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January 8, 2011AJP Heart and Circulatory Physiology76 citationsOpen Access

Skeletal muscle reflex-mediated changes in sympathetic nerve activity are abnormal in spontaneously hypertensive rats

MMMasaki MizunoSouthwestern Medical CenterMMMegan N. MurphySeton Hall UniversityJMJere H. MitchellGeneral / Preventive / Lipids

Key Result

Stimulation of the exercise pressor reflex evoked significantly larger increases in renal sympathetic nerve activity in spontaneously hypertensive rats compared with normotensive rats (140% vs 48%).

Structured PICO

P
Population
Decerebrate normotensive Wistar-Kyoto (WKY) and spontaneously hypertensive (SHR) rats.
E
Exposure
Selective activation of the exercise pressor reflex (EPR) by electrically inducing hindlimb muscle contraction, and stimulation of the mechanoreflex by stretching hindlimb muscle, with and without mechanoreceptor blockade using gadolinium
C
Comparator
Normotensive Wistar-Kyoto (WKY) rats
O
Outcome
Changes in mean arterial pressure (MAP) and renal sympathetic nerve activity (RSNA)surrogate

In spontaneously hypertensive rats, the exaggerated pressor response to exercise is mediated by abnormally large reflex-induced augmentations in sympathetic nerve activity driven partly by muscle mechanoreceptors.

Main Result

Absolute Event Rate: 140% vs 48%

Abstract

In hypertension, the blood pressure response to exercise is exaggerated. We demonstrated previously that this heightened pressor response to physical activity is mediated by an overactive skeletal muscle exercise pressor reflex (EPR), with important contributions from its metaboreflex and mechanoreflex components. However, the mechanisms driving the abnormal blood pressure response to EPR activation are largely unknown. Recent evidence in humans suggests that the muscle metaboreflex partially mediates the enhanced EPR-induced pressor response via abnormally large changes in sympathetic nerve activity (SNA). Whether the muscle mechanoreflex induces similarly exaggerated alterations in SNA in hypertension remains unknown, as does the role of the mechanoreceptors mediating muscle reflex activity. To address these issues, the EPR was selectively activated by electrically inducing hindlimb muscle contraction in decerebrate normotensive Wistar-Kyoto (WKY) and spontaneously hypertensive (SHR) rats. Stimulation of the EPR evoked significantly larger increases in mean arterial pressure (MAP) and renal SNA (RSNA) in SHR compared with WKY (ΔRSNA from baseline: 140 ± 11 vs. 48 ± 8%). The mechanoreflex was stimulated by stretching hindlimb muscle which likewise elicited significantly greater elevations in MAP and RSNA in SHR than WKY (ΔRSNA from baseline: 105 ± 11 vs. 35 ± 7%). Blockade of mechanoreceptors in muscle with gadolinium significantly attenuated the MAP and RSNA responses to contraction and stretch in SHR. These data suggest that 1) the exaggerated pressor response to activation of the EPR and muscle mechanoreflex in hypertension is mediated by abnormally large reflex-induced augmentations in SNA and 2) this accentuated sympathetic responsiveness is evoked, in part, by stimulation of muscle mechanoreceptors.

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Cite This Study

Mizuno et al. (2011) studied Hypertension. Spontaneous hypertension vs. Normotensive Wistar-Kyoto (WKY) rats was evaluated on Change in renal sympathetic nerve activity (ΔRSNA) from baseline upon exercise pressor reflex stimulation. Stimulation of the exercise pressor reflex evoked significantly larger increases in renal sympathetic nerve activity in spontaneously hypertensive rats compared with normotensive rats (140% vs 48%).

synapsesocial.com/papers/6a2390639e1c90a91c08e6ddhttps://doi.org/10.1152/ajpheart.01145.2010
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