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The Calm Mouse: An Animal Model of Stress Reduction

Identifieur interne : 000151 ( Hal/Curation ); précédent : 000150; suivant : 000152

The Calm Mouse: An Animal Model of Stress Reduction

Auteurs : Blake T. Gurfein [États-Unis] ; Andrew W. Stamm [États-Unis] ; Peter Bacchetti [États-Unis] ; Mary F. Dallman [États-Unis] ; Nachiket A. Nadkarni [France] ; Jeffrey M. Milush [États-Unis] ; Chadi Touma [Allemagne] ; Rupert Palme [Autriche] ; Charles Pozzo Di Borgo [France] ; Gilles Fromentin [France] ; Rachel Lown-Hecht [États-Unis] ; Jan Pieter Konsman [France] ; Michael Acree [États-Unis] ; Mary Premenko-Lanier [États-Unis] ; Nicolas Darcel [France] ; Frederick M. Hecht ; Douglas F. Nixon [États-Unis]

Source :

RBID : Hal:hal-01004211

Descripteurs français

Abstract

Chronic stress is associated with negative health outcomes and is linked with neuroendocrine changes, deleterious effects on innate and adaptive immunity, and central nervous system neuropathology. Although stress management is commonly advocated clinically, there is insufficient mechanistic understanding of how decreasing stress affects disease pathogenesis. Therefore, we have developed a "calm mouse model" with caging enhancements designed to reduce murine stress. Male BALB/c mice were divided into four groups: control (Cntl), standard caging; calm (Calm), large caging to reduce animal density, a cardboard nest box for shelter, paper nesting material to promote innate nesting behavior, and a polycarbonate tube to mimic tunneling; control exercise (Cntl Ex), standard caging with a running wheel, known to reduce stress; and calm exercise (Calm Ex), calm caging with a running wheel. Calm, Cntl Ex and Calm Ex animals exhibited significantly less corticosterone production than Cntl animals. We also observed changes in spleen mass, and in vitro splenocyte studies demonstrated that Calm Ex animals had innate and adaptive immune responses that were more sensitive to acute handling stress than those in Cntl. Calm animals gained greater body mass than Cntl, although they had similar food intake: and we also observed changes in body composition, using magnetic resonance imaging. Together, our results suggest that the Calm mouse model represents a promising approach to studying the biological effects of stress reduction in the context of health and in conjunction with existing disease models. Online address: http://www.molmed.org doi: 10.2119/molmed.2012.00053


Url:
DOI: 10.2119/molmed.2012.00053

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Hal:hal-01004211

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<title xml:lang="en">The Calm Mouse: An Animal Model of Stress Reduction</title>
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<idno type="DOI">10.2119/molmed.2012.00053</idno>
<series>
<title level="j">Molecular Medicine</title>
<idno type="ISSN">1076-1551</idno>
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<date type="datePub">2012</date>
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<keywords scheme="mix" xml:lang="fr">
<term>ACUTE PSYCHOLOGICAL STRESS</term>
<term>CANCER OUTPATIENTS</term>
<term>CORTICOSTERONE LEVELS</term>
<term>ENVIRONMENTAL ENRICHMENT</term>
<term>IMMUNE-RESPONSE</term>
<term>LEUKOCYTE TRAFFICKING</term>
<term>MALE-MICE</term>
<term>MINDFULNESS MEDITATION</term>
<term>RESTRAINT STRESS</term>
<term>TUMOR-GROWTH</term>
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<front>
<div type="abstract" xml:lang="en">
<p>Chronic stress is associated with negative health outcomes and is linked with neuroendocrine changes, deleterious effects on innate and adaptive immunity, and central nervous system neuropathology. Although stress management is commonly advocated clinically, there is insufficient mechanistic understanding of how decreasing stress affects disease pathogenesis. Therefore, we have developed a "calm mouse model" with caging enhancements designed to reduce murine stress. Male BALB/c mice were divided into four groups: control (Cntl), standard caging; calm (Calm), large caging to reduce animal density, a cardboard nest box for shelter, paper nesting material to promote innate nesting behavior, and a polycarbonate tube to mimic tunneling; control exercise (Cntl Ex), standard caging with a running wheel, known to reduce stress; and calm exercise (Calm Ex), calm caging with a running wheel. Calm, Cntl Ex and Calm Ex animals exhibited significantly less corticosterone production than Cntl animals. We also observed changes in spleen mass, and in vitro splenocyte studies demonstrated that Calm Ex animals had innate and adaptive immune responses that were more sensitive to acute handling stress than those in Cntl. Calm animals gained greater body mass than Cntl, although they had similar food intake: and we also observed changes in body composition, using magnetic resonance imaging. Together, our results suggest that the Calm mouse model represents a promising approach to studying the biological effects of stress reduction in the context of health and in conjunction with existing disease models. Online address: http://www.molmed.org doi: 10.2119/molmed.2012.00053</p>
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<textClass>
<keywords scheme="author">
<term xml:lang="fr">ACUTE PSYCHOLOGICAL STRESS</term>
<term xml:lang="fr">ENVIRONMENTAL ENRICHMENT</term>
<term xml:lang="fr">RESTRAINT STRESS</term>
<term xml:lang="fr">MINDFULNESS MEDITATION</term>
<term xml:lang="fr">LEUKOCYTE TRAFFICKING</term>
<term xml:lang="fr">CORTICOSTERONE LEVELS</term>
<term xml:lang="fr">CANCER OUTPATIENTS</term>
<term xml:lang="fr">IMMUNE-RESPONSE</term>
<term xml:lang="fr">TUMOR-GROWTH</term>
<term xml:lang="fr">MALE-MICE</term>
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<p>Chronic stress is associated with negative health outcomes and is linked with neuroendocrine changes, deleterious effects on innate and adaptive immunity, and central nervous system neuropathology. Although stress management is commonly advocated clinically, there is insufficient mechanistic understanding of how decreasing stress affects disease pathogenesis. Therefore, we have developed a "calm mouse model" with caging enhancements designed to reduce murine stress. Male BALB/c mice were divided into four groups: control (Cntl), standard caging; calm (Calm), large caging to reduce animal density, a cardboard nest box for shelter, paper nesting material to promote innate nesting behavior, and a polycarbonate tube to mimic tunneling; control exercise (Cntl Ex), standard caging with a running wheel, known to reduce stress; and calm exercise (Calm Ex), calm caging with a running wheel. Calm, Cntl Ex and Calm Ex animals exhibited significantly less corticosterone production than Cntl animals. We also observed changes in spleen mass, and in vitro splenocyte studies demonstrated that Calm Ex animals had innate and adaptive immune responses that were more sensitive to acute handling stress than those in Cntl. Calm animals gained greater body mass than Cntl, although they had similar food intake: and we also observed changes in body composition, using magnetic resonance imaging. Together, our results suggest that the Calm mouse model represents a promising approach to studying the biological effects of stress reduction in the context of health and in conjunction with existing disease models. Online address: http://www.molmed.org doi: 10.2119/molmed.2012.00053</p>
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