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Pyruvate administration reduces recurrent/moderate hypoglycemia-induced cortical neuron death in diabetic rats
Bo Young Choi1, Jin Hee Kim, Hyun Jung Kim
1Department of Physiology, Hallym University, College of Medicine, Chuncheon, Korea.
Abstract:
Recurrent/moderate (R/M) hypoglycemia is common in type 1 diabetes patients. Moderate hypoglycemia is not life-threatening, but if experienced recurrently it may present several clinical complications. Activated PARP-1 consumes cytosolic NAD, and because NAD is required for glycolysis, hypoglycemia-induced PARP-1 activation may render cells unable to use glucose even when glucose availability is restored. Pyruvate, however, can be metabolized in the absence of cytosolic NAD. We therefore hypothesized that pyruvate may be able to improve the outcome in diabetic rats subjected to insulin-induced R/M hypoglycemia by terminating hypoglycemia with glucose plus pyruvate, as compared with delivering just glucose alone. In an effort to mimic juvenile type 1 diabetes the experiments were conducted in one-month-old young rats that were rendered diabetic by streptozotocin (STZ, 50mg/kg, i.p.) injection. One week after STZ injection, rats were subjected to moderate hypoglycemia by insulin injection (10 U/kg, i.p.) without anesthesia for five consecutive days. Pyruvate (500 mg/kg) was given by intraperitoneal injection after each R/M hypoglycemia. Three hours after last R/M hypoglycemia, zinc accumulation was evaluated. Three days after R/M hypoglycemia, neuronal death, oxidative stress, microglial activation and GSH concentrations in the cerebral cortex were analyzed. Sparse neuronal death was observed in the cortex. Zinc accumulation, oxidative injury, microglial activation and GSH loss in the cortex after R/M hypoglycemia were all reduced by pyruvate injection. These findings suggest that when delivered alongside glucose, pyruvate may significantly improve the outcome after R/M hypoglycemia by circumventing a sustained impairment in neuronal glucose utilization resulting from PARP-1 activation.
Insights
Pyruvate may protect against recurrent hypoglycemia in type 1 diabetes. This intervention reduced neuronal damage and oxidative stress in diabetic rats by bypassing impaired glucose metabolism.
Area of Science:
- Neuroscience
- Metabolic Disorders
- Biochemistry
Background:
- Recurrent/moderate hypoglycemia is a common complication in type 1 diabetes.
- Hypoglycemia-induced poly(ADP-ribose) polymerase 1 (PARP-1) activation consumes NAD+, impairing cellular glucose utilization even after glucose restoration.
- Pyruvate metabolism is independent of NAD+, offering a potential therapeutic avenue.
Purpose of the Study:
- To investigate if pyruvate administration improves outcomes in streptozotocin-induced diabetic rats experiencing recurrent/moderate hypoglycemia.
- To compare the effects of glucose plus pyruvate versus glucose alone in mitigating hypoglycemia-induced neuronal damage.
Main Methods:
- Diabetic young rats were induced using streptozotocin.
- Rats underwent five consecutive days of insulin-induced moderate hypoglycemia.
- Pyruvate (500 mg/kg) or vehicle was administered intraperitoneally after each hypoglycemic episode.
- Neuronal death, oxidative stress markers, microglial activation, and glutathione (GSH) levels were assessed in the cerebral cortex.
Main Results:
- Pyruvate injection significantly reduced zinc accumulation, oxidative injury, and microglial activation in the cerebral cortex.
- Pyruvate administration also mitigated the loss of GSH concentrations following recurrent hypoglycemia.
- Sparse neuronal death was observed, and pyruvate's protective effects were evident.
Conclusions:
- Pyruvate, when co-administered with glucose, may improve outcomes following recurrent/moderate hypoglycemia in type 1 diabetes.
- Pyruvate appears to circumvent sustained neuronal glucose utilization impairment caused by PARP-1 activation.
- This suggests a potential neuroprotective role for pyruvate in managing hypoglycemia-related complications.
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