One day of overfeeding impairs nocturnal glucose but not fatty acid homeostasis in overweight men

Research output: Contribution to journalJournal articleResearchpeer-review

  • Magkos, Faidon
  • Gordon I Smith
  • Dominic N Reeds
  • Adewole Okunade
  • Bruce W Patterson
  • Bettina Mittendorfer

Objective: Overfeeding is associated with insulin resistance. Studies on animals suggest this is likely due to disruption of fatty acid metabolism and increased plasma free fatty acid (FFA) availability during the night. We tested the hypothesis that overfeeding induces insulin resistance and increases nocturnal but not daytime plasma FFA availability in human subjects.

Design and methods: We measured plasma glucose, insulin, and FFA concentrations hourly for 24 h during a day of isocaloric feeding and a day of hypercaloric feeding (30% calorie excess) in 8 overweight and obese, nondiabetic men (age: 38±3 years; body mass index: 34±2 kg/m²).

Results: Overfeeding had no effect on daytime plasma glucose, insulin, and FFA concentrations compared to isocaloric feeding, but increased nocturnal glucose (P = 0.007) and insulin (P = 0.003) concentrations and decreased nocturnal FFA concentration (P = 0.006). The homeostasis model assessment of insulin resistance score was ∼30% greater the morning after hypercaloric than isocaloric feeding (P = 0.040).

Conclusions: One day of overfeeding has no effect on daytime plasma glucose and FFA concentrations but increases nocturnal plasma glucose and insulin concentrations, whereas nocturnal plasma FFA availability is reduced. The acute overfeeding-induced development of insulin resistant glucose metabolism therefore does not appear to be directly mediated by plasma FFA availability.

Original languageEnglish
JournalObesity
Volume22
Issue number2
Pages (from-to)435-440
Number of pages6
ISSN1930-7381
DOIs
Publication statusPublished - 2014
Externally publishedYes

Bibliographical note

Copyright © 2013 The Obesity Society.

    Research areas

  • Adipose Tissue/metabolism, Adult, Allostasis, Blood Glucose, Body Mass Index, Circadian Rhythm, Fatty Acids, Nonesterified/blood, Homeostasis, Humans, Hyperglycemia/etiology, Hyperinsulinism/etiology, Hyperphagia/blood, Insulin/blood, Insulin Resistance, Liver/metabolism, Male, Muscles/metabolism, Obesity/blood, Overweight/blood, Snacks

ID: 289966258