2021
DOI: 10.20945/2359-3997000000407
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Restricted feeding modulates peripheral clocks and nutrient sensing pathways in rats

Abstract: Objective: Feeding restriction in rats alters the oscillators in suprachiasmatic, paraventricular, and arcuate nuclei, hypothalamic areas involved in food intake. In the present study, using the same animals and experimental protocol, we aimed to analyze if food restriction could reset clock genes (Clock, Bmal1) and genes involved in lipid metabolism (Pgc1a, Pparg, Ucp2) through nutrient-sensing pathways (Sirt1, Ampk, Nampt) in peripheral tissues. Materials and methods: Rats were grouped according to food acce… Show more

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“…Aligning meal times with the circadian rhythms by time-restricted feeding in animal models can also modulate PGC1α activity and mitochondrial biogenesis. [ 323 , 349 , 350 , 351 , 352 , 353 ]. Additionally, various polyphenolic compounds contribute to mitochondrial biogenesis via PGC1α activation, which is mediated via AMPK-SIRT1 activation [ 354 , 355 ].…”
Section: Mechanisms Of Chrononutrition In Energy Homeostasis and Obesitymentioning
confidence: 99%
“…Aligning meal times with the circadian rhythms by time-restricted feeding in animal models can also modulate PGC1α activity and mitochondrial biogenesis. [ 323 , 349 , 350 , 351 , 352 , 353 ]. Additionally, various polyphenolic compounds contribute to mitochondrial biogenesis via PGC1α activation, which is mediated via AMPK-SIRT1 activation [ 354 , 355 ].…”
Section: Mechanisms Of Chrononutrition In Energy Homeostasis and Obesitymentioning
confidence: 99%