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July 1, 1998Journal of Applied Physiology48 citations

Exercise training enhances adrenergic constriction and dilation in the rat spinotrapezius muscle

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JLJulia M. Lash

Key Result

Treadmill training enhanced both adrenergic vasodilation and vasoconstriction in the spinotrapezius muscle of rats compared to sedentary controls.

Key Points

  • This research assesses the impact of treadmill training on vascular reactivity in the rat spinotrapezius muscle.
  • Trained rats underwent 9-10 weeks of treadmill training at 30 m/min and 1.5-degree incline for 90 minutes.
  • Arterial diameters were measured during iontophoretic application of norepinephrine, epinephrine, HCl, and adenosine.
  • Comparisons were made between sedentary and trained rats regarding vascular responses.
  • Trained rats showed greater constriction in terminal-feed arteries and first-order arterioles at higher norepinephrine and epinephrine doses.
  • Dilations in first- and second-order arterioles were observed in trained rats at low doses of epinephrine, unlike sedentary rats.
  • No significant differences were found in the vascular responses to adenosine between sedentary and trained rats.

Structured PICO

Does treadmill training alter adrenergic constriction and dilation in the rat spinotrapezius muscle?

P
Population
Rats subjected to treadmill training for 9-10 weeks to assess vascular reactivity in the spinotrapezius muscle.
I
Intervention
Treadmill training (9-10 wk; terminal intensity 30 m/min, 1.5 degrees incline, for 90 min)
C
Comparator
Sedentary (Sed) rats
O
Outcome
Arterial diameters in the spinotrapezius muscle during iontophoretic application of norepinephrine, epinephrine (Epi), and H+ (HCl) and during superfusion with adenosinesurrogate

Treadmill training enhances both adrenergic vasodilation and vasoconstriction in the 'nontrained' spinotrapezius muscle of rats.

Abstract

Treadmill training increases functional vasodilation in the rat spinotrapezius muscle, although there is no acute increase in blood flow and no increase in oxidative capacity. To assess concurrent changes in vascular reactivity, we measured arterial diameters in the spinotrapezius muscle of sedentary (Sed) and treadmill-trained (Tr; 9-10 wk; terminal intensity 30 m/min, 1.5 degrees incline, for 90 min) rats during iontophoretic application of norepinephrine, epinephrine (Epi), and H+ (HCl) and during superfusion with adenosine. Terminal-feed arteries and first-order arterioles in Tr rats constricted more than those in Sed rats at the higher current doses of norepinephrine and Epi. In contrast, at low-current doses of Epi, first- and second-order arterioles dilated in Tr but not in Sed rats. The vascular responses to HCl were highly variable, but second-order arterioles of Tr rats constricted more than those of Sed rats at intermediate-current doses. There were no significant differences between Sed and Tr rats in the vascular responses to adenosine. Both adrenergic vasodilation and vasoconstriction were enhanced in the spinotrapezius muscle of Tr rats, and enhanced adrenergic vasodilation may contribute to increased functional vasodilation. These observations further demonstrate vascular adaptations in "nontrained" skeletal muscle tissues.

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Cite This Study

Julia M. Lash (1998) studied this question. Treadmill training vs. Sedentary was evaluated on Arterial diameters in the spinotrapezius muscle during iontophoretic application of norepinephrine, epinephrine, HCl, and adenosine. Treadmill training enhanced both adrenergic vasodilation and vasoconstriction in the spinotrapezius muscle of rats compared to sedentary controls.

synapsesocial.com/papers/6a2263394f82ab017db6f597https://doi.org/10.1152/jappl.1998.85.1.168
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