首页> 外文期刊>Otolaryngology--head and neck surgery: official journal of American Academy of Otolaryngology-Head and Neck Surgery >Distinct epigenetic profiling in head and neck squamous cell carcinoma stem cells.
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Distinct epigenetic profiling in head and neck squamous cell carcinoma stem cells.

机译:在头颈部鳞状细胞癌干细胞中有明显的表观遗传学特征。

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OBJECTIVE: To identify unique epigenetic signature in cancer stem cells (CSCs) in head and neck squamous cell carcinoma (HNSCC). STUDY DESIGN: Molecular and microarray studies. SETTING: Tertiary referral center. SUBJECTS AND METHODS: Head and neck CSCs were isolated in HNSCC cells by CD44 staining and flow cytometry sorting. CSCs with highest CD44 expression (CD44(hi)) and non-stem cells (non-SCs) with lowest CD44 expression (CD44(low)) were then characterized for stemness gene expression and their responses to chemotherapeutic agents, followed by high-throughput epigenetic profiling using the Illumina BeadChip Array, targeting 28,544 CpG sites covering more than 14,956 genes. RESULTS: CD44(hi) CSCs expressed higher levels of stem cell markers and were more resistant to chemotherapeutic agents as compared to CD44(low) non-SCs. By DNA methylation microarray analysis, 17 hypomethylated and 9 hypermethylated genes were identified in CD44(hi) CSCs as compared to non-SCs in most HNSCC cell lines. Cluster analysis using these 26 genes showed that CD44(hi) CSCs were epigenetically distinct from the CD44(low) non-SCs in all 5 HNSCC cell lines. CONCLUSION: A unique epigenetic profile consisting of 17 hypomethylated and 9 hypermethylated genes was seen in HNSCC CSCs. These genes may be critically required in maintaining the stemness or pluripotency of CSCs and may represent novel molecular targets for anticancer therapies aimed at eradicating CSCs in HNSCC.
机译:目的:确定头颈部鳞状细胞癌(HNSCC)的癌症干细胞(CSCs)中独特的表观遗传学特征。研究设计:分子和微阵列研究。地点:第三级转诊中心。研究对象和方法:通过CD44染色和流式细胞仪分选,在HNSCC细胞中分离出头颈CSC。然后对CD44表达最高(CD44(hi))的CSC和CD44表达最低(CD44(low))的非干细胞(non-SCs)进行干基因表达及其对化学治疗剂反应的表征,然后进行高通量分析使用Illumina BeadChip阵列进行表观遗传学分析,靶向28,544个CpG位点,涵盖超过14,956个基因。结果:与CD44(低)非SCs相比,CD44(hi)CSCs表达的干细胞标记物水平更高,并且对化疗药物的耐药性更高。通过DNA甲基化微阵列分析,与大多数HNSCC细胞系中的非SC相比,在CD44(hi)CSC中鉴定出17个低甲基化和9个超甲基化基因。使用这26个基因进行的聚类分析表明,在所有5种HNSCC细胞系中,CD44(hi)CSC在表观遗传上均不同于CD44(low)非SCs。结论:在HNSCC CSCs中观察到由17个低甲基化和9个高甲基化基因组成的独特的表观遗传概况。这些基因对于维持CSC的干性或多能性可能是至关重要的,并且可能代表了旨在根除HNSCC中CSC的抗癌疗法的新型分子靶标。

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