Spontaneous metastasis in congenic mice with transgenic breast cancer is unaffected by plasminogen gene ablation
Autor: | Kasper Almholt, Leif R. Lund, John Rømer, Ole Didrik Lærum, Morten Johnsen, Anna Juncker-Jensen |
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Rok vydání: | 2012 |
Předmět: |
Cancer Research
Proteases Plasmin Transgene Congenic Mice Transgenic Biology Metastasis Mice medicine Animals Metalloprotease inhibitor Neoplasm Metastasis Metalloproteinase Mammary Neoplasms Experimental Cancer Plasminogen General Medicine medicine.disease Mice Inbred C57BL Oncology Immunology Cancer research Female Gene Deletion medicine.drug |
Zdroj: | Clinical & Experimental Metastasis. 30:277-288 |
ISSN: | 1573-7276 0262-0898 |
DOI: | 10.1007/s10585-012-9534-9 |
Popis: | Plasminogen (Plg) plays a central role in tissue remodeling during ontogeny, development, and in pathological tissue remodeling following physical injury, inflammation and cancer. Plg/plasmin is, however, not critical for these processes, as they all occur to a varying extent in its absence, suggesting that there is a functional redundancy with other proteases. To explore this functional overlap in the transgenic MMTV-PyMT breast cancer metastasis model, we have combined Plg deficiency and a pharmacological metalloprotease inhibitor, which is known to reduce metastasis in this model, and has been shown to synergistically inhibit other tissue remodeling events in Plg-deficient mice. While metalloprotease inhibition dramatically reduced metastasis, we found no effect of Plg deficiency on metastasis, either independently or in combination with metalloprotease inhibition. We further show that Plg gene deficiency is of no significant consequence in this metastasis model, when analyzed in two different congenic strains: the FVB strain, and a F1 hybrid of the FVB and C57BL/6J strains. We suggest that the extensive backcrossing performed prior to our studies has eliminated the confounding effect of a known polymorphic metastasis modifier gene region located adjacent to the Plg gene. |
Databáze: | OpenAIRE |
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