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Ion changes in spreading ischaemia induce rat middle cerebral artery constriction in the absence of NO
- Source :
- Brain. 128:2042-2051
- Publication Year :
- 2005
- Publisher :
- Oxford University Press (OUP), 2005.
-
Abstract
- In rats, cortical spreading hyperaemia is coupled to a spreading neuroglial depolarization wave (spreading depression) under physiological conditions, whereas cortical spreading ischaemia is coupled to it if red blood cell products are present in the subarachnoid space. Spreading ischaemia has been proposed as the pathophysiological correlate of the widespread cortical infarcts abundantly found in autopsy studies of patients with subarachnoid haemorrhage. The purpose of the present study was to investigate whether the extracellular ion changes associated with the depolarization wave may cause the vasoconstriction underlying spreading ischaemia. We induced spreading ischaemia in vivo with the nitric oxide (NO) scavenger oxyhaemoglobin and an elevated K+ concentration in the subarachnoid space while slow potential, pH, extracellular volume and concentrations of K+, Na+, Ca2+ and Cl- were measured in the cortex with microelectrodes. We then extraluminally applied an ionic cocktail (cocktail(SI)) to the isolated middle cerebral artery in vitro, matching the ionic composition of the extracellular space as measured during spreading ischaemia in vivo. Extraluminal application of cocktail(SI) caused middle cerebral artery dilatation in the absence and constriction in the presence of NO synthase inhibition in vitro, corresponding with the occurrence of spreading hyperaemia in the presence and spreading ischaemia in the absence of NO in vivo. The L-type Ca2+ inhibitor nimodipine caused the cocktail(SI)-induced vasoconstriction to revert to vasodilatation in the absence of NO in vitro similar to the reversal of spreading ischaemia to spreading hyperaemia in response to nimodipine in vivo. We found that K+ was the predominant vasoconstrictor contained in cocktail(SI). Its vasoconstrictor action was augmented by NO synthase inhibition. Our results suggest that, under elevated baseline K+ as a hallmark of any condition of energy deficiency, the extracellular ion changes represent the essential mediator of the vascular response to spreading neuroglial depolarization. In the presence of NO they mediate vasodilatation and in its absence they mediate constriction.
- Subjects :
- Male
Middle Cerebral Artery
medicine.medical_specialty
Vasodilation
Nitric Oxide
Tissue Culture Techniques
Hyperaemia
Internal medicine
Extracellular fluid
medicine
Extracellular
Animals
cardiovascular diseases
Rats, Wistar
Nimodipine
business.industry
Cortical Spreading Depression
Sodium
Extracellular Fluid
Depolarization
Hydrogen-Ion Concentration
Rats
Endocrinology
Cerebrovascular Circulation
Cortical spreading depression
Anesthesia
Potassium
Calcium
Cerebral Arterial Diseases
Neurology (clinical)
Chlorine
medicine.symptom
business
Microelectrodes
Vasoconstriction
medicine.drug
Subjects
Details
- ISSN :
- 14602156 and 00068950
- Volume :
- 128
- Database :
- OpenAIRE
- Journal :
- Brain
- Accession number :
- edsair.doi.dedup.....fd44075d7556535c04db3f9c51030d76
- Full Text :
- https://doi.org/10.1093/brain/awh545