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Tumorsphere Derivation and Treatment from Primary Tumor Cells Isolated from Mouse Rhabdomyosarcomas
Published on: September 13, 2019
Dystrophin and dysferlin double mutant mice: a novel model for rhabdomyosarcoma
Vishnu Hosur1, Anoop Kavirayani, Jennifer Riefler
1The Jackson Laboratory, Bar Harbor, ME, USA.
Abstract:
Although researchers have yet to establish a link between muscular dystrophy (MD) and sarcomas in human patients, literature suggests that the MD genes dystrophin and dysferlin act as tumor suppressor genes in mouse models of MD. For instance, dystrophin-deficient mdx and dysferlin-deficient A/J mice, models of human Duchenne MD and limb-girdle MD type 2B, respectively, develop mixed sarcomas with variable penetrance and latency. To further establish the correlation between MD and sarcoma development, and to test whether a combined deletion of dystrophin and dysferlin exacerbates MD and augments the incidence of sarcomas, we generated dystrophin and dysferlin double mutant mice (STOCK-Dysf(prmd)Dmd(mdx-5Cv)). Not surprisingly, the double mutant mice develop severe MD symptoms and, moreover, develop rhabdomyosarcoma (RMS) at an average age of 12 months, with an incidence of >90%. Histological and immunohistochemical analyses, using a panel of antibodies against skeletal muscle cell proteins, electron microscopy, cytogenetics, and molecular analysis reveal that the double mutant mice develop RMS. The present finding bolsters the correlation between MD and sarcomas, and provides a model not only to examine the cellular origins but also to identify mechanisms and signal transduction pathways triggering development of RMS.
Insights
Muscular dystrophy (MD) genes, dystrophin and dysferlin, may suppress tumors. Double mutant mice lacking both genes developed severe MD and a high incidence of rhabdomyosarcoma, suggesting a link between MD and sarcoma development.
Area of Science:
- Biomedical Research
- Genetics
- Oncology
Background:
- Muscular dystrophy (MD) is a group of genetic disorders characterized by progressive muscle weakness.
- Dystrophin and dysferlin are proteins implicated in muscle function and have shown tumor suppressor activity in mouse models.
- Previous studies suggest a potential link between MD and sarcoma development.
Purpose of the Study:
- To investigate the correlation between MD and sarcoma development.
- To determine if combined deletion of dystrophin and dysferlin exacerbates MD symptoms.
- To assess if combined gene deletion augments sarcoma incidence in mice.
Main Methods:
- Generation of dystrophin and dysferlin double mutant mice.
- Histological and immunohistochemical analyses of tumor development.
- Electron microscopy, cytogenetics, and molecular analysis for characterization.
Main Results:
- Double mutant mice exhibited severe MD symptoms.
- These mice developed rhabdomyosarcoma (RMS) with >90% incidence by 12 months.
- RMS development was confirmed through comprehensive histological and molecular analyses.
Conclusions:
- The study strengthens the evidence linking MD and sarcoma development.
- The generated double mutant mouse model is valuable for studying RMS origins and mechanisms.
- This model can aid in identifying pathways involved in rhabdomyosarcoma development.
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