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Fluorescent In Situ Hybridization for TP53 in the Diagnosis of Pediatric Osteogenic Sarcoma
Paula Marrano1, Mary Shago2,3, Gino R Somers1,3
1Division of Pathology.
Abstract:
Osteogenic sarcoma (OS) is the most common malignant bone tumor in children and adolescents. Despite advances in molecular genetic characterization of pediatric and adult tumors, the diagnosis of OS still depends almost entirely on light microscopy. The lack of consistent genetic changes in OS has greatly hindered the development of any diagnostic molecular test. Recently, whole-genome sequencing has shown that ~50% of cases of OS have a translocation involving the TP53 gene with breakpoints confined to the first intron. We developed a 2 color break-apart fluorescent in situ hybridization (FISH) probe for intron 1 of TP53 and applied it to an archived series to assess its diagnostic utility. The study group included 37 cases of OS (including osteoblastic, chondroblastic, and fibroblastic), as well as 53 cases of non-OS pediatric sarcomas (including Ewing sarcoma, rhabdomyosarcoma, undifferentiated small cell sarcoma, CCNB3-BCOR sarcoma, CIC-DUX sarcoma, synovial sarcoma, and malignant peripheral nerve sheath tumor) and 27 cases of benign bone lesions (including osteoblastoma, chondromyxoid fibroma, fibrous dysplasia, and fibro-osseous dysplasia). A rearranged signal was found in 20/37 cases (54%) of OS and in none of the other sarcomas or benign bone lesions, giving the FISH test 100% specificity for a diagnosis of OS. p53 immunostaining was generally not predictive of the results obtained by FISH and could not substitute for this test. This FISH probe offers a simple and specific genetic test to aid in the diagnosis of OS, despite the genetic complexity of this tumor.
Insights
A new fluorescent in situ hybridization (FISH) test targeting the TP53 gene aids in diagnosing osteogenic sarcoma (OS), the most common pediatric bone cancer. This specific genetic test shows promise for improving OS diagnosis.
Area of Science:
- Oncology
- Genetics
- Pathology
Background:
- Osteogenic sarcoma (OS) is the most frequent malignant bone tumor in children and adolescents.
- Current OS diagnosis relies heavily on light microscopy, with limited consistent genetic markers.
- TP53 gene translocations are found in approximately 50% of OS cases.
Purpose of the Study:
- To develop and evaluate a diagnostic molecular test for osteogenic sarcoma.
- To assess the utility of a novel fluorescent in situ hybridization (FISH) probe for TP53 gene rearrangements in OS diagnosis.
Main Methods:
- Development of a 2-color break-apart FISH probe targeting intron 1 of the TP53 gene.
- Application of the FISH probe to a cohort of 37 OS cases, 53 non-OS pediatric sarcomas, and 27 benign bone lesions.
- Comparison of FISH results with p53 immunostaining.
Main Results:
- A TP53 rearrangement signal was detected in 54% (20/37) of osteogenic sarcoma cases.
- The FISH test demonstrated 100% specificity for OS, with no rearranged signals found in other sarcomas or benign bone lesions.
- p53 immunostaining did not consistently predict FISH results and could not replace the FISH test.
Conclusions:
- A FISH probe targeting TP53 intron 1 rearrangements provides a simple and highly specific genetic test for aiding osteogenic sarcoma diagnosis.
- This FISH test is valuable for differentiating OS from other pediatric sarcomas and benign bone conditions.
- The developed FISH probe offers a significant advancement in the molecular diagnostics of osteogenic sarcoma.
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