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Copy-Number Aberrations in Circulating Tumor DNA Enable Diagnosis and Risk Stratification of Pediatric Neuroblastic Tumors

作者:Ting Tao, Jiabin Cai, Yinbing Tang, Dongfang Lu, Lifeng Zhang, Jinkai Peng, Yilong Wang, Weizhong Gu, Shouhua Zhang, Jinhu Wang · 发表于:Cancer Research Communications · 年份:2025 · DOI:10.1158/2767-9764.crc-25-0452 · 被引用次数:1 · 研究领域:Neuroblastoma Research and Treatments、Glioma Diagnosis and Treatment、Cancer therapeutics and mechanisms

Low-pass whole-genome sequencing (LP-WGS) of circulating tumor DNA (ctDNA) is increasingly recognized for its utility in identifying somatic copy number aberration (CNA). Here we analyzed LP-WGS ctDNA data from 73 pediatric neuroblastic tumor patients and 11 healthy controls to explore diagnostic value of ctDNA CNA burden (including the genotypings) with a customized bioinformatics workflow. We found that a high baseline ctDNA CNA burden (Tumor DNA fraction, TFx ≥ 0.2%) was present in 36/41 (87.80%) neuroblastoma, 6/22 (27.27%) ganglioneuroblastoma, and 3/10 (30.00%) ganglioneuroma patients. High baseline ctDNA CNA burden could predict high-risk neuroblastic tumors with an area under curve (AUC) of 0.95, sensitivity of 94.12% and specificity of 100%. Frequent chromosomal copy number changes, including chr17q gain, chr7 gain, chr3p loss and chr11q loss, were found in ctDNA. Gain of chr17q demonstrated the highest diagnostic value with an AUC of 0.92, indicating strong sensitivity and specificity for detecting high-risk neuroblastic tumors. The homologous recombination deficiency (HRD) score in the high and intermediate-risk groups was significantly elevated compared to those in the low/very-low-risk group. The TFx levels and segmental alterations significantly decreased in patients of neuroblastic tumor underwent chemotherapy, from median TFx = 13.82% before treatment to 0.24% after treatment (P < 0.0001). Our findings highlight the effectiveness of LP-WGS ctDNA CNA analysis a...