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Long-term effects of husbandry procedures on stress-related parameters in male mice of two strains
Author(s) -
P. L. P. Van Loo,
E. van der Meer,
Cas Kruitwagen,
Jaap M. Koolhaas,
L.F.M. van Zutphen,
Vera Baumans
Publication year - 2004
Publication title -
laboratory animals
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.62
H-Index - 63
eISSN - 1758-1117
pISSN - 0023-6772
DOI - 10.1258/002367704322968858
Subject(s) - cage , corticosterone , animal husbandry , zoology , biology , body weight , endocrinology , spleen , physiology , animal welfare , chronic stress , medicine , ecology , mathematics , combinatorics , hormone , agriculture
In socially unstable groups of male laboratory mice, individuals may experience a chronic stress situation. Previous experiments have shown that the transfer of specific olfactory cues during cage cleaning, and the provision of nesting material decrease aggression and stress in group-housed male mice. In this study, the combined effect of these husbandry procedures were tested for their long-term effect on stress in groups of moderately aggressive (BALB/c) and severely aggressive (CD-1) male mice. The physiological and behavioural stress-related parameters used were body weight, food and water intake, spleen and thymus weight, adrenal tyrosine hydroxylase activity, urine corticosterone levels and behaviour in a cage emergence test. Long-term provision of nesting material and its transfer during cage cleaning was found to influence several stress-related physiological parameters. Mice housed in cages enriched with nesting material had lower urine corticosterone levels and heavier thymuses, and they consumed less food and water than standard-housed mice. Furthermore, marked differences were found between strains. CD-1 mice were less anxious in the cage emergence test, weighed more, ate and drank more, and had heavier thymuses but lighter spleens and lower corticosterone levels than BALB/c mice. We conclude that the long-term provision of nesting material, including the transfer of nesting material during cage cleaning, reduces stress and thereby enhances the welfare of laboratory mice.

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