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Lab Anim ; 43(4): 362-70, 2009 Oct.
Article in English | MEDLINE | ID: mdl-19535393

ABSTRACT

As recommendations for specific pathogen-free housing change, mouse facilities need to re-derive their colonies repeatedly in order to eliminate specified bacteria or viruses. This paper describes the establishment of a new mouse facility using as starting point a small colony of CD-1 mice colonized with the Charles River altered Schaedler flora (CRASF) housed in individually ventilated cages (IVCs). The import of new strains was performed exclusively via embryo transfer using CD-1 mice as recipients. The integrity of the CRASF in caecum samples of the original CD-1 colony and of three inbred mouse lines imported into the colony was proven by a quantitative realtime polymerase chain reaction approach. Furthermore, we searched for bacterial contaminants in the gut flora using non-specific 16S rRNA primers. The bacterial sequences found were closely related to but not exclusively sequences of altered Schaedler flora (ASF) members, suggesting that the ASF is heterogeneous rather than restricted to the eight defined bacteria. Moreover, no pathogens were found, neither using the non-specific 16S rRNA primers nor in routine quarterly health monitoring. As one effect of this defined gut flora, interleukin-10 knockout mice are devoid of colitis in our facility. In conclusion, our approach building up a mouse facility using foster mothers and embryo transfer as well as a strict barrier system and IVCs is suitable to maintain a colony free from contaminating bacteria over the long term. CRASF remained stable for seven mouse generations and was efficiently transferred to the imported mouse strains.


Subject(s)
Bacteria/classification , Environmental Monitoring/methods , Housing, Animal , Specific Pathogen-Free Organisms , Animals , Bacteria/genetics , Bacteria/growth & development , Cecum/microbiology , Embryo Transfer , Feces/microbiology , Genes, rRNA , Mice , Mice, Inbred Strains , Phylogeny , RNA, Ribosomal, 16S/genetics , Reverse Transcriptase Polymerase Chain Reaction , Sequence Analysis, RNA
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