Why the study?
Does mental challenge elicit different sympathoneural responsiveness in patients with essential hypertension compared to normotensive controls?
Does mental challenge elicit different sympathoneural responsiveness in patients with essential hypertension compared to normotensive controls?
Tracer pharmacokinetic methods and novel imaging techniques provide more accurate assessments of sympathoneural responsiveness than traditional venous norepinephrine measurements.
Arterial NE spillover may better detect mental stress-induced sympathoneural hyperresponsiveness in hypertension than venous measures; hypothesis-generating and requires prospective validation.
This report summarizes new techniques for examining aspects of sympathoadrenomedullary function. Tracer pharmacokinetic methods are more accurate than measurements of antecubital venous norepinephrine (NE) in assessing sympathoneural responsiveness. During mental challenge (playing a video game), patients with essential hypertension had significantly larger increments of NE spillover into arterial blood than did normotensive control subjects, whereas responses of antecubital venous and even arterial NE did not differ significantly between the groups. The rate of neuronal reuptake of endogenous NE can be measured in vivo using plasma levels of NE and of the intraneuronal NE metabolite, dihydroxyphenylglycol (DHPG). Regional production of dihydroxyphenylalanine (DOPA) may reflect catecholamine biosynthesis, and DOPA may be an indirectly acting natriuretic neurohormone. Positron emission tomography after injection of positron-emitting fluorodopamine may allow in vivo, noninvasive assessments of regional sympathetic function.
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Goldstein et al. (1989) studied this question.
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