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Impact of change in bedtime variability on body composition and inflammation: Secondary findings from the Go Red for Women Strategically Focused Research Network

Variability in daily sleep patterns is an emerging factor linked to metabolic syndrome. However, whether reducing bedtime variability improves markers of disease risk has not been tested. Here, we assessed whether body composition and inflammation were impacted by changes in bedtime variability over...

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Autores principales: St-Onge, Marie-Pierre, Campbell, Ayanna, Zuraikat, Faris, Cheng, Bin, Shah, Riddhi, Berger, Jeffrey S., Sampogna, Rosemary V, Jelic, Sanja
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7387143/
https://www.ncbi.nlm.nih.gov/pubmed/32132641
http://dx.doi.org/10.1038/s41366-020-0555-1
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author St-Onge, Marie-Pierre
Campbell, Ayanna
Zuraikat, Faris
Cheng, Bin
Shah, Riddhi
Berger, Jeffrey S.
Sampogna, Rosemary V
Jelic, Sanja
author_facet St-Onge, Marie-Pierre
Campbell, Ayanna
Zuraikat, Faris
Cheng, Bin
Shah, Riddhi
Berger, Jeffrey S.
Sampogna, Rosemary V
Jelic, Sanja
author_sort St-Onge, Marie-Pierre
collection PubMed
description Variability in daily sleep patterns is an emerging factor linked to metabolic syndrome. However, whether reducing bedtime variability improves markers of disease risk has not been tested. Here, we assessed whether body composition and inflammation were impacted by changes in bedtime variability over a 6-wk period, during which, women were instructed to maintain healthy, habitual sleep patterns (one arm of a randomized trial). Data were available for 37 women (age 34.9±12.4 y, BMI 24.7±2.9 kg/m(2), sleep duration 7.58±0.49 h/night). Body composition and leukocyte platelet aggregates (LPA) were measured at baseline and endpoint using magnetic resonance imaging and flow cytometry, respectively. Sleep data were collected weekly using wrist actigraphy. Change in bedtime variability was calculated as the difference in the standard deviation of bedtimes measured during the 2-wk screening period and the 6-wk intervention period. Results showed that women who reduced their bedtime variability (n=29) during the intervention had reductions in total (P<0.001) and subcutaneous adipose tissue (P<0.001) relative to women who increased/maintained (n=8) bedtime variability. Similar effects were observed for LPA levels between women who reduced vs increased/maintained bedtime variability (P=0.011). Thus, reducing bedtime variability, without changing sleep duration, could improve cardiometabolic health by reducing adiposity and inflammation.
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spelling pubmed-73871432020-09-05 Impact of change in bedtime variability on body composition and inflammation: Secondary findings from the Go Red for Women Strategically Focused Research Network St-Onge, Marie-Pierre Campbell, Ayanna Zuraikat, Faris Cheng, Bin Shah, Riddhi Berger, Jeffrey S. Sampogna, Rosemary V Jelic, Sanja Int J Obes (Lond) Article Variability in daily sleep patterns is an emerging factor linked to metabolic syndrome. However, whether reducing bedtime variability improves markers of disease risk has not been tested. Here, we assessed whether body composition and inflammation were impacted by changes in bedtime variability over a 6-wk period, during which, women were instructed to maintain healthy, habitual sleep patterns (one arm of a randomized trial). Data were available for 37 women (age 34.9±12.4 y, BMI 24.7±2.9 kg/m(2), sleep duration 7.58±0.49 h/night). Body composition and leukocyte platelet aggregates (LPA) were measured at baseline and endpoint using magnetic resonance imaging and flow cytometry, respectively. Sleep data were collected weekly using wrist actigraphy. Change in bedtime variability was calculated as the difference in the standard deviation of bedtimes measured during the 2-wk screening period and the 6-wk intervention period. Results showed that women who reduced their bedtime variability (n=29) during the intervention had reductions in total (P<0.001) and subcutaneous adipose tissue (P<0.001) relative to women who increased/maintained (n=8) bedtime variability. Similar effects were observed for LPA levels between women who reduced vs increased/maintained bedtime variability (P=0.011). Thus, reducing bedtime variability, without changing sleep duration, could improve cardiometabolic health by reducing adiposity and inflammation. 2020-03-05 2020-08 /pmc/articles/PMC7387143/ /pubmed/32132641 http://dx.doi.org/10.1038/s41366-020-0555-1 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
St-Onge, Marie-Pierre
Campbell, Ayanna
Zuraikat, Faris
Cheng, Bin
Shah, Riddhi
Berger, Jeffrey S.
Sampogna, Rosemary V
Jelic, Sanja
Impact of change in bedtime variability on body composition and inflammation: Secondary findings from the Go Red for Women Strategically Focused Research Network
title Impact of change in bedtime variability on body composition and inflammation: Secondary findings from the Go Red for Women Strategically Focused Research Network
title_full Impact of change in bedtime variability on body composition and inflammation: Secondary findings from the Go Red for Women Strategically Focused Research Network
title_fullStr Impact of change in bedtime variability on body composition and inflammation: Secondary findings from the Go Red for Women Strategically Focused Research Network
title_full_unstemmed Impact of change in bedtime variability on body composition and inflammation: Secondary findings from the Go Red for Women Strategically Focused Research Network
title_short Impact of change in bedtime variability on body composition and inflammation: Secondary findings from the Go Red for Women Strategically Focused Research Network
title_sort impact of change in bedtime variability on body composition and inflammation: secondary findings from the go red for women strategically focused research network
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7387143/
https://www.ncbi.nlm.nih.gov/pubmed/32132641
http://dx.doi.org/10.1038/s41366-020-0555-1
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