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水烟吸食暴露会使一组与人类头颈癌发生和预后相关的基因失调。

Water-Pipe Smoking Exposure Deregulates a Set of Genes Associated with Human Head and Neck Cancer Development and Prognosis.

作者信息

López-Ozuna Vanessa M, Gupta Ishita, Kiow Ryan Liu Chen, Matanes Emad, Kheraldine Hadeel, Yasmeen Amber, Khalil Ashraf, Vranic Semir, Al Moustafa Ala-Eddin, Farsi Halema F Al

机构信息

Segal Cancer Center, Lady Davis Institute of Medical Research, JGH, McGill University, Montreal, QC H3T IE2, Canada.

College of Medicine, QU Health, Qatar University, Doha PO Box 2713, Qatar.

出版信息

Toxics. 2020 Sep 18;8(3):73. doi: 10.3390/toxics8030073.

Abstract

Water-pipe smoking (WPS) is becoming the most popular form of tobacco use among the youth, especially in the Middle East, replacing cigarettes rapidly and becoming a major risk of tobacco addiction worldwide. Smoke from WPS contains similar toxins as those present in cigarette smoke and is linked directly with different types of cancers including lung and head and neck (HN) carcinomas. However, the underlying molecular pathways and/or target genes responsible for the carcinogenic process are still unknown. In this study, human normal oral epithelial (HNOE) cells, NanoString PanCancer Pathways panel of 770 gene transcripts and quantitative real-time polymerase chain reaction (qRT-PCR) analysis were applied to discover differentially expressed genes (DEG) modulated by WPS. In silico analysis was performed to analyze the impact of these genes in HN cancer patient's biology and outcome. We found that WPS can induce the epithelial-mesenchymal transition (EMT: hallmark of cancer progression) of HNOE cells. More significantly, our analysis of NanoString revealed 23 genes deregulated under the effect of WPS, responsible for the modulation of cell cycle, proliferation, migration/invasion, apoptosis, signal transduction, and inflammatory response. Further analysis was performed using qRT-PCR of HNOE WPS-exposed and unexposed cells supported the reliability of our NanoString data. Moreover, we demonstrate those DEG to be upregulated in cancer compared with normal tissue. Using the Kaplan-Meier analysis, we observed a significant association between WPS-deregulated genes and relapse-free survival/overall survival in HN cancer patients. Our findings imply that WPS can modulate EMT as well as a set of genes that are directly involved in human HN carcinogenesis, thereby affecting HN cancer patients' survival.

摘要

水烟吸食(WPS)正成为年轻人中最流行的烟草使用形式,尤其是在中东地区,它正在迅速取代香烟,并成为全球烟草成瘾的主要风险因素。水烟吸食产生的烟雾中含有的毒素与香烟烟雾中的毒素相似,并且与包括肺癌以及头颈(HN)癌在内的不同类型癌症直接相关。然而,导致致癌过程的潜在分子途径和/或靶基因仍然未知。在本研究中,我们应用人正常口腔上皮(HNOE)细胞、包含770个基因转录本的NanoString泛癌通路分析板以及定量实时聚合酶链反应(qRT-PCR)分析来发现受水烟吸食调节的差异表达基因(DEG)。我们进行了计算机分析,以分析这些基因对HN癌症患者生物学特性和预后的影响。我们发现水烟吸食可诱导HNOE细胞发生上皮-间质转化(EMT:癌症进展的标志)。更重要的是,我们对NanoString的分析显示,在水烟吸食的影响下有23个基因失调,这些基因负责调节细胞周期、增殖、迁移/侵袭、凋亡、信号转导和炎症反应。使用qRT-PCR对暴露于水烟吸食和未暴露于水烟吸食的HNOE细胞进行的进一步分析支持了我们NanoString数据的可靠性。此外,我们证明与正常组织相比,这些差异表达基因在癌症中上调。使用Kaplan-Meier分析,我们观察到水烟吸食失调基因与HN癌症患者的无复发生存率/总生存率之间存在显著关联。我们的研究结果表明,水烟吸食可调节EMT以及一组直接参与人类HN致癌过程的基因,从而影响HN癌症患者的生存。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/664a/7560251/91e0277408fb/toxics-08-00073-g001.jpg

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