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Comparing Metastatic Clear Cell Renal Cell Carcinoma Model Established in Mouse Kidney and on Chicken Chorioallantoic Membrane
Published on: February 8, 2020
Chameleon TFE3-translocation RCC and How Gene Partners Can Change Morphology: Accurate Diagnosis Using Contemporary
1Department of Laboratory Medicine and Pathology, University of Washington, Seattle, WA.
Abstract:
Translocation renal cell carcinoma (tRCC) with TFE3 gene rearrangements has been born as a distinct entity 20 years ago. These relatively rare tumors were notable among other RCC subtypes because of their disproportionally high incidence among children and young adults. Initial reports were focused on describing unifying morphologic criteria and typical clinical presentation. Follow-up studies of ancillary immunohistochemical and hybridization techniques provided additional diagnostic tools allowing recognition of tRCC tumors in practice. However, a growing body of literature also expanded the clinicomorphologic spectrum of tRCCs, to include a significant morphologic overlap with other RCC variants thus blurring the diagnostic clarity of this entity. More recent molecular studies utilizing next-generation sequencing technology accelerated recognition of numerous novel gene partners fusing at different breakpoints with the TFE3 gene. Accumulating data indicates that morphologic and clinical heterogeneity of tRCC could be explained by fusion subtypes, and knowledge of TFE3 partnering genes may be important in predicting tumor behavior. Herein we provided a comprehensive analysis of ∼400 tRCC cases with known TFE3 fusion partners, estimated their relative incidence and summarized clinicomorphologic features associated with most common fusion subtypes. Our data was based on an extensive literature review and had a special focus on comparing immunohistochemistry, fluorescent in situ hybridization and contemporary molecular studies for the accurate diagnosis of tRCC.
Insights
Translocation renal cell carcinoma (tRCC) is a distinct entity characterized by TFE3 gene rearrangements. Understanding TFE3 fusion subtypes is crucial for accurate diagnosis and predicting tumor behavior in tRCC.
Area of Science:
- Oncology
- Genetics
- Pathology
Background:
- Translocation renal cell carcinoma (tRCC) with TFE3 gene rearrangements is a rare subtype with a high incidence in young individuals.
- Initial diagnostic criteria have become blurred due to morphologic overlap with other renal cell carcinoma variants.
- Advances in molecular studies have identified numerous novel TFE3 fusion partners.
Purpose of the Study:
- To provide a comprehensive analysis of tRCC cases with known TFE3 fusion partners.
- To estimate the relative incidence of different tRCC subtypes.
- To summarize clinicomorphologic features associated with common TFE3 fusion subtypes.
Main Methods:
- Extensive literature review of approximately 400 tRCC cases with known TFE3 fusion partners.
- Comparison of immunohistochemistry, fluorescent in situ hybridization, and next-generation sequencing for diagnostic accuracy.
- Analysis of relative incidence and clinicomorphologic features across different fusion subtypes.
Main Results:
- Identified numerous novel gene partners fusing with the TFE3 gene.
- Demonstrated that TFE3 fusion subtypes correlate with morphologic and clinical heterogeneity in tRCC.
- Highlighted the importance of TFE3 partnering genes in predicting tumor behavior.
Conclusions:
- Accurate diagnosis of tRCC requires a combination of traditional and contemporary molecular techniques.
- Understanding TFE3 fusion subtypes is essential for refining diagnosis and prognosis of tRCC.
- Further research into TFE3 fusion partners may improve therapeutic strategies for tRCC.
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