Key result
Acute exposure of cerebral vessels to nicotine specifically impairs NOS-dependent dilatation via the production of oxygen radicals, possibly related to altered tetrahydrobiopterin utilization.
Why the study?
Does acute nicotine infusion impair NOS-dependent dilatation of cerebral arterioles?
Does acute nicotine infusion impair NOS-dependent dilatation of cerebral arterioles?
Acute exposure to nicotine impairs NOS-dependent dilatation of cerebral vessels via the production of oxygen radicals.
Acute nicotine exposure warrants no clinical changes; leaves open translation of oxidative NOS impairment to human cerebral vessels.
The effects of nicotine on nitric oxide synthase (NOS)-dependent reactivity of cerebral arterioles remain uncertain. Our first goal was to examine whether infusion of nicotine alters NOS-dependent reactivity of cerebral arterioles. Our second goal was to examine the mechanisms that may account for the effects of nicotine on cerebral arterioles. We measured the diameter of pial arterioles to NOS-dependent (ADP and acetylcholine) and NOS-independent (nitroglycerin) agonists before and after the infusion of nicotine (2 microg x kg(-1) x min(-1) iv for 30 min, followed by a maintenance dose of 0.35 microg x kg(-1) x min(-1)). ADP- and acetylcholine-induced vasodilatation was impaired after the infusion of nicotine. In contrast, nicotine did not alter vasodilatation to nitroglycerin. Next, we examined whether the impaired responses of pial arterioles during infusion of nicotine may be related to oxygen radicals. We found that application of superoxide dismutase or tetrahydrobiopterin during infusion of nicotine could prevent impaired NOS-dependent vasodilatation. Thus acute exposure of cerebral vessels to nicotine specifically impairs NOS-dependent dilatation via the production of oxygen radicals possibly related to an alteration in the utilization of tetrahydrobiopterin.
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Fang et al. (2003) studied this question. Nicotine infusion vs. Baseline (before infusion) was evaluated on Diameter of pial arterioles to NOS-dependent (ADP and acetylcholine) and NOS-independent (nitroglycerin) agonists. Acute exposure of cerebral vessels to nicotine specifically impairs NOS-dependent dilatation via the production of oxygen radicals, possibly related to altered tetrahydrobiopterin utilization.
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