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光学基因组图谱在髓系和淋巴系恶性肿瘤诊断及风险分层中的应用

Application of Optical Genome Mapping for the Diagnosis and Risk Stratification of Myeloid and Lymphoid Malignancies.

作者信息

Ballesta-Alcaraz Lucía, Bernal Mónica, Vilchez Jose Ramón, Palacios Jorge Antonio, Jiménez Pilar, Garrido Pilar, Gutiérrez-Bautista Juan Francisco, Ruiz-Cabello Francisco

机构信息

Servicio de Análisis Clínicos e Inmunología, University Hospital Virgen de las Nieves, 18014 Granada, Spain.

Programa de Doctorado en Biomedicina, University of Granada, 18016 Granada, Spain.

出版信息

Int J Mol Sci. 2025 Jun 16;26(12):5763. doi: 10.3390/ijms26125763.

Abstract

Optical genome mapping (OGM) is a novel, high-resolution technology for genome-wide detection of structural variants, offering clear advantages over conventional cytogenetics in hematologic malignancies. We applied OGM to a large cohort of patients with acute myeloid leukemia (AML), myelodysplastic syndromes (MDSs), and B-cell acute lymphoblastic leukemia (B-ALL) to evaluate its clinical utility. In AML and MDS, it revealed high-risk alterations such as deletions in 5q31-5q32 and 7q22, and cryptic fusions like that were missed by karyotyping or FISH. It also identified chromoanagenesis, a catastrophic chromosomal event linked to poor prognosis and often undetectable by standard methods. In B-ALL, OGM uncovered clinically relevant deletions in , , and , as well as high-risk ploidy changes like hypodiploidy and hyperdiploidy, all important for risk assessment and frequently underdetected. OGM not only refines diagnosis and improves risk stratification but can also uncover cryptic and complex genomic abnormalities. Our findings support its integration into routine diagnostics to enhance classification, guide treatment decisions, and improve patient outcomes.

摘要

光学基因组图谱(OGM)是一种用于全基因组结构变异检测的新型高分辨率技术,在血液系统恶性肿瘤中比传统细胞遗传学具有明显优势。我们将OGM应用于一大群急性髓系白血病(AML)、骨髓增生异常综合征(MDS)和B细胞急性淋巴细胞白血病(B-ALL)患者,以评估其临床应用价值。在AML和MDS中,它揭示了高危改变,如5q31 - 5q32和7q22缺失,以及核型分析或荧光原位杂交(FISH)遗漏的隐匿性融合。它还识别出了染色体断裂融合,这是一种与预后不良相关且通常无法通过标准方法检测到的灾难性染色体事件。在B-ALL中,OGM发现了、和中的临床相关缺失,以及低二倍体和高二倍体等高风险倍性变化,所有这些对于风险评估都很重要且经常检测不到。OGM不仅能优化诊断并改善风险分层,还能发现隐匿性和复杂的基因组异常。我们的研究结果支持将其纳入常规诊断,以加强分类、指导治疗决策并改善患者预后。

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