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Sex differences in the circadian misalignment effects on energy regulation
by
Caputo, Rosanna
, Qian, Jingyi
, Morris, Christopher J.
, Scheer, Frank A. J. L.
, Wang, Wei
, Garaulet, Marta
in
Adult
/ Appetite
/ Appetite - physiology
/ Biological Sciences
/ Body Temperature
/ Catecholamine
/ Catecholamines
/ Circadian Rhythm
/ Circadian rhythms
/ Crossovers
/ Energy
/ Energy balance
/ Energy expenditure
/ Energy Metabolism
/ Environmental factors
/ Female
/ Females
/ Food Preferences
/ Gender aspects
/ Gender differences
/ Ghrelin
/ Ghrelin - physiology
/ Homeostasis
/ Humans
/ Hunger
/ Leptin
/ Leptin - physiology
/ Lipid Metabolism - physiology
/ Lipids
/ Lipids - blood
/ Male
/ Males
/ Metabolism
/ Misalignment
/ Obesity
/ Oxidation-Reduction
/ Physiology
/ Quotients
/ Respiratory quotient
/ Risk analysis
/ Risk factors
/ Satiety
/ Sex
/ Sex differences
/ Sex Factors
/ Shift work
/ Sleep
/ Thermoregulation
/ Young Adult
2019
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Sex differences in the circadian misalignment effects on energy regulation
by
Caputo, Rosanna
, Qian, Jingyi
, Morris, Christopher J.
, Scheer, Frank A. J. L.
, Wang, Wei
, Garaulet, Marta
in
Adult
/ Appetite
/ Appetite - physiology
/ Biological Sciences
/ Body Temperature
/ Catecholamine
/ Catecholamines
/ Circadian Rhythm
/ Circadian rhythms
/ Crossovers
/ Energy
/ Energy balance
/ Energy expenditure
/ Energy Metabolism
/ Environmental factors
/ Female
/ Females
/ Food Preferences
/ Gender aspects
/ Gender differences
/ Ghrelin
/ Ghrelin - physiology
/ Homeostasis
/ Humans
/ Hunger
/ Leptin
/ Leptin - physiology
/ Lipid Metabolism - physiology
/ Lipids
/ Lipids - blood
/ Male
/ Males
/ Metabolism
/ Misalignment
/ Obesity
/ Oxidation-Reduction
/ Physiology
/ Quotients
/ Respiratory quotient
/ Risk analysis
/ Risk factors
/ Satiety
/ Sex
/ Sex differences
/ Sex Factors
/ Shift work
/ Sleep
/ Thermoregulation
/ Young Adult
2019
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Sex differences in the circadian misalignment effects on energy regulation
by
Caputo, Rosanna
, Qian, Jingyi
, Morris, Christopher J.
, Scheer, Frank A. J. L.
, Wang, Wei
, Garaulet, Marta
in
Adult
/ Appetite
/ Appetite - physiology
/ Biological Sciences
/ Body Temperature
/ Catecholamine
/ Catecholamines
/ Circadian Rhythm
/ Circadian rhythms
/ Crossovers
/ Energy
/ Energy balance
/ Energy expenditure
/ Energy Metabolism
/ Environmental factors
/ Female
/ Females
/ Food Preferences
/ Gender aspects
/ Gender differences
/ Ghrelin
/ Ghrelin - physiology
/ Homeostasis
/ Humans
/ Hunger
/ Leptin
/ Leptin - physiology
/ Lipid Metabolism - physiology
/ Lipids
/ Lipids - blood
/ Male
/ Males
/ Metabolism
/ Misalignment
/ Obesity
/ Oxidation-Reduction
/ Physiology
/ Quotients
/ Respiratory quotient
/ Risk analysis
/ Risk factors
/ Satiety
/ Sex
/ Sex differences
/ Sex Factors
/ Shift work
/ Sleep
/ Thermoregulation
/ Young Adult
2019
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Sex differences in the circadian misalignment effects on energy regulation
Journal Article
Sex differences in the circadian misalignment effects on energy regulation
2019
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Overview
Shift work causes circadian misalignment and is a risk factor for obesity. While some characteristics of the human circadian system and energy metabolism differ between males and females, little is known about whether sex modulates circadian misalignment effects on energy homeostasis. Here we show—using a randomized cross-over design with two 8-d laboratory protocols in 14 young healthy adults (6 females)—that circadian misalignment has sex-specific influences on energy homeostasis independent of behavioral/environmental factors. First, circadian misalignment affected 24-h average levels of the satiety hormone leptin sex-dependently (P < 0.0001), with a ∼7% decrease in females (P < 0.05) and an ∼11% increase in males (P < 0.0001). Consistently, circadian misalignment also increased the hunger hormone ghrelin by ∼8% during wake periods in females (P < 0.05) without significant effect in males. Females reported reduced fullness, consistent with their appetite hormone changes. However, males reported a rise in cravings for energy-dense and savory foods not consistent with their homeostatic hormonal changes, suggesting involvement of hedonic appetite pathways in males. Moreover, there were significant sex-dependent effects of circadian misalignment on respiratory quotient (P < 0.01), with significantly reduced values (P < 0.01) in females when misaligned, and again no significant effects in males, without sex-dependent effects on energy expenditure. Changes in sleep, thermoregulation, behavioral activity, lipids, and catecholamine levels were also assessed. These findings demonstrate that sex modulates the effects of circadian misalignment on energy metabolism, indicating possible sex-specific mechanisms and countermeasures for obesity in male and female shift workers.
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