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Published on: June 13, 2018
Progressive metastatic infantile fibrosarcoma with multiple acquired mutations
Larissa V Furtado1, Marija Kacar2, Roya Mostafavi3
1Department of Pathology, St. Jude Children's Research Hospital, Memphis, Tennessee 38105, USA.
Insights
Infantile fibrosarcoma, driven by NTRK fusions, can develop resistance to TRK inhibitors. This case reveals acquired TP53, SUFU, and NTRK gatekeeper mutations contributing to aggressive disease progression.
Area of Science:
- Pediatric Oncology
- Molecular Pathology
- Cancer Genomics
Background:
- Infantile fibrosarcoma is the most common pediatric soft-tissue sarcoma, characterized by NTRK fusions.
- While locally invasive, rare metastases can occur, posing treatment challenges.
- NTRK fusions drive tumor formation and are targets for TRK inhibitors, but resistance mechanisms exist.
Abstract:
Infantile fibrosarcoma is the most common soft-tissue sarcoma in children under the age of 1 yr and is defined molecularly by NTRK fusion proteins. This tumor is known to be locally invasive; however, although rare, metastases can occur. The NTRK fusion acts as a driver for tumor formation, which can be targeted by first- and second-generation TRK inhibitors. Although NTRK gatekeeper mutations have been well-described as mechanisms of resistance to these agents, alternative pathway mutations are rare. Here, we report the case of a patient with infantile fibrosarcoma treated with chemotherapy and TRK inhibition that developed metastatic, progressive disease with multiple acquired mutations, including TP53, SUFU, and an NTRK F617L gatekeeper mutation. Alterations in pathways of SUFU and TP53 have been widely described in the literature in other tumors; however, not yet in infantile fibrosarcoma. Although most patients have a sustained response to TRK inhibitors, a subset will go on to develop mechanisms of resistance that have implications for clinical management, such as in our patient. We hypothesize this constellation of mutations contributed to the patient's aggressive clinical course. Taken together, we report the first case of infantile fibrosarcoma with ETV6::NTRK3 and acquired SUFU, TP53, and NTRK F617L gatekeeper mutation along with detailed clinical course and management. Our report highlights the importance of genomic profiling in recurrent infantile fibrosarcoma to reveal actionable mutations, such as gatekeeper mutations, that can improve patient outcomes.
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