动物模型与实验医学(英文)2024,Vol.7Issue(4) :553-561.DOI:10.1002/ame2.12460

An ethically guided preclinical device for phenotyping H2 production in laboratory rodents

Victor Pascal-Moussellard Emilie Boucher Stéphane Tanguy Philippe Cinquin Pierre-Alain Barraud Chloé Davin Cordélia Salomez-Ihl Dalil Hannani François Boucher Jean-Pierre Alcaraz
动物模型与实验医学(英文)2024,Vol.7Issue(4) :553-561.DOI:10.1002/ame2.12460

An ethically guided preclinical device for phenotyping H2 production in laboratory rodents

Victor Pascal-Moussellard 1Emilie Boucher 1Stéphane Tanguy 1Philippe Cinquin 1Pierre-Alain Barraud 1Chloé Davin 1Cordélia Salomez-Ihl 1Dalil Hannani 1François Boucher 1Jean-Pierre Alcaraz1
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作者信息

  • 1. University Grenoble Alpes,CNRS,UMR 5525,VetAgro Sup,Grenoble INP,TIMC,Grenoble,France
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Abstract

Background:Dihydrogen (H2 ) is produced endogenously by the intestinal microbiota through the fermentation of diet carbohydrates.Over the past few years,numer-ous studies have demonstrated the significant therapeutic potential of H2 in various pathophysiological contexts,making the characterization of its production in labora-tory species of major preclinical importance.Methods:This study proposes an innovative solution to accurately monitor H2 pro-duction in free-moving rodents while respecting animal welfare standards.The devel-oped device consisted of a wire rodent cage placed inside an airtight chamber in which the air quality was maintained,and the H2 concentration was continuously analyzed.After the airtightness and efficiency of the systems used to control and maintain air quality in the chamber were checked,tests were carried out on rats and mice with different metabolic phenotypes,over 12 min to 1-h experiments and repeatedly.H2 production rates (HPR) were obtained using an easy calculation algorithm based on a first-order moving average.Results:HPR in hyperphagic Zucker rats was found to be twice as high as in control Wistar rats,respectively,2.64 and 1.27 nmol.s-1 per animal.In addition,the ingestion of inulin,a dietary fiber,stimulated H2 production in mice.HPRs were 0.46 nmol.s-1 for animals under control diet and 1.99 nmol.s-1 for animals under inulin diet.Conclusions:The proposed device coupled with our algorithm enables fine analysis of the metabolic phenotype of laboratory rats or mice with regard to their endogenous H2 production.

Key words

hydrogen therapy/laboratory rodents/microbiota/molecular hydrogen/noninvasive monitoring device

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基金项目

Université Grenoble Alpes through the Cross Disciplinary Program(CDTools)()

出版年

2024
动物模型与实验医学(英文)
中国实验动物学会,中国医学科学院医学实验动物研究所

动物模型与实验医学(英文)

ISSN:2096-5451
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