling was activated using adenovirus expressing Shh (Ad-Shh) in preterm rabbits with IVH.

Main Results:

  • IVH reduced progenitor cells (Nkx2.1+, Dlx2+) in the MGE and decreased parvalbumin+ and somatostatin+ cortical interneurons in both humans and rabbits.
  • Shh expression and downstream factors were reduced in IVH rabbits; single-cell transcriptomics revealed perturbed neurogenesis and signaling pathways.
  • Ad-Shh treatment ameliorated neurogenesis, increased cortical interneuron populations, improved neurobehavior, and reduced inflammation in IVH rabbits.

Conclusions:

  • IVH impairs interneuron production and cortical interneuron populations by downregulating Shh signaling in preterm infants and rabbits.
  • Activating Shh signaling offers a potential therapeutic strategy to restore interneuron neurogenesis and cognitive function in infants with IVH.