Literature DB >> 22608008

Time-restricted feeding without reducing caloric intake prevents metabolic diseases in mice fed a high-fat diet.

Megumi Hatori1, Christopher Vollmers, Amir Zarrinpar, Luciano DiTacchio, Eric A Bushong, Shubhroz Gill, Mathias Leblanc, Amandine Chaix, Matthew Joens, James A J Fitzpatrick, Mark H Ellisman, Satchidananda Panda.   

Abstract

While diet-induced obesity has been exclusively attributed to increased caloric intake from fat, animals fed a high-fat diet (HFD) ad libitum (ad lib) eat frequently throughout day and night, disrupting the normal feeding cycle. To test whether obesity and metabolic diseases result from HFD or disruption of metabolic cycles, we subjected mice to either ad lib or time-restricted feeding (tRF) of a HFD for 8 hr per day. Mice under tRF consume equivalent calories from HFD as those with ad lib access yet are protected against obesity, hyperinsulinemia, hepatic steatosis, and inflammation and have improved motor coordination. The tRF regimen improved CREB, mTOR, and AMPK pathway function and oscillations of the circadian clock and their target genes' expression. These changes in catabolic and anabolic pathways altered liver metabolome and improved nutrient utilization and energy expenditure. We demonstrate in mice that tRF regimen is a nonpharmacological strategy against obesity and associated diseases.
Copyright © 2012 Elsevier Inc. All rights reserved.

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Year:  2012        PMID: 22608008      PMCID: PMC3491655          DOI: 10.1016/j.cmet.2012.04.019

Source DB:  PubMed          Journal:  Cell Metab        ISSN: 1550-4131            Impact factor:   27.287


  53 in total

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3.  Brd2 disruption in mice causes severe obesity without Type 2 diabetes.

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Review 4.  Galectin-1: a small protein with major functions.

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5.  The economic impact of obesity in the United States.

Authors:  Ross A Hammond; Ruth Levine
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6.  Nonalcoholic steatohepatitis: histologic features and clinical correlations with 30 blinded biopsy specimens.

Authors:  Elizabeth M Brunt; Brent A Neuschwander-Tetri; Dana Oliver; Kent R Wehmeier; Bruce R Bacon
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7.  Circadian timing of food intake contributes to weight gain.

Authors:  Deanna M Arble; Joseph Bass; Aaron D Laposky; Martha H Vitaterna; Fred W Turek
Journal:  Obesity (Silver Spring)       Date:  2009-09-03       Impact factor: 5.002

Review 8.  Circadian integration of metabolism and energetics.

Authors:  Joseph Bass; Joseph S Takahashi
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9.  Regulation of circadian behaviour and metabolism by REV-ERB-α and REV-ERB-β.

Authors:  Han Cho; Xuan Zhao; Megumi Hatori; Ruth T Yu; Grant D Barish; Michael T Lam; Ling-Wa Chong; Luciano DiTacchio; Annette R Atkins; Christopher K Glass; Christopher Liddle; Johan Auwerx; Michael Downes; Satchidananda Panda; Ronald M Evans
Journal:  Nature       Date:  2012-03-29       Impact factor: 49.962

10.  Circadian clock feedback cycle through NAMPT-mediated NAD+ biosynthesis.

Authors:  Kathryn Moynihan Ramsey; Jun Yoshino; Cynthia S Brace; Dana Abrassart; Yumiko Kobayashi; Biliana Marcheva; Hee-Kyung Hong; Jason L Chong; Ethan D Buhr; Choogon Lee; Joseph S Takahashi; Shin-Ichiro Imai; Joseph Bass
Journal:  Science       Date:  2009-03-19       Impact factor: 47.728

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  638 in total

1.  X-ray microscopy as an approach to increasing accuracy and efficiency of serial block-face imaging for correlated light and electron microscopy of biological specimens.

Authors:  Eric A Bushong; Donald D Johnson; Keun-Young Kim; Masako Terada; Megumi Hatori; Steven T Peltier; Satchidananda Panda; Arno Merkle; Mark H Ellisman
Journal:  Microsc Microanal       Date:  2014-11-13       Impact factor: 4.127

2.  Lifestyle Interventions Beyond Diet and Exercise for Patients With Nonalcoholic Fatty Liver Disease.

Authors:  James Philip Esteban; Amreen Dinani
Journal:  Gastroenterol Hepatol (N Y)       Date:  2020-03

3.  Of Mice and Men and Nonalcoholic Steatohepatitis.

Authors:  David A Brenner
Journal:  Hepatology       Date:  2018-11-13       Impact factor: 17.425

4.  Influence of dark phase restricted high fat feeding on myocardial adaptation in mice.

Authors:  Ju-Yun Tsai; Carolina Villegas-Montoya; Brandon B Boland; Zachary Blasier; Oluwaseun Egbejimi; Raquel Gonzalez; Michael Kueht; Tracy A McElfresh; Rachel A Brewer; Margaret P Chandler; Molly S Bray; Martin E Young
Journal:  J Mol Cell Cardiol       Date:  2012-09-29       Impact factor: 5.000

Review 5.  The circadian epigenome: how metabolism talks to chromatin remodeling.

Authors:  Lorena Aguilar-Arnal; Paolo Sassone-Corsi
Journal:  Curr Opin Cell Biol       Date:  2013-02-04       Impact factor: 8.382

6.  Nighttime light exposure enhances Rev-erbα-targeting microRNAs and contributes to hepatic steatosis.

Authors:  Patricia C Borck; Thiago M Batista; Jean F Vettorazzi; Gabriela M Soares; Camila Lubaczeuski; Dongyin Guan; Antonio C Boschero; Elaine Vieira; Mitchell A Lazar; Everardo M Carneiro
Journal:  Metabolism       Date:  2018-05-08       Impact factor: 8.694

7.  Early Time-Restricted Feeding Improves Insulin Sensitivity, Blood Pressure, and Oxidative Stress Even without Weight Loss in Men with Prediabetes.

Authors:  Elizabeth F Sutton; Robbie Beyl; Kate S Early; William T Cefalu; Eric Ravussin; Courtney M Peterson
Journal:  Cell Metab       Date:  2018-05-10       Impact factor: 27.287

8.  JARID1a Ablation in the Liver Alters Systemic Metabolism and Adaptation to Feeding.

Authors:  Kacee Ann DiTacchio; Diana Kalinowska; Anand Rajamani Saran; Ashley Byrne; Christopher Vollmers; Luciano DiTacchio
Journal:  Cell Rep       Date:  2020-05-26       Impact factor: 9.423

9.  Time-restricted feeding attenuates age-related cardiac decline in Drosophila.

Authors:  Shubhroz Gill; Hiep D Le; Girish C Melkani; Satchidananda Panda
Journal:  Science       Date:  2015-03-13       Impact factor: 47.728

Review 10.  Metabolic consequences of sleep and circadian disorders.

Authors:  Christopher M Depner; Ellen R Stothard; Kenneth P Wright
Journal:  Curr Diab Rep       Date:  2014-07       Impact factor: 4.810

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