Literature DB >> 10860682

Twenty-four-hour profiles of serum leptin in siberian and golden hamsters: photoperiodic and diurnal variations.

T H Horton1, O M Buxton, S Losee-Olson, F W Turek.   

Abstract

Serum leptin concentrations were obtained from male Siberian hamsters (Phodopus sungorus) and golden hamsters (a.k.a. Syrian, Mesocricetus auratus) housed on long [light:dark (LD) 16:8] and short (LD 6:18) photoperiods for 10-11 weeks. Blood samples were collected at 45-min intervals for 24 h from individual animals using an in-dwelling atrial catheter. In Siberian hamsters, exposure to short photoperiods as compared to long photoperiods reduced body weight (32.5 +/- 1.5 vs 47.7 +/- 1.1 g) and leptin (24-h mean: 5.3 +/- 0.4 ng/ml vs 18.6 +/- 2.1 ng/ml). Although photoperiod influenced the temporal distribution of leptin in golden hamsters, the main effect of photoperiod on leptin levels in golden hamsters did not reach significance (24-h mean: 7.1 +/- 1.0 ng/ml vs 5.1 +/- 0.8 ng/ml.). Body weights of golden hamsters did not vary significantly following exposure to short photoperiod for 11 weeks (178.3 +/- 3.6 g in LD 6:18 vs 177.8 +/- 7.3 g in LD 16:8). There was no nocturnal increase in serum leptin in either species. Marked interindividual differences were apparent in individual leptin profiles. Periodogram analysis revealed that only a few animals exhibited 24-h periodicities; the presence of a significant 24-h periodicity was more common in hamsters exposed to short days. Photoperiod-associated differences in the 24-hour profile of leptin secretion may be the result of photoperiod-associated changes in feeding behavior or metabolism. A full understanding of the regulation of leptin secretion in multiple time domains may enhance our understanding of the function of leptin. Copyright 2000 Academic Press.

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Year:  2000        PMID: 10860682     DOI: 10.1006/hbeh.2000.1592

Source DB:  PubMed          Journal:  Horm Behav        ISSN: 0018-506X            Impact factor:   3.587


  8 in total

1.  Effects of photoperiod on daily locomotor activity, energy expenditure, and feeding behavior in a seasonal mammal.

Authors:  Amy Warner; Preeti H Jethwa; Catherine A Wyse; Helen I'anson; John M Brameld; Francis J P Ebling
Journal:  Am J Physiol Regul Integr Comp Physiol       Date:  2010-03-03       Impact factor: 3.619

2.  Body mass affects seasonal variation in sickness intensity in a seasonally breeding rodent.

Authors:  Elizabeth D Carlton; Gregory E Demas
Journal:  J Exp Biol       Date:  2015-04-07       Impact factor: 3.312

Review 3.  Influence of photoperiod on hormones, behavior, and immune function.

Authors:  James C Walton; Zachary M Weil; Randy J Nelson
Journal:  Front Neuroendocrinol       Date:  2010-12-13       Impact factor: 8.606

4.  Leptin mediates seasonal variation in some but not all symptoms of sickness in Siberian hamsters.

Authors:  Elizabeth D Carlton; Gregory E Demas
Journal:  Horm Behav       Date:  2014-11-14       Impact factor: 3.587

5.  Hormone changes indicate that winter is a critical period for food shortages in Steller sea lions.

Authors:  David A S Rosen; Saeko Kumagai
Journal:  J Comp Physiol B       Date:  2008-01-22       Impact factor: 2.200

6.  Body mass loss during adaptation to short winter-like days increases food foraging, but not food hoarding.

Authors:  Brett J W Teubner; Timothy J Bartness
Journal:  Physiol Behav       Date:  2009-02-15

7.  Food-anticipatory activity in Syrian hamsters: behavioral and molecular responses in the hypothalamus according to photoperiodic conditions.

Authors:  Rosana F Dantas-Ferreira; Stéphanie Dumont; Sylviane Gourmelen; José Cipolla-Neto; Valérie Simonneaux; Paul Pévet; Etienne Challet
Journal:  PLoS One       Date:  2015-05-13       Impact factor: 3.240

8.  Pineal melatonin is a circadian time-giver for leptin rhythm in Syrian hamsters.

Authors:  Ibtissam Chakir; Stéphanie Dumont; Paul Pévet; Ali Ouarour; Etienne Challet; Patrick Vuillez
Journal:  Front Neurosci       Date:  2015-05-27       Impact factor: 4.677

  8 in total

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