Gade Laboratory for Pathology, Department of Clinical Medicine, Faculty of Medicine, University of Bergen, 5020 Bergen, Norway.
Centre for Cancer Biomarkers (CCBIO), Faculty of Medicine, University of Bergen, 5020 Bergen, Norway.
Int J Mol Sci. 2021 Nov 4;22(21):11960. doi: 10.3390/ijms222111960.
Knowledge on the role of miR changes in tumor stroma for cancer progression is limited. This study aimed to investigate the role of miR dysregulation in cancer-associated fibroblasts (CAFs) in oral squamous cell carcinoma (OSCC). CAF and normal oral fibroblasts (NOFs) were isolated from biopsies of OSCC patients and healthy individuals after informed consent and grown in 3D collagen gels. Total RNA was extracted. Global miR expression was profiled using Illumina version 2 panels. The functional impact of altered miR-204 expression in fibroblasts on their phenotype and molecular profile was investigated using mimics and inhibitors of miR-204. Further, the impact of miR-204 expression in fibroblasts on invasion of adjacent OSCC cells was assessed in 3D-organotypic co-cultures. Unsupervised hierarchical clustering for global miR expression resulted in separate clusters for CAF and NOF. SAM analysis identified differential expression of twelve miRs between CAF and NOF. Modulation of miR-204 expression did not affect fibroblast cell proliferation, but resulted in changes in the motility phenotype, expression of various motility-related molecules, and invasion of the adjacent OSCC cells. 3' UTR miR target reporter assay showed ITGA11 to be a direct target of miR-204. This study identifies differentially expressed miRs in stromal fibroblasts of OSCC lesions compared with normal oral mucosa and it reveals that one of the significantly downregulated miRs in CAF, miR-204, has a tumor-suppressive function through inhibition of fibroblast migration by modulating the expression of several different molecules in addition to directly targeting ITGA11.
miR 在肿瘤基质中作用的知识对癌症进展的了解有限。本研究旨在探讨口腔鳞状细胞癌 (OSCC) 中癌相关成纤维细胞 (CAF) 中 miR 失调的作用。从知情同意后 OSCC 患者和健康个体的活检中分离 CAF 和正常口腔成纤维细胞 (NOF),并在 3D 胶原凝胶中培养。提取总 RNA。使用 Illumina 版本 2 面板对全局 miR 表达进行分析。使用 miR-204 模拟物和抑制剂研究改变成纤维细胞中 miR-204 表达对其表型和分子特征的功能影响。此外,在 3D 器官型共培养物中评估了成纤维细胞中 miR-204 表达对相邻 OSCC 细胞侵袭的影响。 全局 miR 表达的无监督层次聚类导致 CAF 和 NOF 分别聚类。SAM 分析确定了 CAF 和 NOF 之间十二种 miRs 的差异表达。miR-204 表达的调节不会影响成纤维细胞的增殖,但会导致运动表型的变化、各种运动相关分子的表达以及相邻 OSCC 细胞的侵袭。3'UTR miR 靶标报告基因检测显示 ITGA11 是 miR-204 的直接靶标。 本研究鉴定了与正常口腔黏膜相比,OSCC 病变基质成纤维细胞中差异表达的 miRs,并且揭示了 CAF 中显著下调的 miRs 之一 miR-204 通过抑制几种不同分子的表达来抑制成纤维细胞迁移,从而具有肿瘤抑制功能除了直接靶向 ITGA11 之外。