Seizures in PPT1 Knock-In Mice Are Associated with Inflammatory Activation of Microglia

Xusheng Zhang1, Mengting Wang1, Bingyan Feng2

  • 1Institute of Psychiatry and Neuroscience, Xinxiang Medical University, Xinxiang 453003, China.

Insights

Infantile neuronal ceroid lipofuscinosis (INCL) in PPT1 knock-in mice shows seizures linked to microglial activation via P2X7R signaling. Astrocyte activation precedes this, with reduced inhibitory neurotransmission contributing to epilepsy.

Area of Science:

  • Neuroscience
  • Molecular Biology
  • Genetics

Background:

  • Infantile neuronal ceroid lipofuscinosis (INCL) is a severe lysosomal storage disease caused by mutations in the palmitoyl protein thioesterase 1 (PPT1) gene.
  • INCL is characterized by progressive psychomotor retardation, visual failure, seizures, and premature death.

Purpose of the Study:

  • To investigate seizure activity and associated pathological changes in PPT1 knock-in (PPT1 KI) mice.
  • To explore the role of glial activation, purinergic signaling, and neurotransmission in INCL pathogenesis.

Main Methods:

  • Behavioral analysis and local field potential recordings to assess seizure activity.
  • Western blot, ELISA, and immunohistochemistry to evaluate glial activation markers (Iba-1, CD68, GFAP) and inflammatory cytokines (TNF-α).
  • ATP concentration measurement and pharmacological inhibition of the P2X7 receptor (P2X7R) to assess its role in seizures.

Main Results:

  • PPT1 KI mice exhibited epileptiform activity starting at 7 months of age.
  • Microglia activation (increased Iba-1, CD68, TNF-α) and astrocyte activation (increased GFAP) were observed, with astrocytes activating earlier.
  • Increased hippocampal ATP levels and reduced GABAAR expression were noted. P2X7R antagonist A-438079 significantly reduced seizures.

Conclusions:

  • Seizures in PPT1 KI mice are associated with microglia activation mediated by ATP-sensitive P2X7R signaling.
  • Astrocyte activation precedes microglial activation in this INCL model.
  • Impaired inhibitory neurotransmission may contribute to epilepsy in INCL.