TopoDB: a novel multifunctional management system for laboratory animal colonies

Author:

Renschen Adam1,Matsunaga Atsuko1,Oksenberg Jorge R1,Santaniello Adam1,Didonna Alessandro1ORCID

Affiliation:

1. Weill Institute for Neurosciences, Department of Neurology, University of California San Francisco, San Francisco, CA 94158, USA

Abstract

Abstract Animal models are widely employed in basic research to test mechanistic hypotheses in a complex biological environment as well as to evaluate the therapeutic potential of candidate compounds in preclinical settings. Rodents, and in particular mice, represent the most common in vivo models for their small size, short lifespan and possibility to manipulate their genome. Over time, a typical laboratory will develop a substantial number of inbred strains and transgenic mouse lines, requiring a substantial effort, in both logistic and economic terms, to maintain an animal colony for research purposes and to safeguard the integrity of results. To meet this need, here we present TopoDB, a robust and extensible web-based platform for the rational management of laboratory animals. TopoDB allows an easy tracking of individual animals within the colony and breeding protocols as well as the convenient storage of both genetic and phenotypic data generated in the different experiments. Altogether, these features facilitate and enhance the design of in vivo research, thus reducing the number of necessary animals and the housing costs. In summary, TopoDB represents a novel valuable tool in modern biomedical research. Database URL: https://github.com/UCSF-MS-DCC/TopoDB

Funder

National Multiple Sclerosis Society

Fondazione Italiana Sclerosi Multipla

Publisher

Oxford University Press (OUP)

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology,Information Systems

Reference16 articles.

1. Animal Models in Biomedical Research

2. The mighty mouse: the impact of rodents on advances in biomedical research;Bryda;Mo. Med.,2013

3. Redefining mouse transgenesis with CRISPR/Cas9 genome editing technology;Burgio;Genome Biol.,2018

4. Generating mouse models for biomedical research: technological advances;Gurumurthy;Dis. Model Mech.,2019

5. Designing phenotyping studies for genetically engineered mice;Zeiss;Vet. Pathol.,2012

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