液滴数字聚合酶链反应用于检测和定量口腔癌中游离DNA TP53靶体细胞突变。

IF 1.9
Li-Han Lin, Hui-Wen Cheng, Chung-Ji Liu
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引用次数: 4

摘要

背景:TP53突变是口腔癌发生的驱动突变。本研究通过检测口腔鳞状细胞癌(OSCC)患者的癌性和游离性DNA (cfDNA),检测TP53的靶热点体细胞突变。目的:测定107例OSCC手术切除原发肿瘤样本中TP53靶热点突变。方法:采用液滴数字聚合酶链反应(ddPCR)对癌性和cfDNA样本进行突变检测。将ddPCR结果与临床病理数据一起进行评估。结果:共有23例患者发生不同程度的TP53靶突变。我们发现,OSCC的cfDNA脱落相对较低,突变处于低等位基因频率。在这23例病例中,13例在其相应的cfDNA中存在靶TP53突变。癌性DNA和cfDNA的靶体细胞突变与颈淋巴结转移有关。cfDNA浓度与原发肿瘤大小、淋巴结转移和OSCC分期有关。结论:我们的研究结果表明,利用ddPCR检测OSCC患者TP53靶体细胞突变在技术上是可行的。低水平的cfDNA可能在癌组织和cfDNA分析之间产生不同的结果。未来对cfDNA的研究可能会在OSCC患者的监测中量化诊断生物标志物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Droplet digital polymerase chain reaction for detection and quantification of cell-free DNA TP53 target somatic mutations in oral cancer.

Droplet digital polymerase chain reaction for detection and quantification of cell-free DNA TP53 target somatic mutations in oral cancer.

Droplet digital polymerase chain reaction for detection and quantification of cell-free DNA TP53 target somatic mutations in oral cancer.

Droplet digital polymerase chain reaction for detection and quantification of cell-free DNA TP53 target somatic mutations in oral cancer.

Background: TP53 mutation is a driver mutation of oral carcinogenesis. This study investigated cancerous and cell-free DNA (cfDNA) in patients with oral squamous cell carcinoma (OSCC) to detect the target hotspot somatic mutation of TP53.

Objective: TP53 target hotspot mutations were determined in surgically resected primary tumor samples from 107 OSCC patients.

Methods: Cancerous and cfDNA samples were examined for mutations through droplet digital polymerase chain reaction (ddPCR) by using mutation-specific assays. The ddPCR results were evaluated alongside clinicopathological data.

Results: In total, 23 cases had target TP53 mutations in varying degrees. We found that OSCC had relatively low cfDNA shedding, and mutations were at low allele frequencies. Of these 23 cases, 13 had target TP53 mutations in their corresponding cfDNA. Target somatic mutations in cancerous DNA and cfDNA are related to cervical lymph node metastasis. The cfDNA concentration is related to primary tumor size, lymph node metastasis, and OSCC stage.

Conclusions: Our results show that the detection of TP53 target somatic mutations in OSCC patients by using ddPCR is technically feasible. Low levels of cfDNA may produce different results between cancerous tissue and cfDNA analyses. Future research on cfDNA may quantify diagnostic biomarkers in the surveillance of OSCC patients.

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