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Assessment of Social Transmission of Food Preferences Behaviors
Published on: January 25, 2018
Time-restricted feeding prevents memory impairments induced by obesogenic diet consumption, via hippocampal thyroid
Jean-Christophe Helbling1, Rachel Ginieis1, Pierre Mortessagne1
1Univ. Bordeaux, INRAE, Bordeaux INP, NutriNeurO, UMR 1286, Teams NutriPsy & FoodCircus, Bordeaux, France.
Objective:
The early consumption of calorie-rich diet disrupts circadian rhythms and has adverse effects on memory, yet the effects of time-restricted feeding (TRF) and the underlying molecular mechanisms are unknown. Here, we set out to identify the behavioral and molecular circadian rhythms disruptions generated by juvenile obesogenic diet consumption and their restoration by TRF in male mice.
Methods:
Metabolic rhythms were measured by indirect calorimetry and memory performances by behavioral tasks. Hippocampal translatome (pS6_TRAP), enrichment and co-regulated gene network analyses were conducted to identify the molecular pathways involved in memory impairments and their restoration by TRF. Differential exon usage analyses, mass spectrometry and pharmacological intervention were used to confirm thyroid hormone signaling involvement.
Results:
We show that four weeks of TRF restore the rhythmicity of metabolic parameters and prevents memory impairments in mice fed a high fat-high sucrose (HFS) diet since weaning, independently of body fat levels. Hippocampal translatome and differential exon usage analyses indicate that impaired memory of mice under ad libitum HFS diet is accompanied by reduced thyroid hormone signaling and altered expression of astrocytic genes regulating glutamate neurotransmission. TRF restored the diurnal expression variation of part of these genes and intra-hippocampal infusion of T3, the active form of thyroid hormone, rescues memory performances and astrocytic gene expression of ad libitum HFS diet-fed mice.
Conclusions:
Thus, thyroid hormones contribute to the TRF positive effects on both metabolism and memory in mice fed an obesogenic diet, highlighting this nutritional approach as a powerful tool in addressing obesity brain comorbidities and paving the way for further mechanistic studies on hippocampal thyroid signaling.
Insights
Time-restricted feeding (TRF) restores metabolic and memory functions in mice on an obesogenic diet. Thyroid hormones are key to TRF
Area of Science:
- Neuroscience
- Metabolic Science
- Chronobiology
Background:
- Early consumption of calorie-rich diets disrupts circadian rhythms and impairs memory.
- The impact of time-restricted feeding (TRF) and its molecular mechanisms on diet-induced disruptions are not well understood.
Purpose of the Study:
- To investigate circadian rhythm disruptions from juvenile obesogenic diet consumption in mice.
- To determine if TRF can restore disrupted behavioral and molecular circadian rhythms.
- To identify molecular pathways underlying memory impairment and TRF's restorative effects.
Main Methods:
- Metabolic rhythms assessed via indirect calorimetry; memory performance evaluated through behavioral tasks.
- Hippocampal translatome, gene network, and differential exon usage analyses identified molecular pathways.
- Mass spectrometry and pharmacological interventions confirmed thyroid hormone signaling involvement.
Main Results:
- TRF for four weeks restored metabolic rhythmicity and prevented memory deficits in mice on a high-fat, high-sucrose diet, irrespective of body fat.
- Impaired memory in mice on the obesogenic diet correlated with reduced thyroid hormone signaling and altered astrocytic genes involved in glutamate neurotransmission.
- TRF normalized diurnal expression of some affected genes; intra-hippocampal T3 infusion rescued memory and gene expression in diet-fed mice.
Conclusions:
- Thyroid hormones mediate the beneficial effects of TRF on metabolism and memory in mice consuming an obesogenic diet.
- TRF is a promising nutritional strategy for managing obesity-related brain comorbidities.
- Further research into hippocampal thyroid signaling mechanisms is warranted.
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