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Acute sleep loss alters circulating fibroblast growth factor 21 levels in humans: A randomised crossover trial.
Mateus Brandão, Luiz Eduardo; Espes, Daniel; Westholm, Jakub Orzechowski; Martikainen, Teemu; Westerlund, Nestori; Lampola, Lauri; Popa, Alexandru; Vogel, Heike; Schürmann, Annette; Dickson, Suzanne L; Benedict, Christian; Cedernaes, Jonathan.
Afiliação
  • Mateus Brandão LE; Department of Medical Sciences, Uppsala University, Uppsala, Sweden.
  • Espes D; Department of Medical Sciences, Uppsala University, Uppsala, Sweden.
  • Westholm JO; Department of Medical Cell Biology, Uppsala University, Uppsala, Sweden.
  • Martikainen T; Department of Biochemistry and Biophysics, National Bioinformatics Infrastructure Sweden, Science for Life Laboratory, Stockholm University, Stockholm, Sweden.
  • Westerlund N; Department of Medical Sciences, Uppsala University, Uppsala, Sweden.
  • Lampola L; Department of Medical Sciences, Uppsala University, Uppsala, Sweden.
  • Popa A; Department of Medical Sciences, Uppsala University, Uppsala, Sweden.
  • Vogel H; Department of Medical Sciences, Uppsala University, Uppsala, Sweden.
  • Schürmann A; Department of Experimental Diabetology, German Institute of Human Nutrition Potsdam-Rehbruecke, Nuthetal, Germany.
  • Dickson SL; German Center for Diabetes Research, Neuherberg, Germany.
  • Benedict C; Faculty of Health Sciences, Joint Faculty of the Brandenburg University of Technology Cottbus - Senftenberg, , The Brandenburg Medical School Theodor Fontane and the University of Potsdam, Potsdam, Germany.
  • Cedernaes J; Department of Experimental Diabetology, German Institute of Human Nutrition Potsdam-Rehbruecke, Nuthetal, Germany.
J Sleep Res ; 31(2): e13472, 2022 04.
Article em En | MEDLINE | ID: mdl-34476847
ABSTRACT
The hormone fibroblast growth factor 21 (FGF21) modulates tissue metabolism and circulates at higher levels in metabolic conditions associated with chronic sleep-wake disruption, such as type 2 diabetes and obesity. In the present study, we investigated whether acute sleep loss impacts circulating levels of FGF21 and tissue-specific production, and response pathways linked to FGF21. A total of 15 healthy normal-weight young men participated in a randomised crossover study with two conditions, sleep loss versus an 8.5-hr sleep window. The evening before each intervention, fasting blood was collected. Fasting, post-intervention morning skeletal muscle and adipose tissue samples underwent quantitative polymerase chain reaction and DNA methylation analyses, and serum FGF21 levels were measured before and after an oral glucose tolerance test. Serum levels of FGF21 were higher after sleep loss compared with sleep, both under fasting conditions and following glucose intake (~27%-30%, p = 0.023). Fasting circulating levels of fibroblast activation protein, a protein which can degrade circulating FGF21, were not altered by sleep loss, whereas DNA methylation in the FGF21 promoter region increased only in adipose tissue. However, even though specifically the muscle exhibited transcriptional changes indicating adverse alterations to redox and metabolic homeostasis, no tissue-based changes were observed in expression of FGF21, its receptors, or selected signalling targets, in response to sleep loss. In summary, we found that acute sleep loss resulted in increased circulating levels of FGF21 in healthy young men, which may occur independent of a tissue-based stress response in metabolic peripheral tissues. Further studies may decipher whether changes in FGF21 signalling after sleep loss modulate metabolic outcomes associated with sleep or circadian disruption.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Diabetes Mellitus Tipo 2 Tipo de estudo: Clinical_trials Limite: Humans / Male Idioma: En Ano de publicação: 2022 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Diabetes Mellitus Tipo 2 Tipo de estudo: Clinical_trials Limite: Humans / Male Idioma: En Ano de publicação: 2022 Tipo de documento: Article