Circadian Alignment, Cardiometabolic Disease, and Sex-Specific Differences in Adults With Overweight/Obesity

Author:

Shafer Brooke M1ORCID,Kogan Sophia A1,Rice Sean P M23,Shea Steven A23,Olson Ryan234,McHill Andrew W12ORCID

Affiliation:

1. Sleep, Chronobiology, and Health Laboratory, School of Nursing, Oregon Health & Science University , Portland, OR 97239 , USA

2. Oregon Institute of Occupational Health Sciences, Oregon Health & Science University , Portland, OR 97239 , USA

3. School of Public Health, OHSU-Portland State University , Portland, OR 97201 , USA

4. Department of Psychology, Portland State University , Portland, OR 97201 , USA

Abstract

Abstract Context Circadian disruption promotes weight gain and poor health. The extent to which sex plays a role in the relationship between the circadian timing of behaviors and health outcomes in individuals with overweight/obesity is unclear. Objective We investigated the sex-specific associations between circadian alignment and cardiometabolic health markers in females and males with overweight/obesity. Methods Thirty volunteers with overweight/obesity (15 female; body mass index ≥25.1 kg/m2) underwent an evening in-laboratory assessment for dim-light melatonin onset (DLMO), body composition via dual energy x-ray absorptiometry, and a fasted blood sample. Circadian alignment was determined as the time difference between DLMO and average sleep onset over 7 days (phase angle), with participants categorized into narrow/wide phase angle groups based on median phase angle split. Due to known differences in metabolic markers between sexes, participants were subdivided based on sex into narrow and wide phase angle groups. Results Males in the narrow phase angle group had higher android/gynoid body fat distribution, triglycerides, and metabolic syndrome risk scores, while females had higher overall body fat percentage, glucose, and resting heart rates (all P < .04). Furthermore, a narrower phase angle in males was negatively associated with android/gynoid body fat (r = −0.53, P = .04) and negatively associated with body fat (r = −0.62, P = .01) and heart rate (r = −0.73, P < .01) in females. Conclusion Circadian disruption may not only promote a trajectory of weight gain but could also contribute to negative health consequences in a sex-dependent manner in those already with overweight/obesity. These data may have implications for clinical utility in sex-specific sleep and circadian interventions for adults with overweight/obesity.

Funder

National Institutes of Health

Oregon Institute of Occupational Health Sciences

Oregon Health & Science University

Division of Consumer and Business Services

ORS

Publisher

The Endocrine Society

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