Publication Cover
Chronobiology International
The Journal of Biological and Medical Rhythm Research
Volume 26, 2009 - Issue 7
345
Views
27
CrossRef citations to date
0
Altmetric
Research Papers

RESTRICTED FEEDING ENTRAINS RHYTHMS OF INFLAMMATION-RELATED FACTORS WITHOUT PROMOTING AN ACUTE-PHASE RESPONSE

, &
Pages 1409-1429 | Received 12 Mar 2009, Accepted 08 Jun 2009, Published online: 16 Nov 2009

REFERENCES

  • Aceves C, Escobar C, Rojas-Huidobro R, Vázquez-Martínez O, Martínez-Merlos T, Aguilar-Roblero R, Díaz-Muñoz M. (2003). Liver 5′-deiodinase activity is modified in rats under restricted feeding schedules: Evidence for post-translational regulation. J. Endocrinol. 179: 91–96.
  • Aguilar-Delfín I, López-Barrera F, Hernández-Muñoz R. (1996). Selective enhancement of lipid peroxidation in plasma membrane in two experimental models of liver regeneration: Partial hepatectomy and acute CCl4 administration. Hepatology 24: 657–662.
  • Ángeles-Castellanos M, Mendoza J, Díaz-Muñoz M, Escobar C. (2005). Food entrainment modifies the c-Fos-expression pattern of brain stem nuclei of rats. Am. J. Physiol. Regul. Integr. Comp. Physiol. 57: R678–R684.
  • Báez-Ruiz A, Escobar C, Aguilar-Roblero R, Vázquez-Martínez O, Díaz-Muñoz M. (2000). Metabolic adaptation of liver mitochondria during restricted feeding schedules. Am. J. Physiol. Gastrointest. Liver Physiol. 289: G1015–G1023.
  • Bengmark S. (2004). Acute and “chronic” phase reaction—a mother of disease. Clin. Nutr. 23: 1256–1266.
  • Black PH. (2006). The inflammatory consequences of psychologic stress: Relationship to insulin resistance, obesity, atherosclerosis and diabetes mellitus, type II. Med. Hypotheses 67: 879–891.
  • Brasier AR. (2006). The NF-kappaB regulatory network. Cardiovasc. Toxicol. 6: 111–130.
  • Brindley DN. (1995). Role of glucocorticoids and fatty acids in the impairment of lipid metabolism observed in the metabolic syndrome. Int. J. Obes. Relat. Metab. Disord. 19: 569–575.
  • Buchanan JB, Johnson RW. (2007). Regulation of food intake by inflammatory cytokines in the brain. Neuroendocrinology 86: 183–190.
  • Chilov D, Hofer T, Bauer C, Wenger R, Gassmann M. (2001). Hypoxia affects expression of circadian genes PER1 and CLOCK in mouse brain. FASEB J. 15: 2613–2622.
  • Coogan AN, Wyse CA. (2008). Neuroimmunology of the circadian clock. Brain Res. 1232: 104–112.
  • Corcos M, Guilbaud O, Paterniti S, Chambry J, Chaouat G, Consoli SM, Jeammet P. (2003). Involvement of cytokines in eating disorders: A critical review of the human literature. Psychoneuroendocrinology 28: 229–249.
  • Dardente H, Cermakian N. (2007). Review: Molecular circadian rhythms in central and peripheral clocks in mammals. Chronobiol. Int. 24: 195–213.
  • Davidson AJ. (2006). Search for the feeding-entrainable circadian oscillator: A complex proposition. Am. J. Physiol. Regul. Integr. Comp. Physiol. 290: R1524–R1526.
  • Díaz-Muñoz M, Vázquez-Martínez O, Aguilar-Roblero R, Escobar C. (2000). Anticipatory changes in liver metabolism and entrainment of insulin, glucagon, and corticosterone in food-restricted rats. Am. J. Physiol. Regul. Integr. Comp. Physiol. 279: R2048–R2056.
  • Guo H, Mckinley Brewer J, Lehman NM, Bittman EL. (2006). Suprachiasmatic regulation of circadian rhythms of gene expression in hamster peripheral organs: Effect of transplanting the pacemaker. J. Neurosci. 26: 6406–6412.
  • Hayashi M, Shimba S, Tezuka M. (2007). Characterization of the molecular clock in mouse peritoneal macrophages. Biol. Pharm. Bull. 30: 621–626.
  • Karten YJG, Nair SM, Van Essen L, Sibug R, Joels M. (1999). Long-term exposure to high corticosterone levels attenuates serotonin responses in rat hippocampal CA1 neurons. Proc. Natl. Acad. Sci. USA 96: 13456–13461.
  • Khan SS, Smith MS, Reda D, Suffredini AF, McCoy JP. (2004). Multiplex bead array assays for detection of soluble cytokines: Comparisons of sensitivity and quantitative values among kits from multiple manufacturers. Cytometry B Clin. Cytom. 61: 35–39.
  • Kitoh Y, Ohmori M, Akari N, Miyashita F, Ando H, Kobayashi E, Sogawa N, Fujimura A. (2005). Dosing-time-dependent differences in lipopolysaccharide-induced liver injury in rats. Chronobiol. Int. 22: 987–996.
  • Krueger JM, Obál FJ, Fang J, Kubota T, Taishi P. (2001). The role of cytokines in physiological sleep regulation. Ann. NY Acad. Sci. 933: 211–221.
  • Lo Sauro C, Rivaldi C, Cabras PL, Faravelli C, Ricca V. (2008). Stress, hypothalamic-pituitary-adrenal axis and eating disorders. Neuropsychobiology 57: 95–115.
  • Lowry OH, Rosebrough NJ, Farr AL, Randall RJ. (1951). Protein measurement with the Folin phenol reagent. J. Biol. Chem. 193: 265–275.
  • Luna M, Rodríguez-Méndez AJ, Berumen L, Carranza M, Riesgo-Escovar J, Baudet ML, Harvey S, Arámburo C. (2008). Immume growth hormone (GH): Localization of GH and GH mRNA in the bursa of Fabricius. Dev. Comp. Immunol. 32: 1313–1325.
  • Luna-Moreno D, Vázquez-Martínez O, Báez-Ruiz A, Ramírez J, Díaz-Muñoz M. (2006). Food restricted schedules promote differential lipoperoxidative activity in rat hepatic subcellular fractions. Comp. Biochem. Physiol. A Mol. Integr. Physiol. 146: 632–643.
  • Madsen JL, Sondergaard SB, Moller S. (2006). Meal-induced changes in splanchnic blood flow and oxygen uptake in middle-aged healthy humans. Scand. J. Gastroenterol. 41: 87–92.
  • Marchant EG, Mistlberger RE. (1997). Anticipation and entrainment to feeding time in intact and SCN-ablated C57BL/6j mice. Brain Res. 765: 273–282.
  • Marpegan L, Bekinschtein TA, Freudenthal R, Rubio MF, Ferreyra GA, Romano A, Golombek DA. (2004). Participation of transcription factors from the Rel/NF-kappaB family in the circadian system in hamsters. Neurosci. Lett. 358: 9–12.
  • Marshall L, Born J. (2002). Brain-immune interactions in sleep. Int. Rev. Neurobiol. 52: 93–131.
  • Martínez-Merlos T, Angeles-Castellanos M, Díaz-Muñoz M, Aguilar-Roblero R, Mendoza J, Escobar C. (2004). Dissociation between adipose tissue signals, behavior and the food-entrained oscillator. J. Endocrinol. 181: 53–63.
  • Matsuki T, Horai R, Sudo K, Iwakura Y. (2003). IL-1 plays an important role in lipid metabolism by regulating insulin levels under physiological conditions. J. Exp. Med. 198: 877–888.
  • McMillan DC, Slater C, Preston T, Falconer JS, Fearon KCH. (1996). Simultaneous measurement of albumin and fibrinogen synthesis rates in normal fasted subjects. Nutrition 12: 602–607.
  • Mendoza J. (2007). Circadian clocks: Setting time by food. J. Neuroendocrinol 19: 127–137.
  • Mistlberger RE. (1994). Circadian food-anticipatory activity: Formal models and physiological mechanisms. Neurosci. Biobehav. Rev. 18: 171–195.
  • Moshage H. (1997). Cytokines and the hepatic acute phase response. J. Pathol. 181: 257–266.
  • Petrovsky N, Harrison LC. (1998). The chronobiology of human cytokine production. Int. Rev. Immunol. 16: 635–649.
  • Plata-Salamán CR. (2001). Cytokines and feeding. Int. J. Obes. Relat. Metab. Disord. 25: S48–S52.
  • Portaluppi F, Touitou Y, Smolensky MH. (2008). Ethical and methodological standards for laboratory and medical biological rhythm research. Chronobiol. Int. 25: 999–1016.
  • Ralph MR, Foster RG, Davis FC, Menaker M. (1990). Transplanted suprachiasmatic nucleus determines circadian period. Science 247: 975–978.
  • Reiners JJ, Busch H. (1980). Transcriptional and posttranscriptional modulation of cytoplasmic ribonucleic acids in regenerating liver and Novikoff hepatoma. Biochemistry 19: 833–841.
  • Rossi FM, Kringstein AM, Spicher A, Guicherit OM, Blau HM. (2000). Transcriptional control: Rheostat converted to on/off switch. Mol. Cell. 6: 723–728.
  • Rumley A, Woodward M, Hoffmeister A, Koenig W, Lowe GD. (2003). Comparison of plasma fibrinogen by Clauss, prothrombin time-derived, and immunonephelometric assays in a general population: Implications for risk stratification by thirds of fibrinogen. Blood Coagul. Fibrinolysis. 14: 197–201.
  • Sakao E, Ishihara A, Horikawa K, Akiyama M, Arai M, Kato M, Seki N, Fukunaga K, Shimizu-Yabe A, Iwase K, Ohtsuka S, Sato T, Kohno Y, Shibata S, Takiguchi M. (2003). Two-peaked synchronization in day/night expression rhythms of the fibrinogen gene cluster in the mouse liver. J. Biol. Chem. 278: 30450–30457.
  • Senju O, Takagi Y, Uzawa R, Iwasaki Y, Suzuki T, Gomi K, Ishii T. (1986). A new immuno quantitative method by latex agglutination-application for the determination of serum C-reactive protein (CRP) and its clinical significance. J. Clin. Lab. Immunol. 19: 99–103.
  • Sillitoe K, Horton C, Spiller DG, White MR. (2007). Single-cell time-lapse imaging of the dynamic control of NF-kappaB signaling. Biochem. Soc. Trans. 35: 263–266.
  • Stephan FK. (1997). Calories affect zeitgeber properties of the feeding entrained circadian oscillator. Physiol. Behav. 62: 995–1002.
  • Stephan FK. (2002). The “other” circadian system: Food as a zeitgeber. J. Biol. Rhythms 17: 284–292.
  • Stokkan KA, Yamazaki S, Tei H, Sakaki Y, Menaker M. (2001). Entrainment of the circadian clock in the liver by feeding. Science 291: 490–493.
  • Tsigos C, Chrousos GP. (2002). Hypothalamic-pituitary-adrenal axis, neuroendocrine factors and stress. J. Psychosom. Res. 53: 865–871.
  • Yates LL, Górecki DC. (2006). The nuclear factor-kappaB (NF-kappaB): From a versatile transcription factor to a ubiquitous therapeutic target. Acta Biochim. Pol. 53: 651–652.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.