PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
September 23, 2006AJP Heart and Circulatory Physiology127 citations

Vascular endothelium-derived factors and arterial stiffness in strength- and endurance-trained men

View Full Paper
TOTakeshi OtsukiSMSeiji MaedaMIMotoyuki Iemitsu

Structured PICO

Does exercise training type (strength vs. endurance) affect arterial stiffness and vascular endothelium-derived factors in young men?

P
Population
Young men (strength-trained athletes, endurance-trained athletes, and sedentary controls)
I
Intervention
Strength training or endurance training
C
Comparator
Sedentary lifestyle (controls)
O
Outcome
Plasma ET-1 and NO concentrations, and arterial stiffness (aortic pulse-wave velocity and systemic arterial compliance)surrogate

Differences in endogenous endothelin-1 may partly explain the higher arterial stiffness seen in strength-trained men and the lower arterial stiffness in endurance-trained men.

Abstract

Arterial stiffness is higher in strength-trained humans and lower in endurance-trained humans. However, the mechanisms underlying these different adaptations are unclear. Vascular endothelium-derived factors, such as endothelin-1 (ET-1) and nitric oxide (NO), play an important role in the regulation of vascular tonus. We hypothesized that endogenous ET-1 and NO participate in the adaptation of arterial stiffness in different types of exercise training. The purpose of this study was to investigate plasma ET-1 and NO concentrations and arterial stiffness in strength- and endurance-trained men. Young strength-trained athletes (SA; n = 11), endurance-trained athletes (EA; n = 12), and sedentary control men (C; n = 12) participated in this study. Maximal handgrip strength in SA and maximal oxygen uptake in EA were markedly greater than in C. Aortic pulse-wave velocity, which is an established index of arterial stiffness, was higher in SA and lower in EA than in C. Additionally, we measured systemic arterial compliance (SAC) using carotid artery applanation tonometry and Doppler echocardiography, because arterial stiffness is a primary determinant of the compliance. SAC was lower in SA and higher in EA compared with that in C. Plasma ET-1 concentrations were higher in SA compared with C and EA. We did not find significant differences in plasma NO concentrations (measured as the stable end product of NO, i.e., nitrite/nitrate). The relationships of plasma ET-1 concentrations to aortic pulse-wave velocity and SAC were linear. These results suggest that differences in endogenous ET-1 may partly participate in the mechanism underlying different adaptations of arterial stiffness in strength- and endurance-trained men.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Otsuki et al. (2006) studied this question.

synapsesocial.com/papers/69d07eb7632f68323204f56fhttps://doi.org/10.1152/ajpheart.00678.2006
Ask AI
Helpful
Bookmark
Share
View Full Paper

Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Regular Aerobic Exercise Augments Endothelium-Dependent Vascular Relaxation in Normotensive As Well As Hypertensive Subjects1999 · 552 citations
  2. 2Systemic Endothelin Receptor Blockade Decreases Peripheral Vascular Resistance and Blood Pressure in Humans1996 · 321 citations
  3. 3Reduced Plasma Concentrations of Nitrogen Oxide in Individuals With Essential Hypertension1997 · 158 citations
  4. 4Muscular Strength Training Is Associated With Low Arterial Compliance and High Pulse Pressure1999 · 283 citations
  5. 5Aerobic exercise training reduces plasma endothelin-1 concentration in older women2003 · 204 citations