首页> 美国卫生研究院文献>Cancers >A Novel Three-Colour Fluorescence in Situ Hybridization Approach for the Detection of t(7;12)(q36;p13) in Acute Myeloid Leukaemia Reveals New Cryptic Three Way Translocation t(7;12;16)
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A Novel Three-Colour Fluorescence in Situ Hybridization Approach for the Detection of t(7;12)(q36;p13) in Acute Myeloid Leukaemia Reveals New Cryptic Three Way Translocation t(7;12;16)

机译:一种新型的三色荧光原位杂交方法检测急性髓细胞白血病中的t(7; 12)(q36; p13)揭示了新的隐性三向易位t(7; 12; 16)

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摘要

The t(7;12)(q36;p13) translocation is a recurrent chromosome abnormality that involves the ETV6 gene on chromosome 12 and has been identified in 20–30% of infant patients with acute myeloid leukaemia (AML). The detection of t(7;12) rearrangements relies on the use of fluorescence in situ hybridization (FISH) because this translocation is hardly visible by chromosome banding methods. Furthermore, a fusion transcript HLXB9-ETV6 is found in approximately 50% of t(7;12) cases, making the reverse transcription PCR approach not an ideal screening method. Considering the report of few cases of variant translocations harbouring a cryptic t(7;12) rearrangement, we believe that the actual incidence of this abnormality is higher than reported to date. The clinical outcome of t(7;12) patients is believed to be poor, therefore an early and accurate diagnosis is important in the clinical management and treatment. In this study, we have designed and tested a novel three-colour FISH approach that enabled us not only to confirm the presence of the t(7;12) in a number of patients studied previously, but also to identify a cryptic t(7;12) as part of a complex rearrangement. This new approach has proven to be an efficient and reliable method to be used in the diagnostic setting.
机译:t(7; 12)(q36; p13)易位是一种复发性染色体异常,涉及12号染色体上的ETV6基因,并已在20-30%的急性髓性白血病(AML)婴儿患者中得到鉴定。 t(7; 12)重排的检测依赖于荧光原位杂交(FISH)的使用,因为这种转移很难通过染色体显带方法看到。此外,在大约50%的t(7; 12)病例中发现了融合转录本HLXB9-ETV6,这使得逆转录PCR方法不是理想的筛选方法。考虑到少数案例报告了隐匿的t(7; 12)重排变异变异,我们认为这种异常的实际发生率比迄今报道的要高。 t(7; 12)患者的临床结局被认为很差,因此早期准确的诊断对临床管理和治疗很重要。在这项研究中,我们设计并测试了一种新颖的三色FISH方法,该方法不仅使我们能够确认先前研究过的许多患者中t(7; 12)的存在,而且能够鉴定出隐秘的t(7)。 ; 12)作为复杂重排的一部分。事实证明,这种新方法是一种有效且可靠的方法,可用于诊断环境。

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