Characterization and quantification of isoflurane-induced developmental apoptotic cell death in mouse cerebral cortex

George K Istaphanous1, Christopher G Ward, Xinyu Nan

  • 1Department of Anesthesia, Cincinnati Children's Hospital Medical Center, Cincinnati, OH 45229, USA.

Abstract

Insights

Isoflurane anesthesia increases apoptotic cell death in neonatal mouse cortex, primarily affecting neurons, including some GABAergic interneurons. This anesthetic also downregulates key enzymes in the inhibitory nervous system, with minimal impact on astrocytes.

Area of Science:

  • Neuroscience
  • Developmental Neuroscience
  • Anesthesiology

Background:

  • Neonatal exposure to anesthetics like isoflurane is linked to neurotoxicity.
  • The specific cell types affected and the extent of cell loss in the neonatal cortex remain unclear.

Purpose of the Study:

  • To identify dying cortical cells using immunohistochemistry.
  • To quantify apoptotic cell death in the neonatal mouse cortex after isoflurane exposure.

Main Methods:

  • Seven-day-old mice were exposed to isoflurane or fasting for 6 hours.
  • Brain sections were double-stained for activated caspase 3 and cell markers (NeuN, GAD65/67, GFAP, S100β).

Main Results:

  • Isoflurane significantly increased apoptotic cell death, primarily in postmitotic neurons (approx. 2%) in cortical layers II/III.
  • Some apoptotic cells were identified as GABAergic interneurons; however, GAD65 and GAD67 protein levels were significantly decreased.
  • Astrocytes showed minimal apoptotic cell death.

Conclusions:

  • Isoflurane exposure induces significant neuronal apoptosis in neonatal mice, impacting GABAergic interneurons.
  • Anesthetic exposure interferes with the inhibitory nervous system by downregulating GAD65 and GAD67.
  • Astrocytes are less affected at this developmental stage.

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