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August 1, 1993Journal of Applied Physiology73 citations

Effects of exercise intensity and duration on norepinephrine spillover and clearance in humans

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ULUrs A. LeuenbergerLSLawrence I. SinowaySGSteven S. Gubin

Key Result

Moderate-to-high intensity exercise increased arterial norepinephrine spillover to 13.52 nmol/min/m2 (P<0.01) and decreased clearance, compared to a smaller spillover rise during low intensity exercise.

Structured PICO

Does exercise intensity and duration affect norepinephrine spillover and clearance in normal young subjects?

P
Population
25 normal young subjects
I
Intervention
Sustained upright bicycle exercise at low (25% of maximum work load, n=11) or moderate-to-high (65% of maximum work load, n=14) intensity, with steady-state infusions of tritiated norepinephrine ([3H]NE)
C
Comparator
Baseline (pre-exercise) values
O
Outcome
Magnitude and time course of arterial norepinephrine (NE) spillover response and NE clearancesurrogate

During dynamic exercise, sympathetic nervous system activity is related to exercise intensity, with moderate-to-high intensity exercise causing a substantial rise in norepinephrine spillover and a small decrease in clearance.

Main Result

Absolute Event Rate: 13.52% vs 3.14%

p-value: p=<0.01

Abstract

During dynamic exercise, blood flow to exercising muscle is closely matched to metabolic demands. This is made possible by metabolic vasodilation, vasoconstriction in inactive vascular beds, and a rise in cardiac output. The sympathetic nervous system plays an important role in regulating this exercise response. In this study, we used steady-state infusions of tritiated norepinephrine (3HNE) to determine the magnitude and time course of the arterial NE spillover response to sustained upright bicycle exercise at low (n = 11) and moderate-to-high (n = 14) exercise intensity (25 and 65% of maximum work load, respectively) in normal young subjects. In addition, we sought to examine whether exercise was associated with a change in NE clearance. During 30 min of low-level exercise, arterial NE spillover increased from 1.45 +/- 0.13 to 3.14 +/- 0.30 nmol.min-1 x m-2 (P < 0.01) and appeared to plateau at 20-30 min of exercise; NE clearance remained unchanged. During 20 min of moderate-to-high-intensity exercise, we found a substantial and progressive rise of arterial NE spillover from 2.15 +/- 0.27 to 13.52 +/- 1.62 nmol.min-1 x m-2 (P < 0.01). NE clearance decreased from 0.91 +/- 0.05 to 0.80 +/- 0.05 l.min-1 x m-2 (P < 0.05). These data suggest that, during dynamic exercise, sympathetic nervous system activity is related to exercise intensity, and there appears to be an interaction between the effects of exercise intensity and duration on NE spillover. In addition, at moderate-to-high exercise intensity, a small decrease of NE clearance contributes to the rise in plasma NE.

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Cite This Study

Leuenberger et al. (1993) studied Healthy (n=25). Upright bicycle exercise vs. Baseline was evaluated on Arterial norepinephrine spillover (nmol.min-1 x m-2) (p=<0.01). Moderate-to-high intensity exercise increased arterial norepinephrine spillover to 13.52 nmol/min/m2 (P<0.01) and decreased clearance, compared to a smaller spillover rise during low intensity exercise.

synapsesocial.com/papers/6a0ee5f6b7cc3b883f22dd55https://doi.org/10.1152/jappl.1993.75.2.668
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