HRD测试的评估方法:一致性评估标准工具的开发。

Zheng Jia, Yaqing Liu, Shoufang Qu, Wenbin Li, Lin Gao, Lin Dong, Yun Xing, Yadi Cheng, Huan Fang, Yuting Yi, Yuxing Chu, Chao Zhang, Yanming Xie, Chunli Wang, Zhe Li, Zhihong Zhang, Zhipeng Xu, Yang Wang, Wenxin Zhang, Xiaoping Gu, Shuang Yang, Jinghua Li, Liangshen Wei, Yuanting Zheng, Guohui Ding, Leming Shi, Xin Yi, Jianming Ying, Jie Huang
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引用次数: 0

摘要

同源重组缺陷(HRD)已成为肿瘤预后和预测的重要生物标志物。然而,目前的测试方法,特别是那些依赖于目标面板的测试方法,受到来自相同样品的不一致结果的困扰。这突出了迫切需要标准化的基准来评估HRD分析的性能。在中国HRD协调项目的IIa和IIb阶段,我们从肺癌、乳腺癌和黑色素瘤细胞系及其匹配的正常细胞系中开发了10对特征良好的DNA参考物质,每对都有7个癌症与正常的质量比。基于3种测序方法和9条分析管道,建立并验证了等位基因特异性拷贝数变异(ASCNVs)和HRD评分的参考数据集。参考材料的基因组不稳定性评分(GIS)范围从11到96,可以跨越不同的阈值进行验证。ASCNV参考数据集覆盖了2340 ~ 2749 Mb的基因组跨度,相当于37d5参考基因组中常染色体的81.2% ~ 95.4%。这些基准随后被用于评估四种HRD小组分析的准确性和可重复性,揭示了ASCNV检测和HRD评分的显著差异。面板检测GIS和参考GIS之间的一致性范围为0.81至0.94,只有两个分析与Myriad MyChoice CDx在HRD分类方面表现出高度一致。本研究还确定了在hrd相关地区检测ASCNV的具体挑战,以及高倍性对一致性的深远影响。已建立的人力资源开发参考材料和数据集为人力资源开发测试的客观评估提供了一个强大的工具包。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluative Methodology for HRD Testing: Development of Standard Tools for Consistency Assessment.

Homologous recombination deficiency (HRD) has emerged as a critical prognostic and predictive biomarker in oncology. However, current testing methods, especially those reliant on targeted panels, are plagued by inconsistent results from the same samples. This highlights the urgent need for standardized benchmarks to evaluate HRD assay performance. In phases IIa and IIb of the Chinese HRD Harmonization Project, we developed ten pairs of well-characterized DNA reference materials derived from lung, breast, and melanoma cancer cell lines and their matched normal cell lines, each paired with seven cancer-to-normal mass ratios. Reference datasets for allele-specific copy number variations (ASCNVs) and HRD scores were established and validated based on three sequencing methods and nine analytical pipelines. The Genomic Instability Scores (GIS) of the reference materials ranged from 11 to 96, enabling validation across various thresholds. The ASCNV reference datasets covered a genomic span of 2340 to 2749 Mb, equivalent to 81.2% to 95.4% of the autosomes in the 37d5 reference genome. These benchmarks were subsequently utilized to assess the accuracy and reproducibility of four HRD panel assays, revealing significant variability in both ASCNV detection and HRD scores. The concordance between panel-detected GIS and reference GIS ranged from 0.81 to 0.94, and only two assays exhibited high overall agreement with Myriad MyChoice CDx for HRD classification. This study also identified specific challenges in ASCNV detection in HRD-related regions and the profound impact of high ploidy on consistency. The established HRD reference materials and datasets provide a robust toolkit for objective evaluation of HRD testing.

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