DNA methylation-based depiction of the immune microenvironment and immune-associated long non-coding RNAs in oral cavity squamous cell carcinomas

免疫系统 生物 DNA甲基化 肿瘤微环境 癌症研究 细胞毒性T细胞 表观遗传学 免疫疗法 免疫学 遗传学 基因 基因表达 体外
作者
Naiade Calanca,Ana Lúcia Noronha Francisco,Daniela Bizinelli,Hellen Kuasne,Mateus Camargo Barros‐Filho,Bianca Campos Troncarelli Flores,Clóvis Antônio Lopes Pinto,Cláudia Aparecida Rainho,Milena Botelho Pereira Soares,Fábio Albuquerque Marchi,Luiz Paulo Kowalski,Sílvia Regina Rogatto
出处
期刊:Biomedicine & Pharmacotherapy [Elsevier BV]
卷期号:167: 115559-115559 被引量:4
标识
DOI:10.1016/j.biopha.2023.115559
摘要

Oral cavity squamous cell carcinoma (OSCC) is a complex and dynamic disease characterized by clinicopathological and molecular heterogeneity. Spatial and temporal heterogeneity of cell subpopulations has been associated with cancer progression and implicated in the prognosis and therapy response. Emerging evidence indicates that aberrant epigenetic profiles in OSCC may foster an immunosuppressive tumor microenvironment by modulating the expression of immune-related long non-coding RNAs (lncRNAs). DNA methylation analysis was performed in 46 matched OSCC and normal adjacent tissue samples using a genome-wide platform (Infinium HumanMethylation450 BeadChip). Reference-based computational deconvolution (MethylCIBERSORT) was applied to infer the immune cell composition of the bulk samples. The expression levels of genes encoding immune markers and differentially methylated lncRNAs were investigated using The Cancer Genome Atlas dataset. OSCC specimens presented distinct immune cell composition, including the enrichment of monocyte lineage cells, natural killer cells, cytotoxic T-lymphocytes, regulatory T-lymphocytes, and neutrophils. In contrast, B-lymphocytes, effector T-lymphocytes, and fibroblasts were diminished in tumor samples. The hypomethylation of three immune-associated lncRNAs (MEG3, MIR155HG, and WFDC21P) at individual CpG sites was confirmed by bisulfite-pyrosequencing. Also, the upregulation of a set of immune markers (FOXP3, GZMB, IL10, IL2RA, TGFB, IFNG, TDO2, IDO1, and HIF1A) was detected. The immune cell composition, immune markers alteration, and dysregulation of immune-associated lncRNAs reinforce the impact of the immune microenvironment in OSCC. These concurrent factors contribute to tumor heterogeneity, suggesting that epi-immunotherapy could be an efficient alternative to treat OSCC.
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