Key result
Despite higher sympathetic nerve activity, normotensive obese subjects showed equivalent forearm vasodilatation to phentolamine compared to lean subjects (-57% vs -57%; P=0.9).
Why the study?
Does sympathetic alpha-adrenergic vascular tone differ between normotensive obese and lean subjects in response to phentolamine infusion?
Cross-Sectional (n=50)
Does sympathetic alpha-adrenergic vascular tone differ between normotensive obese and lean subjects in response to phentolamine infusion?
Absolute Event Rate: -57% vs -57%
p-value: p=0.9
Sympathetic vascular tone in the forearm is not increased in normotensive obese subjects despite higher sympathetic nerve activity, suggesting compensatory vasodilator mechanisms may protect them from developing hypertension.
May indicate preserved vascular responsiveness in normotensive obesity; leaves open compensatory vasodilation in hypertension protection.
Obesity increases the risk of hypertension and its cardiovascular complications. This has been partly attributed to increased sympathetic nerve activity, as assessed by microneurography and catecholamine assays. However, increased vasoconstriction in response to obesity-induced sympathoactivation has not been unequivocally demonstrated in obese subjects without hypertension. We evaluated sympathetic alpha-adrenergic vascular tone in the forearm by brachial arterial infusion of the alpha-adrenoreceptor antagonist phentolamine (120 microg/min) in normotensive obese (daytime ambulatory arterial pressure: 123+/-1/77+/-1 mm Hg; body mass index: 35+/-1 kg/m(2)) and lean (daytime ambulatory arterial pressure: 123+/-2/77+/-2 mm Hg; body mass index: 22+/-1 kg/m(2)) subjects (n=25 per group) matched by blood pressure, age, and gender. Microneurographic sympathetic nerve activity to skeletal muscle was significantly higher in obese subjects (30+/-3 versus 22+/-1 bursts per minute; P=0.02). Surprisingly, complete alpha-adrenergic receptor blockade by phentolamine (at concentrations sufficient to completely inhibit norepinephrine and phenylephrine-induced vasoconstriction) caused equivalent vasodilatation in obese (-57+/-2%) and lean subjects (-57+/-3%; P=0.9). In conclusion, sympathetic vascular tone in the forearm circulation is not increased in obese normotensive subjects despite increased sympathetic outflow. Vasodilator factors or mechanisms occurring in obese normotensive subjects could oppose the vasoconstrictor actions of increased sympathoactivation. Our findings may help to explain why some obese subjects are protected from the development of hypertension.
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Agapitov et al. (2008) conducted a cross-sectional in Normotensive obesity (n=50). Obesity vs. Lean subjects was evaluated on Vasodilatation in response to complete alpha-adrenergic receptor blockade by phentolamine (p=0.9). Despite higher sympathetic nerve activity, normotensive obese subjects showed equivalent forearm vasodilatation to phentolamine compared to lean subjects (-57% vs -57%; P=0.9).
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