TY - JOUR
T1 - Brown adipose tissue metabolism in women is dependent on ovarian status
AU - Blondin, Denis P.
AU - Haman, François
AU - Swibas, Tracy M.
AU - Hogan-Lamarre, Sophie
AU - Dumont, Lauralyne
AU - Guertin, Jolan
AU - Richard, Gabriel
AU - Weissenburger, Quentin
AU - Hildreth, Kerry L.
AU - Schauer, Irene
AU - Panter, Shelby
AU - Wyland, Liza
AU - Carpentier, André C.
AU - Miao, Yubin
AU - Shi, Jiayuan
AU - Juarez-Colunga, Elizabeth
AU - Kohrt, Wendy M.
AU - Melanson, Edward L.
N1 - Publisher Copyright:
© 2024 the American Physiological Society.
PY - 2024/5
Y1 - 2024/5
N2 - In rodents, loss of estradiol (E2) reduces brown adipose tissue (BAT) metabolic activity. Whether E2 impacts BAT activity in women is not known. BAT oxidative metabolism was measured in premenopausal (n ¼ 27; 35 ± 9 yr; body mass index ¼ 26.0 ± 5.3 kg/m2) and postmenopausal (n ¼ 25; 51 ± 8 yr; body mass index ¼ 28.0 ± 5.0 kg/m2) women at room temperature and during acute cold exposure using [11C]acetate with positron emission tomography coupled with computed tomograph. BAT glucose uptake was also measured during acute cold exposure using 2-deoxy-2-[18F]fluoro-D-glu-cose. To isolate the effects of ovarian hormones from biological aging, measurements were repeated in a subset of premenopausal women (n ¼ 8; 40 ± 4 yr; BMI ¼ 28.0 ± 7.2 kg/m2) after 6 mo of gonadotropin-releasing hormone agonist therapy to suppress ovarian hormones. At room temperature, there was no difference in BAT oxidative metabolism between premenopausal (0.56 ± 0.31 min-1) and postmenopausal women (0.63 ± 0.28 min-1). During cold exposure, BAT oxidative metabolism (1.28 ± 0.85 vs. 0.91 ± 0.63 min-1, P ¼ 0.03) and net BAT glucose uptake (84.4 ± 82.5 vs. 29.7 ± 31.4 nmol·g-1·min-1, P < 0.01) were higher in premenopausal than postmenopausal women. In premenopausal women who underwent gonadotropin-releasing hormone agonist, cold-stimulated BAT oxidative metabolism was reduced to a similar level (from 1.36 ± 0.66 min-1 to 0.91 ± 0.41 min-1) to that observed in postmenopausal women (0.91 ± 0.63 min-1). These results provide the first evidence in humans that reproductive hormones are associated with BAT oxidative metabolism and suggest that BAT may be a target to attenuate age-related reduction in energy expenditure and maintain metabolic health in postmenopausal women. NEW & NOTEWORTHY In rodents, loss of estrogen reduces brown adipose tissue (BAT) activity. Whether this is true in humans is not known. We found that BAT oxidative metabolism and glucose uptake were lower in postmenopausal compared to premenopausal women. In premenopausal women who underwent ovarian suppression to reduce circulating estrogen, BAT oxidative metabolism was reduced to postmenopausal levels. Thus the loss of ovarian function in women leads to a reduction in BAT metabolic activity independent of age.
AB - In rodents, loss of estradiol (E2) reduces brown adipose tissue (BAT) metabolic activity. Whether E2 impacts BAT activity in women is not known. BAT oxidative metabolism was measured in premenopausal (n ¼ 27; 35 ± 9 yr; body mass index ¼ 26.0 ± 5.3 kg/m2) and postmenopausal (n ¼ 25; 51 ± 8 yr; body mass index ¼ 28.0 ± 5.0 kg/m2) women at room temperature and during acute cold exposure using [11C]acetate with positron emission tomography coupled with computed tomograph. BAT glucose uptake was also measured during acute cold exposure using 2-deoxy-2-[18F]fluoro-D-glu-cose. To isolate the effects of ovarian hormones from biological aging, measurements were repeated in a subset of premenopausal women (n ¼ 8; 40 ± 4 yr; BMI ¼ 28.0 ± 7.2 kg/m2) after 6 mo of gonadotropin-releasing hormone agonist therapy to suppress ovarian hormones. At room temperature, there was no difference in BAT oxidative metabolism between premenopausal (0.56 ± 0.31 min-1) and postmenopausal women (0.63 ± 0.28 min-1). During cold exposure, BAT oxidative metabolism (1.28 ± 0.85 vs. 0.91 ± 0.63 min-1, P ¼ 0.03) and net BAT glucose uptake (84.4 ± 82.5 vs. 29.7 ± 31.4 nmol·g-1·min-1, P < 0.01) were higher in premenopausal than postmenopausal women. In premenopausal women who underwent gonadotropin-releasing hormone agonist, cold-stimulated BAT oxidative metabolism was reduced to a similar level (from 1.36 ± 0.66 min-1 to 0.91 ± 0.41 min-1) to that observed in postmenopausal women (0.91 ± 0.63 min-1). These results provide the first evidence in humans that reproductive hormones are associated with BAT oxidative metabolism and suggest that BAT may be a target to attenuate age-related reduction in energy expenditure and maintain metabolic health in postmenopausal women. NEW & NOTEWORTHY In rodents, loss of estrogen reduces brown adipose tissue (BAT) activity. Whether this is true in humans is not known. We found that BAT oxidative metabolism and glucose uptake were lower in postmenopausal compared to premenopausal women. In premenopausal women who underwent ovarian suppression to reduce circulating estrogen, BAT oxidative metabolism was reduced to postmenopausal levels. Thus the loss of ovarian function in women leads to a reduction in BAT metabolic activity independent of age.
KW - cold-induced thermogenesis
KW - energy metabolism
KW - estradiol
KW - human
KW - positron emission tomography
UR - https://www.scopus.com/pages/publications/85190903130
U2 - 10.1152/ajpendo.00077.2024
DO - 10.1152/ajpendo.00077.2024
M3 - Article
C2 - 38477875
AN - SCOPUS:85190903130
SN - 0193-1849
VL - 326
SP - E588-E601
JO - American Journal of Physiology - Endocrinology and Metabolism
JF - American Journal of Physiology - Endocrinology and Metabolism
IS - 5
ER -