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Dysregulated miRNA Expression and Its Association with Immune Checkpoints in Head and Neck Cancer
Mohd Shuaib1, Diksha Saini2, Gargi Sharma3
1Molecular Signaling & Drug Discovery Laboratory, Department of Biochemistry, Central University of Punjab, Guddha, Bathinda 151401, India.
Abstract:
Background: Head and neck cancer (HNC) remains a global health challenge with a poor 5-year survival rate among patients with relapsed or advanced-stage disease. Immune checkpoint blockade therapies have emerged as a promising approach to improve outcomes; however, their effectiveness is limited, with response rates of only 15-20% because of immune evasion mechanisms. MicroRNA (miRNA) dysregulation plays a key role in facilitating such immune evasion. In this study, we aim to identify specific miRNAs whose altered expression contributes to immune escape in HNC. Methods: We employed an integrated bioinformatics approach, incorporating differential expression analysis, survival analysis, target prediction, KEGG immune pathway analysis, a protein-protein interaction network, and the identification of hub genes using in silico tools. Results: Our analysis revealed that a high expression of miR-18a and miR-2355 was associated with reduced survival, with the median survival decreasing from 42.9 to 27.8 months, respectively, in advanced-stage patients. Conversely, a low expression of let-7c and miR-6510 was linked to poor prognosis, with survival decreasing from 40.1 to 19.2 months and from 50.1 to 26.8 months, respectively, across disease progression. Further pathway analysis revealed that these miRNAs are significantly involved in the regulation of key immune evasion signaling pathways, including T cell receptor, PD-L1/PD-1 checkpoint, JAK-STAT, TGF-beta, NF-kappa B, and TNF signaling pathways. Hub gene analysis identified AKT1, STAT3, NFKB1, CD4, IL2RB, TLR4, and CTLA-4 as potential dysregulated miRNA targets, with enrichment in immune-related signaling pathways. Conclusions: Taken together, these findings suggest that targeting these miRNAs could modulate immune evasion mechanisms and potentially enhance the efficacy of ICB therapies in HNC.
Insights
Specific microRNAs (miRNAs) are linked to immune evasion in head and neck cancer (HNC). Targeting these miRNAs may improve immune checkpoint blockade therapy effectiveness for HNC patients.
Area of Science:
- Oncology
- Immunology
- Genetics
Background:
- Head and neck cancer (HNC) has poor survival rates, especially in advanced stages.
- Immune checkpoint blockade (ICB) therapy shows limited efficacy (15-20%) due to immune evasion.
- MicroRNA (miRNA) dysregulation is implicated in HNC immune evasion.
Purpose of the Study:
- Identify specific miRNAs contributing to immune escape in HNC.
- Investigate the role of miRNA alterations in HNC progression and treatment resistance.
Main Methods:
- Integrated bioinformatics analysis including differential expression, survival, and pathway analyses.
- In silico tools used for target prediction and protein-protein interaction network construction.
- Identification of hub genes associated with miRNA dysregulation in HNC.
Main Results:
- High miR-18a and miR-2355 expression correlated with reduced survival in advanced HNC.
- Low let-7c and miR-6510 expression linked to poor prognosis and disease progression.
- Identified miRNAs regulate key immune evasion pathways (e.g., PD-L1/PD-1, JAK-STAT, TGF-beta) and target genes like AKT1, STAT3, and CTLA-4.
Conclusions:
- Specific miRNAs (miR-18a, miR-2355, let-7c, miR-6510) are key regulators of immune evasion in HNC.
- These miRNAs represent potential therapeutic targets to overcome resistance to ICB therapy.
- Modulating miRNA expression could enhance ICB efficacy in HNC patients.
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