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Augmented muscle sympathetic reactivity in normotensive adults with elevated maximal exercise blood pressure
Sydney E Hilton1, Alise D Rycroft1, Pardeep K Khangura1
1Human Cardiovascular Physiology Laboratory, Department of Human Health SciencesUniversity of Guelph, Guelph, Ontario, Canada.
Abstract:
Elevated peak blood pressure (BP) during exercise is an independent risk factor for future hypertension, but the mechanisms responsible for interindividual differences in exercise BP remain poorly studied. Forty-four participants (22 ± 5 yr; 18 female) completed a maximal exercise test (modified Bruce protocol) with brachial artery BP measured every 90 s (automated auscultation). On a subsequent visit, participants underwent measures of carotid-femoral pulse wave velocity (n = 37), superficial femoral artery flow-mediated dilation (n = 27), and muscle sympathetic nerve activity (MSNA; microneurography, n = 44). Hemodynamic and MSNA data were collected at rest, during handgrip exercise (static and rhythmic), and postexercise circulatory occlusion. Participants were separated by sex and grouped into tertiles based on peak exercise systolic BP (SBP). Peak exercise SBP differed between tertiles (tertile 1: 168 ± 16 vs. tertile 2: 194 ± 14 vs. tertile 3: 223 ± 17 mmHg, P < 0.001), despite no differences in resting SBP (P = 0.12), diastolic BP (P = 0.17), heart rate (P = 0.12), superficial femoral artery flow-mediated dilation (P = 0.85), carotid-femoral pulse wave velocity (P = 0.15), or MSNA (17.8 ± 5.9 vs. 16.8 ± 5.8 vs. 19.0 ± 4.5 bursts/min, P = 0.56). MSNA was higher during the final 30 s of static handgrip in tertile 3 compared with both tertiles 1 and 2 (28.8 ± 8.0 vs. 29.3 ± 9.0 vs. 43.7 ± 14.0 bursts/min, both P < 0.01) and postexercise circulatory occlusion (tertile 1: 28.0 ± 9.3 vs. tertile 3: 38.5 ± 15.8, P = 0.03 and tertile 2: 27.5 ± 9.1 vs. tertile 3: 38.5 ± 15.8 bursts/min, P = 0.01). MSNA did not differ during rhythmic handgrip exercise (all P > 0.19). Normotensive adults with higher peak SBP during maximal treadmill exercise have augmented MSNA during activation of the muscle metaboreflex.NEW & NOTEWORTHY Elevated exercise blood pressure (BP) is associated with an increased risk for future hypertension, but the integrative mechanisms remain poorly studied. We demonstrate that normotensive adults with higher peak systolic BP during maximal treadmill exercise have augmented muscle sympathetic nerve activity during static handgrip exercise and postexercise circulatory occlusion compared with those with lower peak exercise systolic BP. These results suggest an important role of the muscle metaboreflex in mediating interindividual differences in exercise BP.
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