Related Experiment Video
Updated: Jul 22, 2025

In vivo Imaging of Optic Nerve Fiber Integrity by Contrast-Enhanced MRI in Mice
Published on: July 22, 2014
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.
Abstract:
Many studies have been conducted in the search for the mechanism underlying CNS-oxygen toxicity (OT), which may be fatal when diving with a closed-circuit apparatus. We investigated the influence of hyperbaric oxygen (HBO) on blood glucose level (BGL) in Mn-superoxide dismutase (SOD2) knockdown mice regarding CNS-OT in particular under stress conditions such as hypoglycemia or hyperglycemia. Two groups of mice were used: SOD2 knockdown (Heterozygous, HET) mice and their WT family littermates. Animals were exposed to HBO from 2 up to 5 atmosphere absolute (ATA). Blood samples were drawn before and after each exposure for measurement of BGL. The mice were sacrificed following the final exposure, which was at 5 ATA. We used RT-PCR and Western blot to measure levels of glucose transporter 1 (GLUT1) and hypoxia inducible factor (HIF)1a in the cortex and hippocampus. In the hypoglycemic condition, the HET mice were more sensitive to oxidative stress than the WT. In addition, following exposure to sub-toxic HBO, which does not induce CNS-OT, BGL were higher in the HET mice compared with the WT. The expression of mRNA of GLUT1 and HIF-1a decreased in the hippocampus in the HET mice, while the protein level decreased in the HET and WT following HBO exposure. The results suggest that the higher BGL following HBO exposure especially at SOD2 HET mice is in part due to reduction in GLUT1 as a consequence of lower HIF-1a expression. This may add part to the puzzle of the understanding the mechanism leading to CNS-OT.
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.
More Related Videos
08:36Functional Neuroimaging Using Ultrasonic Blood-brain Barrier Disruption and Manganese-enhanced MRI
Published on: July 12, 2012
06:53Visualization of Mitochondrial Respiratory Function using Cytochrome C Oxidase / Succinate Dehydrogenase COX/SDH Double-labeling Histochemistry
Published on: November 23, 2011