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. 2023 Jul;601(14):2877-2898.
doi: 10.1113/JP284517. Epub 2023 May 5.

The interactive effects of age and sex on the neuro-cardiovascular responses during fatiguing rhythmic handgrip exercise

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Free article

The interactive effects of age and sex on the neuro-cardiovascular responses during fatiguing rhythmic handgrip exercise

Andrew W D'Souza et al. J Physiol. 2023 Jul.
Free article

Abstract

The impact of age on exercise pressor responses is equivocal, likely because of sex-specific neuro-cardiovascular changes with age. However, assessments of the interactive effects of age and sex on muscle sympathetic nerve activity (MSNA) responses to exercise are lacking. We tested the hypothesis that older females would exhibit exaggerated increases in blood pressure (BP) and MSNA discharge patterns during handgrip exercise compared with similarly aged males and young adults. Twenty-five young (25 (2) years; mean (SD)) males (YM; n = 12) and females (YF; n = 13) and 23 older (71 (5) years) males (OM; n = 11) and females (OF; n = 12) underwent assessments of BP, total peripheral resistance (TPR; Modelflow) and MSNA action potential (AP) discharge patterns (microneurography) during incremental rhythmic handgrip exercise and post-exercise circulatory occlusion (PECO). OM demonstrated larger ∆BP and ∆TPR from baseline than YM (both P < 0.001) despite smaller increases in ∆APs/burst (OM: 0.4 (3) vs. YM: 5 (3) spikes/burst, P < 0.001) and ∆AP clusters/burst (OM: 0.1 (1) vs. YM: 1.8 (1) clusters/burst, P < 0.001) during exercise. Testosterone was lower in OM than YM (P < 0.001) and was inversely related to ∆BP but positively related to ∆AP clusters/burst in males (both P = 0.03). Conversely, YF and OF demonstrated similar ∆BP and ∆AP discharge during exercise (range: P = 0.75-0.96). Age and sex did not impact haemodynamics or AP discharge during PECO (range: P = 0.08-0.94). Altogether, age-related changes in neuro-cardiovascular reactivity exist in males but not females during fatiguing exercise and seem to be related to testosterone. This sex-specific impact of age underscores the importance of considering biological sex when assessing age-related changes in neuro-cardiovascular control during exercise. KEY POINTS: Older males have the largest increase in blood pressure despite having the smallest increases in sympathetic vasomotor outflow during rhythmic handgrip exercise. Young males demonstrate greater increases in sympathetic action potential (AP) discharge compared with young females during rhythmic handgrip exercise. Older adults (regardless of sex) demonstrate smaller increases in muscle sympathetic nerve activity (MSNA) burst amplitude and total AP clusters compared with young adults during exercise, as well as smaller increases in integrated MSNA burst frequency, incidence and total MSNA activity during post-exercise circulatory occlusion (i.e. independent effect of age). Males, but not females (regardless of age), reflexively modify AP conduction velocity during exercise. Our results indicate that age and sex independently and interactively impact the neural and cardiovascular homeostatic adjustments to fatiguing small muscle mass exercise.

Keywords: MSNA; action potential; exercise pressor reflex; metaboreflex; microneurography; sex differences.

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References

    1. Alam, M., & Smirk, F. H. (1937). Observations in man on a Pulse-accelerating reflex from the voluntary muscles of the legs. The Journal of Physiology, 89(4), 372-383.
    1. Babcock, M. C., DuBose, L. E., Witten, T. L., Stauffer, B. L., Hildreth, K. L., Schwartz, R. S., Kohrt, W. M., & Moreau, K. L. (2022). Oxidative stress and inflammation are associated with Age-related endothelial dysfunction in men with low testosterone. Journal of Clinical Endocrinology and Metabolism, 107(2), e500-e514.
    1. Badrov, M. B., Olver, T.D., & Shoemaker, J.K. (2016). Central vs. Peripheral determinants of sympathetic neural recruitment: Insights from static handgrip exercise and postexercise circulatory occlusion. American Journal of Physiology - Regulatory Integrative and Comparative Physiology, 311(6), R1013-R1021.
    1. Badrov, M. B., Lalande, S., Olver, T. D., Suskin, N., & Shoemaker, J. K. (2016). Effects of aging and coronary artery disease on sympathetic neural recruitment strategies during end-inspiratory and end-expiratory apnea. American Journal of Physiology - Heart and Circulatory Physiology, 311(4), H1040-H1050.
    1. Badrov, M. B., Usselman, C. W., & Shoemaker, J. K. (2015). Sympathetic neural recruitment strategies: Responses to severe chemoreflex and baroreflex stress. American Journal of Physiology - Regulatory Integrative and Comparative Physiology, 309(2), R160-R168.

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