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BOR - Papers in Press, published online ahead of print November 19, 2003.
Biol Reprod 2003, 10.1095/biolreprod.103.023408
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BIOLOGY OF REPRODUCTION 70, 813–820 (2004)
DOI: 10.1095/biolreprod.103.023408
© 2004 by the Society for the Study of Reproduction, Inc.


Neuroendocrinology

Peripubertal Immune Challenges Attenuate Reproductive Development in Male Siberian Hamsters (Phodopus sungorus)1

Brian J. Prendergast3, Andrew K. Hotchkiss, Staci D. Bilbo4, and Randy J. Nelson2

Departments of Psychology and Neuroscience, The Ohio State University, Columbus, Ohio 43210

Differential allocation of energy to reproduction versus host defense is assumed to drive the seasonal antiphase relation between peak reproductive function and immunocompetence; however, evidence supporting this assumption is only correlational. These experiments tested whether photoperiod affects immune responses to antigens in peripubertal Siberian hamsters, whether such activation of the immune system exacts energetic and reproductive costs, and whether such costs vary seasonally. Male Siberian hamsters were raised from birth in long (LD) or short days (SD), which respectively initiate or inhibit the onset of puberty. To elicit a specific immune response, hamsters were injected with a novel antigen (keyhole limpet hemocyanin [KLH]) as juveniles. Reproductive development was attenuated and body temperature was elevated in LD hamsters relative to saline-injected control animals. In contrast, KLH treatments affected neither thermoregulation nor reproductive development in photoinhibited SD hamsters. In experiment 2, juvenile male hamsters were challenged with bacterial lipopolysaccharide (LPS) in order to elicit an innate immune response. Febrile and anorexic responses to LPS were greater in reproductively stimulated LD hamsters relative to reproductively inhibited SD hamsters. LPS treatments attenuated somatic and testicular development in LD hamsters, but did not significantly affect circulating testosterone concentrations. In contrast, LPS treatments were without effect on somatic and reproductive development in SD hamsters. These experiments indicate that photoperiod affects antigen-specific antibody production, febrile responses to LPS, and sickness behaviors in juvenile Siberian hamsters, and that peripubertal activation of the immune system exacts energetic and metabolic costs that can diminish the magnitude of somatic and reproductive maturation in LD. The data also underscore the importance of seasonally dependent life history factors in assessing physiological tradeoffs.

1 Supported by NIH NRSA MH 12875, NIH grant MH 57535, NIH grant MH 66144, and NSF grant IBN 00-0854.

2 Correspondence: Randy J. Nelson. FAX: 614 451 3116; rnelson{at}osu.edu

3 Current address: Department of Psychology, University of Chicago, Institute for Mind and Biology, 940 East 57th Street, Chicago, IL 60637

4 Current address: Department of Psychology, University of Colorado, Boulder, CO 80309




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