小RNA
甲状腺癌
甲状腺乳突癌
疾病
肿瘤科
医学
内科学
体细胞
基因
生物信息学
生化复发
甲状腺
癌症
生物
前列腺癌
遗传学
前列腺切除术
作者
Hannah R. Nieto,Caitlin E.M. Thornton,Katie Brookes,Albert N. Menezes,Alice Fletcher,Mohammed Alshahrani,Merve Kocbiyik,Neil Sharma,Kristien Boelaert,Jean‐Baptiste Cazier,Hisham Mehanna,Vicki E. Smith,Martin L. Read,Christopher J. McCabe
标识
DOI:10.1210/clinem/dgab836
摘要
Thyroid cancer recurrence is associated with increased mortality and adverse outcomes. Recurrence risk is currently predicted using clinical tools, often restaging patients after treatment. Detailed understanding of recurrence risk at disease onset could lead to personalized and improved patient care.We aimed to perform a comprehensive bioinformatic and experimental analysis of 3 levels of genetic change (mRNA, microRNA, and somatic mutation) apparent in recurrent tumors and construct a new combinatorial prognostic risk model.We analyzed The Cancer Genome Atlas data (TCGA) to identify differentially expressed genes (mRNA/microRNA) in 46 recurrent vs 455 nonrecurrent thyroid tumors. Two exonic mutational pipelines were used to identify somatic mutations. Functional gene analysis was performed in cell-based assays in multiple thyroid cell lines. The prognostic value of genes was evaluated with TCGA datasets.We identified 128 new potential biomarkers associated with recurrence, including 40 mRNAs, 39 miRNAs, and 59 genetic variants. Among differentially expressed genes, modulation of FN1, ITGα3, and MET had a significant impact on thyroid cancer cell migration. Similarly, ablation of miR-486 and miR-1179 significantly increased migration of TPC-1 and SW1736 cells. We further utilized genes with a validated functional role and identified a 5-gene risk score classifier as an independent predictor of thyroid cancer recurrence.Our newly proposed risk model based on combinatorial mRNA and microRNA expression has potential clinical utility as a prognostic indicator of recurrence. These findings should facilitate earlier prediction of recurrence with implications for improving patient outcome by tailoring treatment to disease risk and increasing posttreatment surveillance.
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