Role of Cytogenetics and FISH in Laboratory Workup of B Cell Precursor Acute Lymphoblastic Leukemia

IF 0.3 Q4 ONCOLOGY
A. Dhabe, R. Islam, K. Ramakrishnan, M. Parihar
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引用次数: 0

Abstract

Abstract Modern therapeutic protocols in acute leukemias risk stratify disease based on genetic characterization of the neoplastic cells and their response to treatment. Genetic characterization is routinely performed by cytogenetic testing of leukemic cells and is a standard component of modern risk-adapted therapy in acute lymphoblastic leukemia (ALL). High-throughput technologies like RNA sequencing have identified multiple novel subtypes in recent years. The cytogenetic strategy using GTG and fluorescent in-situ hybridization (FISH) has to be adapted to identify not only the primary principal chromosomal abnormalities but also the novel subtypes. In the review, we describe a systematic comprehensive cytogenetic strategy that integrates information from immunophenotyping, flow-based DNA ploidy, and karyotyping complemented by targeted FISH studies to identify more than 70% of genetic abnormalities described in B cell precursor ALL. The simplified strategy includes a four-probe FISH and flow ploidy strategy, ± karyotyping that identifies high risk ( KMT2A, BCR::ABL1 , hypodiploidy, iAMP21) and standard risk ( ETV6::RUNX1 and high hyperdiploid) cytogenetic groups. The extended FISH panel includes probes targeting MEF2D, ZNF384 , and CRLF2 rearrangements that are used intuitively on integrating the immunophenotyping features that characterize these entities. The strategy also includes a systematic approach to identify masked hypodiploidy integrating targeted FISH analysis directed toward identifying monosomies of chromosomes 7, 15, and 17 and flow cytometry-based DNA ploidy analysis. The recently described PH-like ALL is characterized by ABL class fusions and rearrangements of CRLF2 and JAK2 genes. FISH analysis using break-apart probes can be used to identify these aberrations. The cytogenetic approach also includes FISH analysis to identify intragenic and whole gene deletions of the IKZF1 genes that identify a subset of patients associated with high risk of treatment failure.
细胞遗传学和FISH在B细胞前体急性淋巴细胞白血病实验室研究中的作用
摘要急性白血病的现代治疗方案根据肿瘤细胞的遗传特征及其对治疗的反应对疾病进行风险分层。遗传特征通常通过白血病细胞的细胞遗传学测试进行,是急性淋巴细胞白血病(ALL)现代风险适应治疗的标准组成部分。近年来,RNA测序等高通量技术已经鉴定出多种新的亚型。使用GTG和荧光原位杂交(FISH)的细胞遗传学策略必须适应于不仅识别原发性主要染色体异常,而且识别新的亚型。在这篇综述中,我们描述了一种系统全面的细胞遗传学策略,该策略整合了免疫表型、流式DNA倍性和核型分析的信息,并辅以靶向FISH研究,以识别B细胞前体ALL中70%以上的遗传异常。简化的策略包括四探针FISH和流动倍性策略, ± 鉴定高风险(KMT2A、BCR::ABL1、亚二倍体、iAMP21)和标准风险(ETV6::RUNX1和高超二倍体)细胞遗传学组的核型分析。扩展的FISH面板包括靶向MEF2D、ZNF384和CRLF2重排的探针,这些探针直观地用于整合表征这些实体的免疫表型特征。该策略还包括一种识别掩蔽的亚多倍体的系统方法,该方法结合了旨在识别染色体7、15和17的单体的靶向FISH分析和基于流式细胞术的DNA倍性分析。最近描述的PH样ALL的特征是ABL类融合和CRLF2和JAK2基因的重排。使用分离探针的FISH分析可以用于识别这些像差。细胞遗传学方法还包括FISH分析,以确定IKZF1基因的基因内和全基因缺失,从而确定与高治疗失败风险相关的患者亚群。
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来源期刊
CiteScore
0.40
自引率
0.00%
发文量
91
期刊介绍: The journal will cover technical and clinical studies related to medical and pediatric oncology in human well being including ethical and social issues. Articles with clinical interest and implications will be given preference.
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