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Chronobiology International
The Journal of Biological and Medical Rhythm Research
Volume 26, 2009 - Issue 8
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Research Papers

PLASMA LEVELS OF INTERFERON-γ CORRELATE WITH AGE-RELATED DISTURBANCES OF CIRCADIAN RHYTHMS AND SURVIVAL IN A NON-HUMAN PRIMATE

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Pages 1587-1601 | Received 11 May 2009, Accepted 21 Jul 2009, Published online: 23 Dec 2009

REFERENCES

  • Asai M, Yoshinobu Y, Kaneko S, Mori A, Nikaido T, Moriya T, Akiyama M, Shibata S. (2001). Circadian profile of Per gene mRNA expression in the suprachiasmatic nucleus, paraventricular nucleus, and pineal body of aged rats. J. Neurosci. Res. 66:1133–1139.
  • Aujard F, Perret M. (1998). Age-related effects on reproductive function and sexual competition in the male prosimian primate, Microcebus murinus. Physiol. Behav. 64:513–519.
  • Aujard F, Herzog ED, Block GD. (2001). Circadian rhythms in firing rate of individual suprachiasmatic nucleus neurons from adult and middle-aged mice. Neuroscience 106:255–261.
  • Aujard F, Cayetanot F, Bentivoglio M, Perret M. (2006) Age-related effects on the biological clock and its behavioral output in a primate. Chronobiol. Int. 23:451–460.
  • Aujard F, Cayetanot F, Terrien J, Van Someren EJ. (2007). Attenuated effect of increased daylength on activity rhythm in the old mouse lemur, a non-human primate. Exp. Gerontol. 42:1079–1087.
  • Baulieu E-E, Thomas G, Legrain S, Lalhou N, Roger M, Debuire B, Faucounau V, Girard L, Hervy M-P, Latour F, Leaud MC, Mokrane A, Pitti-Ferrendi H, Trivalle C, Lacharrière O, Nouveau S, Rakoto-Arison B, Souberbielle JC, Raison J, LeBouc Y, Raynaud A, Girerd X, Forette F. (2000). Dehydroepiandrosterone (DHEA), DHEA sulfate and aging: Contribution of the DHEA age study to a sociobiomedical issue. Proc. Nat. Acad. Sci. USA 97:4279–4284.
  • Beltran WA, Vanore M, Ollivet F, Nemoz-Bertholet F, Aujard F, Clerc B, Chahory S. (2007). Ocular findings in two colonies of gray mouse lemurs (Microcebus murinus). Vet. Ophthalmol. 10:43–49.
  • Bentivoglio M, Deng XH, Nygård M, Sadki A, Kristensson K. (2006). The aging suprachiasmatic nucleus and cytokines: Functional, molecular, and cellular changes in rodents. Chronobiol. Int. 23:437–449.
  • Blasko I, Ransmayr G, Veerhuis R, Eikelenboom P, Grubeck-Loebenstein B. (2001). Does IFN-γ play a role in neurodegeneration? J. Neuroimmunol. 116:1–4.
  • Boggio VI, Castrillon PO, Perez Lioret S, Riccio P, Esquifino AI, Cardinali DP, Cutrera RA. (2003). Cerebroventricular administration of interferon-gamma modifies locomotor activity in the golden hamster. Neurosignals 12:89–94.
  • Brüünsgaard H, Pedersen BK. (2003). Age-related inflammatory cytokines and disease. Immunol. Allergy Clin. North Am. 23:15–39.
  • Brüünsgaard H, Pedersen M, Pedersen BK. (2001). Aging and proinflammatory cytokines. Curr. Opin. Hematol. 8:131–136.
  • Brüünsgaard H, Andersen-Ranberg K, Hjelmborg JB, Pedersen BK, Jeune B. (2003). Elevated levels of tumor necrosis factor alpha and mortality in centenarians. Am. J. Med. 115:278–283.
  • Cayetanot F, Van Someren EJ, Perret M, Aujard F. (2005). Shortened seasonal photoperiodic cycles accelerate aging of the diurnal and circadian locomotor activity rhythms in a primate. J. Biol. Rhythms 20:461–469.
  • Ferrari E, Cravello L, Falvo F, Barili L, Solerte SB, Fioravanti M, Magri F. (2008). Neuroendocrine features in extreme longevity. Exp. Gerontol. 43:88–94.
  • Godbout JP, Chen J, Abraham J, Richwine AF, Berg BM, Kelley KW, Johnson RW. (2005). Exaggerated neuroinflammation and sickness behavior in aged mice following activation of the peripheral innate immune system. FASEB J. 19:1329–1331.
  • Gubin DG, Gubin GD, Waterhouse J, Weinert D. (2006). The circadian body temperature rhythm in the elderly: Effect of single daily melatonin dosing. Chronobiol. Int. 23:639–658.
  • Huang YL, Liu RY, Wang QS, Van Someren EJW, Xu H, Zhou JN. (2002). Age associated difference in circadian sleep-wake and rest-activity rhythms. Physiol. Behav. 76:597–603.
  • Hurd MW, Ralph MR. (1998). The significance of circadian organization for longevity in the golden hamster. J. Biol. Rhythms 13:430–436.
  • Kawakami F, Okamura H, Tamada Y, Maebayashi Y, Fukui K, Ibata Y. (1997). Loss of day-night in VIP mRNA levels in the suprachiasmatic nucleus of aged rats. Neurosci. Lett. 222:99–102.
  • Kolker DE, Vitaterna MH, Fruechte EM, Takahashi JS, Turek FW. (2003). Effects of age on circadian rhythms are similar in wild-type and heterozygous clock mutant mice. Neurobiol. Aging 25:517–523.
  • Kubota T, Majde JA, Brown RA, Krueger JM. (2001). Tumor necrosis factor receptor fragment attenuates interferon-γ-induced non-REM sleep in rabbits. J. Immunol. 119:192–198.
  • Kwak Y, Lundkvist GB, Brask J, Davidson A, Menaker M, Kristensson K, Block GD. (2008). Interferon-gamma alters electrical activity and clock gene expression in suprachiasmatic nucleus neurons. J. Biol. Rhythms 23:150–159.
  • Lundkvist GB, Robertson B, Mhanga JDM, Rottenberg ME, Kristensson K. (1998). Expression of an interferon-γ receptor in the suprachiasmatic nuclei. Neuroreport 9:1059–1063.
  • Morimoto A, Murakami N, Takyada M, Teshirogi S, Watanabe T. (1987). Fever and acute phase response induced in rabbits by human recombinant interferon-γ. J. Physiol. 391:209–218.
  • Némoz-Bertholet F, Aujard F. (2003). Physical activity and balance performance as a function of age in a prosimian primate (Microcebus murinus). Exp. Gerontol. 38:407–414.
  • Nikolich-Zugich J. (2005). T cell aging: Naive but not young. J. Exp. Med. 201:837–840.
  • Ohdo S, Koyanagi S, Suyama S, Hiquchi S, Aramaki H. (2001). Changing the dosing schedule minimizes the disruptive effects of interferon on clock function. Nat. Med. 7:356–360.
  • Oosterman JM, van Someren EJ, Vogels RL, Van Harten B, Scherder EJ. (2009). Fragmentation of the rest-activity rhythm correlates with age-related cognitive deficits. J. Sleep Res. 18:129–135.
  • Palomba M, Bentivoglio M. (2008). Chronic inflammation affects the photic response of the suprachiasmatic nucleus. J. Neuroimmunol. 193:24–27.
  • Perret M, Aujard F. (2005). Aging and season affect plasma dehydroepiandrosterone sulfate (DHEA-S) levels in a primate. Exp. Gerontol. 40:582–587.
  • Portaluppi F, Touitou Y, Smolensky MH. (2008). Ethical and methodological standards for laboratory and medical biological rhythm research. Chronobiol. Int. 25:999–1016.
  • Reuben DB, Cheh AI, Harris TB, Ferrucci L, Rowe JW, Tracy RP, Seeman TE. (2002). Peripheral blood markers of inflammation predict mortality and functional decline in high functioning community-dwelling older persons. J. Am. Geriatr. Soc. 50:638–644.
  • Robertson B, Kong G-Y, Peng Z-C, Bentivoglio M, Kristensson K. (2000). Interferon-γ-responsive neuronal sites in the normal rat brain: Receptor protein distribution and cell activation revealed by Fos induction. Brain Res. Bull. 52:61–74.
  • Sadki A, Bentivoglio M, Kristensson K, Nygård M. (2007). Suppressors, receptors and effects of biological clock. Neurobiol. Aging 28:296–305.
  • Satinoff E, Li H, Tcheng TK, Liu C, McArthur AJ, Medanic M, Gillette MU. (1993). Do the suprachiasmatic nuclei oscillate in old rats as they do in young ones? Am. J. Physiol. 265:R1216–R1222.
  • Stichel CC, Luebbert H. (2007). Inflammatory processes in the aging mouse brain: Participation of dendritic cells and T-cells. Neurobiol. Aging 28:1507–1521.
  • Tannenbaum C, Barrett-Connor E, Laughlin GA, Platt RW. (2004). A longitudinal study of dehydroepiandrosterone sulphate (DHEAS) change in older men and women: The Rancho Bernardo Study. Eur. J. Endocrinol. 151:717–725.
  • Terrien J, Zizzari P, Epelbaum J, Perret M, Aujard F. (2009). Daily rhythms of core temperature and locomotor activity indicate different adaptive strategies to cold exposure in adult and aged mouse lemurs acclimated to a summer-like photoperiod. Chronobiol. Int. 26:1–16.
  • Turek FW, Penev P, Zhang Y, van Reeth O, Zee P. (1995). Effects of age on the circadian system. Neurosci. Biobehav. Rev. 19:53–58.
  • Watanabe A, Shibata S, Watanabe S. (1995). Circadian rhythm of spontaneous neuronal activity in the suprachiasmatic nucleus of old hamster in vitro. Brain Res. 695:237–239.
  • Winocur G, Hasher L. (1999). Aging and time of day effects on cognition in rats. Behav. Neurosci. 113:991–997.
  • Zanni F, Vescovini R, Biasini C, Fagnonib F, Zanlaria L, Teleraa A, Di Pedea P, Passeria G, Pedrazzonia M, Passeria M, Franceschic C, Sansoni P. (2003). Marked increase with age of type 1 cytokines within memory and effector/cytotoxic CD8+ T cells in humans: A contribution to understand the relationship between inflammation and immunosenescence. Exp. Gerontol. 38:981–987.

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