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纳米孔 Flongle 测序作为一种快速、单样本的融合检测临床检测方法。

Nanopore Flongle Sequencing as a Rapid, Single-Specimen Clinical Test for Fusion Detection.

机构信息

Department of Pathology, Duke University Medical Center, Durham, North Carolina.

Massachusetts General Hospital, Boston, Massachusetts.

出版信息

J Mol Diagn. 2021 May;23(5):630-636. doi: 10.1016/j.jmoldx.2021.02.001. Epub 2021 Feb 19.

Abstract

The identification of gene fusions is a cornerstone of diagnosis and treatment decision making for tumors of many forms and primary sites. Diverse molecular approaches are currently used for the molecular diagnosis of fusions, but few permit broad, partner agnostic detection of fusions over multiple potential targets. We previously described the combination of nanopore sequencing with the anchored multiplex PCR technique to permit a rapid testing paradigm. Recently, a new platform for nanopore sequencing has become publicly available, the Flongle flow cell from Oxford Nanopore Technologies, which offers lower throughput, but lower price testing. Here, we describe the results of retesting of 15 specimens previously tested with both Illumina and Oxford Nanopore Technologies MinION sequencing. Furthermore, we additionally blindly tested 13 specimens that had undergone clinical Illumina-based sequencing. The Flongle sequencing pipeline removed key complexities of a multiplexed nanopore sequencing protocol, reduced sequencing turnaround time, and showed excellent concordance with Illumina results. It was particularly strong in identifying notoriously difficult to detect CIC-DUX4 translocations. The Flongle sequencing pipeline may be the assay of choice for deployment in small- to medium-sized molecular laboratories.

摘要

基因融合的鉴定是许多形式和原发部位肿瘤的诊断和治疗决策的基石。目前有多种分子方法可用于融合的分子诊断,但很少有方法能够广泛、不受伴侣限制地检测多个潜在靶点的融合。我们之前描述了将纳米孔测序与锚定多重 PCR 技术相结合,以实现快速检测模式。最近,一种新的纳米孔测序平台,Oxford Nanopore Technologies 的 Flongle 流动池,已经公开可用,它具有较低的通量,但测试价格较低。在这里,我们描述了用 Illumina 和 Oxford Nanopore Technologies MinION 测序对 15 个标本进行重新测试的结果。此外,我们还对 13 个已进行临床 Illumina 测序的标本进行了盲测。Flongle 测序流程消除了多重纳米孔测序方案的关键复杂性,缩短了测序周转时间,并且与 Illumina 的结果具有极好的一致性。它在识别众所周知难以检测的 CIC-DUX4 易位方面尤为出色。Flongle 测序流程可能是小型到中型分子实验室选择部署的检测方法。

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