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Nitric oxide-dependent and -independent components of cerebrovasodilation elicited by hypercapnia

American Journal of Physiology-Regulatory, Integrative and Comparative PhysiologyPublished 1 February 1994
Costantino Iadecola, F. Zhang
Citations117
SJR quartileQ2
SJR score0.94
SNIP0.90

TL;DR

It is concluded that L-NAME does not attenuate the CBF response to CO2 uniformly at all levels of hypercapnia, and the attenuation of resting CBF and of the cerebrovasodilation elicited byhypercapnia has a relatively slow time course.

Abstract

We studied the effect of nitro-L-arginine methyl ester (L-NAME), a nitric oxide synthase (NOS) inhibitor, on the increases in cerebral blood flow (CBF) elicited by stepwise elevations in arterial partial pressure of CO2 (PaCO2) from normocapnia up to 204 mmHg. Rats were anesthetized with halothane and ventilated. CBF was monitored over the parietal cortex using a laser-Doppler flowmeter. Increasing levels of hypercapnia elicited graded elevations in CBF that reached a plateau at PaCO2 = 82 +/- 1 mmHg (CBF +215 +/- 25%; n = 8; P or = 100 mmHg, L-NAME (40-80 mg/kg) did not attenuate the response (P > 0.05). Reduction of resting CBF (-50 +/- 4%; n = 6) by administration of chloralose (20-40 mg/kg i.v.) did not attenuate the CBF response to hypercapnia (P > 0.05). We also found that the attenuation by L-NAME of resting CBF (n = 5) and of the cerebrovasodilation elicited by hypercapnia (n = 6) has a relatively slow time course, the effects reaching a maximum 45-60 min after intravenous administration of the drug. We conclude that L-NAME does not attenuate the CBF response to CO2 uniformly at all levels of hypercapnia.(ABSTRACT TRUNCATED AT 250 WORDS)

Keywords

Medicine