Literature DB >> 19199957

The German Mouse Clinic: a platform for systemic phenotype analysis of mouse models.

H Fuchs1, V Gailus-Durner, T Adler, J A Aguilar Pimentel, L Becker, I Bolle, M Brielmeier, J Calzada-Wack, C Dalke, N Ehrhardt, N Fasnacht, B Ferwagner, U Frischmann, W Hans, S M Hölter, G Hölzlwimmer, M Horsch, A Javaheri, M Kallnik, E Kling, C Lengger, H Maier, I Mossbrugger, C Mörth, B Naton, U Nöth, B Pasche, C Prehn, G Przemeck, O Puk, I Racz, B Rathkolb, J Rozman, K Schäble, R Schreiner, A Schrewe, C Sina, R Steinkamp, F Thiele, M Willershäuser, R Zeh, J Adamski, D H Busch, J Beckers, H Behrendt, H Daniel, I Esposito, J Favor, J Graw, G Heldmaier, H Höfler, B Ivandic, H Katus, M Klingenspor, T Klopstock, A Lengeling, M Mempel, W Müller, S Neschen, M Ollert, L Quintanilla-Martinez, P Rosenstiel, J Schmidt, S Schreiber, K Schughart, H Schulz, E Wolf, W Wurst, A Zimmer, M Hrabé de Angelis.   

Abstract

The German Mouse Clinic (GMC) is a large scale phenotyping center where mouse mutant lines are analyzed in a standardized and comprehensive way. The result is an almost complete picture of the phenotype of a mouse mutant line--a systemic view. At the GMC, expert scientists from various fields of mouse research work in close cooperation with clinicians side by side at one location. The phenotype screens comprise the following areas: allergy, behavior, clinical chemistry, cardiovascular analyses, dysmorphology, bone and cartilage, energy metabolism, eye and vision, host-pathogen interactions, immunology, lung function, molecular phenotyping, neurology, nociception, steroid metabolism, and pathology. The German Mouse Clinic is an open access platform that offers a collaboration-based phenotyping to the scientific community (www.mouseclinic.de). More than 80 mutant lines have been analyzed in a primary screen for 320 parameters, and for 95% of the mutant lines we have found new or additional phenotypes that were not associated with the mouse line before. Our data contributed to the association of mutant mouse lines to the corresponding human disease. In addition, the systemic phenotype analysis accounts for pleiotropic gene functions and refines previous phenotypic characterizations. This is an important basis for the analysis of underlying disease mechanisms. We are currently setting up a platform that will include environmental challenge tests to decipher genome-environmental interactions in the areas nutrition, exercise, air, stress and infection with different standardized experiments. This will help us to identify genetic predispositions as susceptibility factors for environmental influences.

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Year:  2009        PMID: 19199957     DOI: 10.2174/138920109787315051

Source DB:  PubMed          Journal:  Curr Pharm Biotechnol        ISSN: 1389-2010            Impact factor:   2.837


  23 in total

1.  Pheno-Pub: a total support system for the publication of mouse phenotypic data on the web.

Authors:  Tomohiro Suzuki; Tamio Furuse; Ikuko Yamada; Hiromi Motegi; Yasuyo Kozawa; Hiroshi Masuya; Shigeharu Wakana
Journal:  Mamm Genome       Date:  2013-11-13       Impact factor: 2.957

2.  Measuring bone blood supply in mice using fluorescent microspheres.

Authors:  Maria A Serrat
Journal:  Nat Protoc       Date:  2009-11-05       Impact factor: 13.491

Review 3.  Mouse genetic and phenotypic resources for human genetics.

Authors:  Paul N Schofield; Robert Hoehndorf; Georgios V Gkoutos
Journal:  Hum Mutat       Date:  2012-05       Impact factor: 4.878

4.  High mobility group N proteins modulate the fidelity of the cellular transcriptional profile in a tissue- and variant-specific manner.

Authors:  Jamie E Kugler; Marion Horsch; Di Huang; Takashi Furusawa; Mark Rochman; Lillian Garrett; Lore Becker; Alexander Bohla; Sabine M Hölter; Cornelia Prehn; Birgit Rathkolb; Ildikó Racz; Juan Antonio Aguilar-Pimentel; Thure Adler; Jerzy Adamski; Johannes Beckers; Dirk H Busch; Oliver Eickelberg; Thomas Klopstock; Markus Ollert; Tobias Stöger; Eckhard Wolf; Wolfgang Wurst; Ali Önder Yildirim; Andreas Zimmer; Valérie Gailus-Durner; Helmut Fuchs; Martin Hrabě de Angelis; Benny Garfinkel; Joseph Orly; Ivan Ovcharenko; Michael Bustin
Journal:  J Biol Chem       Date:  2013-04-24       Impact factor: 5.157

5.  The benefits and limitations of animal models for translational research in neurodegenerative diseases.

Authors:  Mathias Jucker
Journal:  Nat Med       Date:  2010-09-21       Impact factor: 53.440

6.  The Role of Fibroblast Growth Factor-Binding Protein 1 in Skin Carcinogenesis and Inflammation.

Authors:  Marcel Oliver Schmidt; Khalid Ammar Garman; Yong Gu Lee; Chong Zuo; Patrick James Beck; Mingjun Tan; Juan Antonio Aguilar-Pimentel; Markus Ollert; Carsten Schmidt-Weber; Helmut Fuchs; Valerie Gailus-Durner; Martin Hrabe de Angelis; Elena Tassi; Anna Tate Riegel; Anton Wellstein
Journal:  J Invest Dermatol       Date:  2017-08-31       Impact factor: 8.551

7.  Temperature alters solute transport in growth plate cartilage measured by in vivo multiphoton microscopy.

Authors:  Maria A Serrat; Rebecca M Williams; Cornelia E Farnum
Journal:  J Appl Physiol (1985)       Date:  2009-04-16

8.  Clinical Chemistry Reference Intervals for C57BL/6J, C57BL/6N, and C3HeB/FeJ Mice (Mus musculus).

Authors:  Gordon P Otto; Birgit Rathkolb; Manuela A Oestereicher; Christoph J Lengger; Corinna Moerth; Kateryna Micklich; Helmut Fuchs; Valérie Gailus-Durner; Eckhard Wolf; Martin Hrabě de Angelis
Journal:  J Am Assoc Lab Anim Sci       Date:  2016       Impact factor: 1.232

9.  Online breath gas analysis in unrestrained mice by hs-PTR-MS.

Authors:  Wilfried Szymczak; Jan Rozman; Vera Höllriegl; Martin Kistler; Stefan Keller; Dominika Peters; Moritz Kneipp; Holger Schulz; Christoph Hoeschen; Martin Klingenspor; Martin Hrabě de Angelis
Journal:  Mamm Genome       Date:  2013-11-26       Impact factor: 2.957

Review 10.  New insights into behaviour using mouse ENU mutagenesis.

Authors:  Peter L Oliver; Kay E Davies
Journal:  Hum Mol Genet       Date:  2012-08-13       Impact factor: 6.150

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