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Analysis of MicroRNA-mRNA Interactions in Stem Cell-Enriched Fraction of Oral Squamous Cell Carcinoma

机译:口腔鳞状细胞癌中富含干细胞富集分数的MicroRNA-mRNA相互作用分析

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This study is an integrated analysis of the transcriptome profile microRNA (miRNA) and its experimentally validated mRNA targets differentially expressed in the tumorigenic stem-like fraction of oral squamous cell carcinoma (OSCC). We had previously reported the coexistence of multiple drug-resistant tumorigenic fractions, termed side population (SP1, SP2, and MP2), and a nontumorigenic fraction, termed main population (MP1), in oral cancer. These fractions displayed a self-renewal, regenerative potential and expressed known stemness-related cell surface markers despite functional differences. Flow cytometrically sorted pure fractions of SP1 and MP1 cells were subjected to differential expression analysis of both mRNAs and miRNAs. A significant upregulation of genes associated with inflammation, cell survival, cell proliferation, drug transporters, and antiapoptotic pathways, in addition to enhanced transcriptome reprogramming mediated by DNA-histone binding proteins and pattern recognition receptor-mediated signaling, was found to play a crucial role in the transformation of the nontumorigenic MP1 fraction to the tumorigenic SP1 fraction. We also identified several differentially expressed miRNAs that specifically target genes distinctive of tumorigenic SP1 fraction. miRNA-mediated downregulation of stemness-associated markers CD44 and CD147 and upregulation of CD151 may also account for the emergence and persistence of multiple tumorigenic stem cell fractions with varying degrees of malignancy. The phenotypic switch of cancer cells to stem-like OSCC cells mediated by transcriptomal regulation is effectual in addressing biological tumor heterogeneity and subsequent therapeutic resistance leading to a minimal residual disease (MRD) condition in oral cancer. A detailed study of the interplay of miRNAs, mRNA, and the cellular phases involved in the gradual transition of nontumorigenic cancer cells to tumorigenic stem-like cells in solid tumors would enable detection and development of a treatment regimen that targets and successfully eliminates multiple, drug-resistant fractions of cancer cells.
机译:该研究是对转录组型谱的微小RORNA(miRNA)的综合分析及其实验验证的mRNA靶在口腔鳞状细胞癌(OSCC)的致瘤干燥型分数中差异表达。我们先前曾报道过多种耐药致毒性级分的共存,侧面群(SP1,SP2和MP2)和口腔癌中所谓的主要群体(MP1)的非致原因分数。尽管有功能差异,这些级分显示了自我更新,再生潜在的并且表达了已知的茎干相关细胞表面标记。对SP1和MP1细胞的流动细胞血巧分选纯分数经过MRNA和miRNA的差异表达分析。发现,除了增强由DNA-组蛋白结合蛋白和模式识别受体介导的信号传导的增强的转录组重编程之外,还存在显着上调与炎症,细胞存活,细胞增殖,药物转运蛋白和抗曝光途径的基因。在Nontumorigenic MP1级分的转化到致瘤SP1级分。我们还确定了几种差异表达的miRNA,其特异性地靶向瘤瘤SP1分数的基因。 miRNA介导的茎相关标志物的下调CD44和CD147和CD151的上调也可能考虑多种致瘤干细胞级分具有不同程度的恶性肿瘤的出现和持续性。癌细胞的表型切换到由转录常数调节介导的干燥的OSCC细胞是有效的,用于解决生物肿瘤异质性和随后的治疗性,导致口腔癌中的最小残留疾病(MRD)病症。关于MiRNA,mRNA和细胞相的相互作用的详细研究在固体瘤中逐渐过渡到致瘤干燥的细胞中的固体瘤中的细胞将能够检测和开发靶向并成功消除多种药物的治疗方案 - 癌细胞的级分。

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