TY - JOUR
T1 - Reduction in α-adrenergic receptor-mediated vascular tone contributes to improved arterial compliance with endurance training
AU - Sugawara, Jun
AU - Komine, Hidehiko
AU - Hayashi, Koichiro
AU - Yoshizawa, Mutsuko
AU - Otsuki, Takeshi
AU - Shimojo, Nobutake
AU - Miyauchi, Takashi
AU - Yokoi, Takashi
AU - Maeda, Seiji
AU - Tanaka, Hirofumi
N1 - Funding Information:
This work was supported by grants-in-aid for scientific research from the Ministry of Education, Culture, Sports, Science, and Technology of Japan (18300215, 18650186), JSPS Postdoctoral Fellowship for Research Abroad, and a grant from the National Institutes of Health (AG20966).
Funding Information:
Grant support: This work was supported by grants-in-aid for scientific research from the Ministry of Education, Culture, Sports, Science, and Technology of Japan (18300215, 18650186), JSPS Postdoctoral Fellowship for Research Abroad, and a grant from the National Institutes of Health (AG20966).
PY - 2009/7/10
Y1 - 2009/7/10
N2 - Background: Regular aerobic exercise improves large artery compliance in middle-aged and older humans. However, the underlying mechanisms are unknown. We tested the hypothesis that the improved central arterial compliance with endurance training is mediated by decreased α-adrenergic tone and/or increased endothelial function. Methods: Seven sedentary healthy adults (60 ± 3 years) underwent systemic α-adrenergic blockade (phentolamine) and nitric oxide synthase (NOS) inhibition using NG-monomethyl-l-arginine in sequence before and after a 3-month moderate endurance training (walk/jog, 4-5 days/week). Phentolamine was given first to isolate the contribution of nitric oxide to arterial compliance by minimizing reflex suppression of sympathetic tone resulting from systemic NOS inhibition as well as to assess the α-adrenergic receptor-mediated modulation of arterial compliance. Results: Baseline arterial compliance (via simultaneous ultrasound and applanation tonometry on the carotid artery) increased 34 ± 12% after exercise training (P < 0.01). When α-adrenergic blockade was performed, arterial compliance increased 37 ± 6% (P < 0.01) before the exercise training but did not change significantly after the training. Decreases in arterial compliance from the α-adrenergic blockade to the subsequent additional NOS blockade were not different before and after exercise training. Conclusion: Our results suggest that the reduction in α-adrenergic receptor-mediated vascular tone contributes to the improved central arterial compliance with endurance training.
AB - Background: Regular aerobic exercise improves large artery compliance in middle-aged and older humans. However, the underlying mechanisms are unknown. We tested the hypothesis that the improved central arterial compliance with endurance training is mediated by decreased α-adrenergic tone and/or increased endothelial function. Methods: Seven sedentary healthy adults (60 ± 3 years) underwent systemic α-adrenergic blockade (phentolamine) and nitric oxide synthase (NOS) inhibition using NG-monomethyl-l-arginine in sequence before and after a 3-month moderate endurance training (walk/jog, 4-5 days/week). Phentolamine was given first to isolate the contribution of nitric oxide to arterial compliance by minimizing reflex suppression of sympathetic tone resulting from systemic NOS inhibition as well as to assess the α-adrenergic receptor-mediated modulation of arterial compliance. Results: Baseline arterial compliance (via simultaneous ultrasound and applanation tonometry on the carotid artery) increased 34 ± 12% after exercise training (P < 0.01). When α-adrenergic blockade was performed, arterial compliance increased 37 ± 6% (P < 0.01) before the exercise training but did not change significantly after the training. Decreases in arterial compliance from the α-adrenergic blockade to the subsequent additional NOS blockade were not different before and after exercise training. Conclusion: Our results suggest that the reduction in α-adrenergic receptor-mediated vascular tone contributes to the improved central arterial compliance with endurance training.
KW - Arterial stiffness
KW - Endothelial function
KW - Sympathetic nervous system
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U2 - 10.1016/j.ijcard.2008.04.007
DO - 10.1016/j.ijcard.2008.04.007
M3 - Article
C2 - 18603318
AN - SCOPUS:67349150809
SN - 0167-5273
VL - 135
SP - 346
EP - 352
JO - International Journal of Cardiology
JF - International Journal of Cardiology
IS - 3
ER -