Transdermal oestradiol replacement for 1 month in postmenopausal women restored the normal blunting of sympathetic vasoconstriction during exercise (decrease in muscle oxygenation 2% vs 12% at baseline; P<0.05).
Does transdermal oestradiol replacement improve functional sympatholysis in exercising forearms of postmenopausal women?
Short-term transdermal oestradiol replacement restores normal functional sympatholysis in postmenopausal women, highlighting the role of oestrogen in sympathetic neural control of muscle haemodynamics during exercise.
Absolute Event Rate: 2% vs 12%
p-value: p=<0.05
Sympathetic vasoconstriction is normally attenuated in exercising muscles of young men and women. Recent evidence indicates that such modulation, termed functional sympatholysis, may be impaired in older men. Whether a similar impairment occurs in older women, and what role oestrogen deficiency might play in this impairment, are not known. Based on the strong positive correlation between circulating oestrogen levels and functional sympatholysis previously reported in female rats, we hypothesized that sympatholysis would be impaired in oestrogen-deficient postmenopausal women, and that this impairment would be reversed by oestrogen replacement. To test these hypotheses, we measured vasoconstrictor responses in the forearms of pre- and postmenopausal women using near infrared spectroscopy to detect decreases in muscle oxygenation in response to reflex activation of sympathetic nerves evoked by lower body negative pressure (LBNP). In eight premenopausal women, LBNP decreased muscle oxygenation by 20 +/- 1% in resting forearm, but only by 3 +/- 2% in exercising forearm (P 0.05). After 1 month of transdermal oestradiol replacement in these women, the normal effect of exercise to blunt sympathetic vasoconstriction was restored (rest, -19 +/- 3%; exercise, -2 +/- 3%; P < 0.05). These data indicate that functional sympatholysis is impaired in oestrogen-deficient postmenopausal women. The effect of short-term unopposed oestrogen replacement to correct this impairment implicates a role for oestrogen in the sympathetic neural control of muscle haemodynamics during exercise.
Fadel et al. (Fri,) conducted a other in Oestrogen deficiency in postmenopausal women (n=16). Transdermal oestradiol replacement vs. Baseline (before oestradiol replacement) was evaluated on Decrease in muscle oxygenation in exercising forearm in response to lower body negative pressure (p=<0.05). Transdermal oestradiol replacement for 1 month in postmenopausal women restored the normal blunting of sympathetic vasoconstriction during exercise (decrease in muscle oxygenation 2% vs 12% at baseline; P<0.05).