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Updated: Aug 8, 2026

Chronic Constriction of the Sciatic Nerve and Pain Hypersensitivity Testing in Rats
Published on: March 13, 2012
Compartments and barriers in the sciatic nerve of the rabbit
Abstract:
Near constant concentration of various radioactively labelled polar nonelectrolytes were maintained in the blood plasma of renal ligated rabbits. The uptake of [14C]urea, [51Cr]EDTA and [14C]inulin into sciatic nerve was interpreted in terms of a two-compartment model. There was a rapidly equilibrating space representing about 20% of the tissue weight which is almost certainly the interstitial fluid of the epineurium and outer layers of the perineurium. Urea penetrated the blood-nerve barrier at a similar rate to the entry of this compound into brain. Sucrose, chromium-EDTA and sulphate passed into the true interstitial fluid approaching a total volume of distribution of about 36% of the tissue weight at 6-8 h. Since movement of these 3 solutes is severely restricted by the blood-barrier, the blood-nerve barrier in the rabbit must contain channels of greater than 1 nm which are not present in the developed blood-brain barrier. Uptake of [3H]3-O-methylglucose into nerve was examined but the results did not give a conclusive answer to the question of whether there is specific transport of sugars at the blood-nerve barrier. The wet nerve contained (in mmole/kg) sodium 74.3; potassium 42.6 and chloride 48.8. Water was 64.6 ml/100 g. Intracellular electrolyte concentrations were estimated. Approximately 30% of the total sodium content cannot be accounted for as being free in the interstitial fluid at a Gibbs-Donnan distribution with plasma. Analysis of metabolically poisoned nerves which have equilibrated with salt solution in vitro suggests that negatively charged polyelectrolyte molecules retain about 14 mmole of sodium/kg wet normal nerve.

