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肿瘤下一代测序-林奇综合征-错配修复:一种用于检测与错配修复缺陷和林奇综合征相关基因的种系和体细胞突变的全面下一代测序检测方法。

TumorNext-Lynch-MMR: a comprehensive next generation sequencing assay for the detection of germline and somatic mutations in genes associated with mismatch repair deficiency and Lynch syndrome.

作者信息

Gray Phillip N, Tsai Pei, Chen Daniel, Wu Sitao, Hoo Jayne, Mu Wenbo, Li Bing, Vuong Huy, Lu Hsiao-Mei, Batth Navanjot, Willett Sara, Uyeda Lisa, Shah Swati, Gau Chia-Ling, Umali Monalyn, Espenschied Carin, Janicek Mike, Brown Sandra, Margileth David, Dobrea Lavinia, Wagman Lawrence, Rana Huma, Hall Michael J, Ross Theodora, Terdiman Jonathan, Cullinane Carey, Ries Savita, Totten Ellen, Elliott Aaron M

机构信息

Advanced Genomic Services, Ambry Genetics, Aliso Viejo, CA 92656, USA.

Clinical Diagnostics Department, Ambry Genetics, Aliso Viejo, CA 92656, USA.

出版信息

Oncotarget. 2018 Apr 17;9(29):20304-20322. doi: 10.18632/oncotarget.24854.

Abstract

The current algorithm for Lynch syndrome diagnosis is highly complex with multiple steps which can result in an extended time to diagnosis while depleting precious tumor specimens. Here we describe the analytical validation of a custom probe-based NGS tumor panel, TumorNext-Lynch-MMR, which generates a comprehensive genetic profile of both germline and somatic mutations that can accelerate and streamline the time to diagnosis and preserve specimen. TumorNext-Lynch-MMR can detect single nucleotide variants, small insertions and deletions in 39 genes that are frequently mutated in Lynch syndrome and colorectal cancer. Moreover, the panel provides microsatellite instability status and detects loss of heterozygosity in the five Lynch genes; , , , and . Clinical cases are described that highlight the assays ability to differentiate between somatic and germline mutations, precisely classify variants and resolve discordant cases.

摘要

目前用于林奇综合征诊断的算法非常复杂,有多个步骤,这可能导致诊断时间延长,同时耗尽珍贵的肿瘤标本。在此,我们描述了一种基于定制探针的二代测序肿瘤检测板TumorNext-Lynch-MMR的分析验证,该检测板可生成种系和体细胞突变的全面基因图谱,从而加快并简化诊断时间,同时保留标本。TumorNext-Lynch-MMR可以检测39个基因中的单核苷酸变异、小插入和缺失,这些基因在林奇综合征和结直肠癌中经常发生突变。此外,该检测板还提供微卫星不稳定性状态,并检测五个林奇基因( 、 、 、 和 )中的杂合性缺失。文中描述了临床病例,突出了该检测方法区分体细胞和种系突变、精确分类变异以及解决不一致病例的能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c8ab/5945525/134f853b0c15/oncotarget-09-20304-g001.jpg

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