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快速且高度特异性检测急性髓系白血病中的 NPM1 突变。

Rapid and highly specific screening for NPM1 mutations in acute myeloid leukemia.

机构信息

Laboratory of Molecular Diagnostics, Department of Hematology, University Hospital Bern and University of Bern, Freiburgstrasse 4, Bern, Switzerland.

出版信息

Ann Hematol. 2013 Jan;92(2):173-7. doi: 10.1007/s00277-012-1617-9. Epub 2012 Nov 17.

Abstract

NPM1 mutations, the most frequent molecular alterations in acute myeloid leukemia (AML), have become important for risk stratification and treatment decisions for patients with normal karyotype AML. Rapid screening for NPM1 mutations should be available shortly after diagnosis. Several methods for detecting NPM1 mutations have been described, most of which are technically challenging and require additional laboratory equipment. We developed and validated an assay that allows specific, rapid, and simple screening for NPM1 mutations. FAST PCR spanning exons 8 to 12 of the NPM1 gene was performed on 284 diagnostic AML samples. PCR products were visualized on a 2 % agarose E-gel and verified by direct sequencing. The FAST PCR screening method showed a specificity and sensitivity of 100 %, i.e., all mutated cases were detected, and none of negative cases carried mutations. The limit of detection was at 5-10 % of mutant alleles. We conclude that the FAST PCR assay is a highly specific, rapid (less than 2 h), and sensitive screening method for the detection of NPM1 mutations. Moreover, this method is inexpensive and can easily be integrated in the routine molecular diagnostic work-up of established risk factors in AML using standard laboratory equipment.

摘要

NPM1 突变是急性髓细胞白血病(AML)中最常见的分子改变,对于核型正常的 AML 患者的风险分层和治疗决策变得非常重要。在诊断后应尽快进行 NPM1 突变的快速筛选。已经描述了几种检测 NPM1 突变的方法,其中大多数在技术上具有挑战性并且需要额外的实验室设备。我们开发并验证了一种允许对 NPM1 突变进行特异性、快速和简单筛查的检测方法。在 284 个诊断性 AML 样本上进行了 NPM1 基因外显子 8 至 12 区的 FAST PCR。PCR 产物在 2%琼脂糖 E-gel 上可视化,并通过直接测序进行验证。FAST PCR 筛选方法的特异性和灵敏度均为 100%,即检测到所有突变病例,且无一例阴性病例携带突变。检测限为 5-10%的突变等位基因。我们得出结论,FAST PCR 检测是一种高度特异性、快速(<2 小时)和灵敏的 NPM1 突变检测筛查方法。此外,该方法价格低廉,并且可以使用标准实验室设备轻松整合到 AML 中已建立的危险因素的常规分子诊断工作中。

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