Canadian Journal of Physiology and Pharmacology · 1995 · 75 citations · 17 references
Peripheral NerveCellular PhysiologyPeripheral Nervous SystemCerebral Vascular RegulationBlood FlowDural Nerve FibersCerebrospinal FluidNeurologyHealth SciencesElectrical StimulationVascular BiologyNervous SystemCerebral Blood FlowMeningeal Blood FlowNerve FibersNeurophysiologyNeuroanatomyPhysiologyNeuropeptide ReceptorNeuroscienceCentral Nervous SystemMedicineNeuropeptides
The parietal dura mater encephali of the rat was shown by immunohistochemistry to be densely innervated by calcitonin gene related peptide (CGRP) immunoreactive nerve fibers spreading around the medial meningeal artery and its branches. Electrical stimulation of the dural surface (10-20 V, 5-10 Hz, 10-30 min) caused a depletion of CGRP-immunopositive fibers, suggesting a release of CGRP. The dural blood flow around branches of the medial meningeal artery was also monitored with a laser Doppler flowmeter. Short periods (30 s) of electrical stimulation with parameters that presumably released CGRP form nerve fibers caused a repeatable and constant increase of the blood flow for 1-2 min. This evoked increase could dose dependently be inhibited by topical application of the CGRP antagonist hCGRP8-37. Accordingly, administration of hCGRP increased the basal blood flow. We conclude that stimulation of trigeminal afferents innervating the dura mater releases CGRP from peptidergic afferent terminals, thereby causing vasodilatation and increasing the meningeal blood flow, an important element of neurogenic inflammation.
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