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Updated: May 26, 2026

Identifying, Diagnosing, and Grading Malignant Peripheral Nerve Sheath Tumors in Genetically Engineered Mouse Models
Published on: May 17, 2024
Morphologic manifestations of gene-specific molecular alterations ("genetic addictions") in mouse models of disease
S S Couto1, B Bolon, R D Cardiff
1University of California–Davis, Center for Comparative Medicine, Davis, CA, USA.
Abstract:
Neoplasia in both animals and humans results in part from lasting activation of tumor-promoting genes ("oncogenes") or diminished function of genes responsible for preventing neoplastic induction ("tumor suppressor genes"). The concept of "genetic addiction" has emerged to indicate that neoplastic cells cannot maintain a malignant phenotype without sustained genotypic abnormalities related to aberrant activity of oncogene(s) and/or inactivity of tumor suppressor gene(s). Interestingly, some genetic abnormalities reliably produce distinct morphologic patterns that can be used as structural signatures indicating the presence of a specific molecular alteration. Examples of such consistent genetic/microanatomic pairings have been identified for mutated oncogenes, such as rising mucin-producing capacity with RAS overexpression, and mutated tumor suppressor genes-including PTEN eliciting cell hypertrophy, RB1 dictating neuroendocrine differentiation, and TRP53 encouraging sarcomatous transformation. Familiarity with the concept of genetic addiction, as well as the ability to recognize such regular genomic-phenotypic relationships, are of paramount importance for comparative pathologists who are engaged in phenotyping genetically engineered mice to help unravel genomic intricacies in both health and disease.
Insights
Neoplastic cells rely on genetic abnormalities, a concept termed "genetic addiction," to sustain malignancy. Specific gene mutations create unique structural patterns, aiding in disease diagnosis and research.
Area of Science:
- Oncology
- Genetics
- Pathology
Background:
- Neoplasia arises from oncogene activation or tumor suppressor gene inactivation.
- Malignant cells exhibit
Purpose of the Study:
- To explore the concept of
Main Methods:
- This study reviews existing literature and case examples.
- It focuses on identifying correlations between specific genetic alterations and observed morphological patterns.
Main Results:
- Consistent genetic/microanatomic pairings exist, serving as molecular signatures.
- Examples include RAS overexpression linked to mucin production, PTEN mutations with cell hypertrophy, RB1 with neuroendocrine differentiation, and TRP53 with sarcomatous transformation.
Conclusions:
- Recognizing
- Comparative pathologists can utilize these genomic-phenotypic relationships in genetically engineered mouse models to advance understanding of health and disease.
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