CNS-oxygen toxicity and blood glucose levels in MnSOD enzyme knockdown mice

Ricarina Rabinovitz1, Mirit Eynan1

  • 1Israel Naval Medical Institute, Israel Defense Forces Medical Corps, Haifa, Israel.

Insights

Mn-superoxide dismutase (SOD2) knockdown mice show altered blood glucose levels under hyperbaric oxygen (HBO) exposure, potentially impacting central nervous system oxygen toxicity (CNS-OT) mechanisms.

Area of Science:

  • Biomedical Research
  • Neuroscience
  • Diving Medicine

Background:

  • Central nervous system oxygen toxicity (CNS-OT) is a critical risk in hyperbaric environments.
  • The precise mechanisms underlying CNS-OT, particularly its interaction with metabolic factors, remain incompletely understood.

Purpose of the Study:

  • To investigate the impact of hyperbaric oxygen (HBO) on blood glucose levels (BGL) in Mn-superoxide dismutase (SOD2) knockdown mice.
  • To explore the role of SOD2 and metabolic stress in CNS-OT under varying oxygen pressures.

Main Methods:

  • Exposure of SOD2 knockdown (HET) mice and wild-type (WT) littermates to hyperbaric oxygen (HBO) up to 5 ATA.
  • Measurement of blood glucose levels (BGL) before and after HBO exposure.
  • Analysis of glucose transporter 1 (GLUT1) and hypoxia-inducible factor 1-alpha (HIF-1a) expression via RT-PCR and Western blot.

Main Results:

  • SOD2 knockdown mice exhibited increased sensitivity to oxidative stress and higher BGL post-HBO exposure compared to WT mice.
  • Expression of GLUT1 mRNA and HIF-1a decreased in the hippocampus of HET mice.
  • HBO exposure led to decreased GLUT1 protein levels in both HET and WT mice.

Conclusions:

  • Reduced GLUT1 expression, potentially due to lower HIF-1a levels, may contribute to elevated BGL in SOD2 knockdown mice under HBO.
  • These findings offer insights into the metabolic underpinnings of CNS-OT, particularly under stress conditions.

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