Key result
Intracortical KCl microinjections in cats induced cortical spreading depression, decreasing dialysate glucose by 28% and increasing lactate by 58% at 10 minutes, with no recovery at 30 minutes.
Why the study?
Does cortical spreading depression deplete extracellular glucose in the normally perfused brain?
Does cortical spreading depression deplete extracellular glucose in the normally perfused brain?
Cortical spreading depression causes persistent depletion of extracellular brain glucose despite hyperaemia, suggesting a risk of adverse metabolic effects in acute brain injury.
CSD may induce metabolic stress despite hyperaemia; leaves open relevance to human acute brain injury.
Rapid sampling microdialysis (rsMD) directed towards the cerebral cortex has allowed identification of a combined time-series signature for glucose and lactate that characterizes peri-infarct depolarization in experimental focal ischaemia, but no comparable data exist for 'classical' cortical spreading depression (CSD) associated with hyperaemia in the normally perfused brain. Here, we examined the rsMD responses of dialysate glucose and lactate to five hyperaemic spreading depressions induced with intracortical microinjections, typically of 1 mol/L KCl, in open-skull preparations in five cats under chloralose anaesthesia. Depolarization was verified with microelectrodes, and laser speckle flowmetry was used to examine propagation of the events and perfusion responses near the MD probe. Ten minutes after depolarization, dialysate glucose fell and lactate rose by 28% and 58% respectively. There was no recovery of dialysate glucose 30 mins after depolarization. Mean baseline indicative cerebral blood flow was 25.5+/-4.1 mL/100 g/min and mean maximum hyperaemic increase was by 29.6+/-6 mL/100 g/min; hyperaemia remained present 30 mins after CSD. As CSD events are repetitive, frequent, and often clustered temporally in human acute brain injury, these results indicate a high risk of depletion of extracellular glucose in association with depolarization events of a pattern previously thought to be largely benign.
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Hashemi et al. (2008) studied cortical spreading depression (n=5). intracortical microinjections of KCl vs. baseline was evaluated on dialysate glucose and lactate levels. Intracortical KCl microinjections in cats induced cortical spreading depression, decreasing dialysate glucose by 28% and increasing lactate by 58% at 10 minutes, with no recovery at 30 minutes.
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