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Reduced Adenosine Uptake Accelerates Ischaemic Block of Population Spikes in Hippocampal Slices from Streptozotocin‐treated Diabetic Rats by Martin Cassar; Martyn G. Jones; Marek Szatkowski is a Neuroscience article available to read on EtoBox.
What is Reduced Adenosine Uptake Accelerates Ischaemic Block of Population Spikes in Hippocampal Slices from Streptozotocin‐treated Diabetic Rats about?
## Abstract We have used rats with streptozotocin‐induced diabetes to investigate the effects of hyperglycaemia‐mediated impaired nucleoside uptake on the actions of endogenous adenosine in hippocampal slices. In control tissue under conditions of anoxia and aglycaemia the rise in the extracellular adenosine concentration resulted in complete inhibition of synaptic activity in about 2 min. In slices from previously hyperglycaemic rats the inhibition of synaptically mediated responses occurred significantly faster, although this change could be prevented by insulin treatment. Application of the selective adenosine A1 receptor antagonist [8‐cyclopentyl‐1,3‐dipropylxanthine (DPCPX)] prevented the anoxia/aglycaemia‐mediated inhibition and, furthermore, abolished the differences in the electrophysiological responses between control and diabetic tissue. The effects of impaired nucleoside uptake could be mimicked in control slices by applying the nucleoside uptake blocker hydroxynitrobenzylthioinosine (HNBTI). This had the effect of speeding up the rate of anoxia/aglycaemia‐induced synaptic inhibition in control tissue to that seen in diabetic tissue. However, such treatment had no effect
Who reads Reduced Adenosine Uptake Accelerates Ischaemic Block of Population Spikes in Hippocampal Slices from Streptozotocin‐treated Diabetic Rats?
It is typically read by researchers, students, and practitioners in Neuroscience.
- Author
- Martin Cassar; Martyn G. Jones; Marek Szatkowski
- Publisher
- John Wiley and Sons; Wiley (Blackwell Publishing); Blackwell Publishing Inc.; Wiley (ISSN 0953-816X)
- Published
- 1998
- Language
- EN
- Field
- Neuroscience (Life Sciences)