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Most circulating tumor DNA (ctDNA) assays are designed to detect recurrent mutations. Pediatric sarcomas share few recurrent mutations but rather are characterized by translocations and copy-number changes. We applied Cancer Personalized Profiling by deep Sequencing (CAPP-Seq) for detection of translocations found in the most common pediatric sarcomas. We also applied ichorCNA to the combined off-target reads from our hybrid capture to simultaneously detect copy-number alterations (CNA). We analyzed 64 prospectively collected plasma samples from 17 patients with pediatric sarcoma. Translocations were detected in the pretreatment plasma of 13 patients and were confirmed by tumor sequencing in 12 patients. Two of these patients had evidence of complex chromosomal rearrangements in their ctDNA. We also detected copy-number changes in the pretreatment plasma of 7 patients. We found that ctDNA levels correlated with metastatic status and clinical response. Furthermore, we detected rising ctDNA levels before relapse was clinically apparent, demonstrating the high sensitivity of our assay. This assay can be utilized for simultaneous detection of translocations and CNAs in the plasma of patients with pediatric sarcoma. While we describe our experience in pediatric sarcomas, this approach can be applied to other tumors that are driven by structural variants.
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http://dx.doi.org/10.1158/1535-7163.MCT-20-0987 | DOI Listing |
Pediatr Surg Int
September 2025
Pediatric Surgery Unit, Department of Women's and Children's Health, University of Padua, Via Nicolò Giustiniani, 35100, Padua, Italy.
Introduction: Brachytherapy has been used for the multimodal treatment of pediatric bladder-prostate rhabdomyosarcoma in the last two decades. The aim of this systematic review is to gather the current evidence about this innovative technique with a special focus on long-term outcomes.
Methods: According to PRISMA criteria, PubMed, Scopus, and Web of Science were searched for papers published between 2000 and 2022.
Pediatr Dev Pathol
September 2025
The Hospital for Sick Children, Division of Pathology, Toronto, Canada.
Background: Rhabdomyosarcoma (RMS) is the most common soft tissue sarcoma of childhood. For stratification purposes, rhabdomyosarcoma is classified into fusion-positive RMS (alveolar rhabdomyosarcoma) and fusion-negative RMS (embryonal or spindle cell/sclerosing, FN-RMS) subtypes according to its fusion status. This study aims to highlight the pathologic and molecular characteristics of a cohort of FN-RMS using a targeted NGS RNA-Seq assay.
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September 2025
Department of Radiology, Federal University of Sao Paulo (UNIFESP), Napoleão de Barros St, 800, São Paulo, SP, 04024-000, Brazil.
Objective: To evaluate multiparametric MRI features of pediatric soft-tissue sarcomas, comparing pre-treatment and post-treatment features, and assessing correlation with clinical outcomes.
Materials And Methods: Retrospective cohort study, including pediatric patients (≤ 18 years) with histologically-confirmed soft-tissue sarcomas who underwent MRI with anatomic and functional sequences in consecutive series. Post-treatment MRI was available for a subset, and features were recorded by two readers.
Oncoscience
September 2025
Division of Pediatric Hematology and Oncology, Kasturba Medical College, Manipal Academy of Higher Education, Manipal, Karnataka, India.
Background: Trophoblastic differentiation or beta-human chorionic gonadotropin (β-hCG) secretion in endometrial carcinoma has been associated with poorly differentiated and aggressive tumors; however, the evidence is largely inconclusive. The review aimed to explore the prognostic role of trophoblastic differentiation and β-hCG in non-trophoblastic, primary uterine corpus cancers.
Methodology: A comprehensive electronic search across databases was conducted for all cases of cancers of the uterine corpus that were either associated with elevated levels of β-hCG or showed evidence of trophoblastic differentiation upon microscopy or both.
Pediatr Blood Cancer
September 2025
Nuffield Department of Surgical Sciences, Oxford University, Oxford, UK.
Background: Local control strategies in pediatric oncology are guided by disease-specific considerations. Effective communication of the goals of surgical procedure and associated intraoperative events plays a crucial role in shaping subsequent treatment decisions. However, accurately and comprehensively documenting these findings remains challenging, with considerable variability across different tumor types.
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