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Updated: Jul 1, 2025

A Three-Dimensional Spheroid Model to Investigate the Tumor-Stromal Interaction in Hepatocellular Carcinoma
Published on: September 30, 2021
Systematic integration of molecular and clinical approaches in HCV-induced hepatocellular carcinoma
Ciniso Sylvester Shabangu1,2, Wen-Hsiu Su3,4, Chia-Yang Li1
1Graduate Institute of Medicine, Kaohsiung Medical University, Kaohsiung, Taiwan.
Background:
MicroRNAs (miRNAs) play a crucial role in gene expression and regulation, with dysregulation of miRNA function linked to various diseases, including hepatitis C virus (HCV)-related hepatocellular carcinoma (HCC). There is still a gap in understanding the regulatory relationship between miRNAs and mRNAs in HCV-HCC. This study aimed to investigate the function and effects of persistent HCV-induced miRNA expression on gene regulation in HCC.
Methods:
MiRNA array data were used to identify differentially expressed miRNAs and their targets, and miRNAs were analyzed via DIANA for KEGG pathways, gene ontology (GO) functional enrichment, and Ingenuity Pathways Analysis (IPA) for hepatotoxicity, canonical pathways, associated network functions, and interactive networks.
Results:
Seventeen miRNAs in L-HCV and 9 miRNAs in S-HCV were differentially expressed, and 5 miRNAs in L-HCV and 5 miRNAs in S-HCV were significantly expressed in liver hepatocellular carcinoma (LIHC) tumors. Grouped miRNA survival analysis showed that L-HCV miRNAs were associated with survival in LIHC, and miRNA‒mRNA targets regulated viral carcinogenesis and cell cycle alteration through cancer pathways in LIHC. MiRNA-regulated RCN1 was suppressed through miRNA-oncogene interactions, and suppression of RCN1 inhibited invasion and migration in HCC.
Conclusion:
Persistent HCV infection induced the expression of miRNAs that act as tumor suppressors by inhibiting oncogenes in HCC. RCN1 was suppressed while miRNAs were upregulated, demonstrating an inverse relationship. Therefore, hsa-miR-215-5p, hsa-miR-10b-5p, hsa-let-7a-5p and their target RCN1 may be ideal biomarkers for monitoring HCV-HCC progression.
Insights
Persistent hepatitis C virus (HCV) infection upregulates tumor-suppressing microRNAs (miRNAs) that inhibit oncogenes in liver cancer (HCC). Specific miRNAs and their target RCN1 may serve as biomarkers for monitoring HCV-HCC progression.
Area of Science:
- Molecular Biology
- Oncology
- Virology
Background:
- MicroRNAs (miRNAs) are key regulators of gene expression.
- Dysregulated miRNA function is implicated in diseases like hepatitis C virus (HCV)-related hepatocellular carcinoma (HCC).
- The regulatory interplay between miRNAs and mRNAs in HCV-HCC remains incompletely understood.
Purpose of the Study:
- To investigate the functional impact of persistent HCV-induced miRNA expression on gene regulation in HCC.
- To identify specific miRNAs and their mRNA targets involved in HCV-induced liver cancer.
Main Methods:
- Differential expression analysis of miRNAs using array data.
- Bioinformatic analyses including DIANA, KEGG pathway, Gene Ontology (GO), and Ingenuity Pathways Analysis (IPA).
- Survival analysis and investigation of miRNA-mRNA interactions in liver hepatocellular carcinoma (LIHC) tumors.
Main Results:
- Seventeen (L-HCV) and 9 (S-HCV) differentially expressed miRNAs were identified, with 5 in each group significantly expressed in LIHC tumors.
- HCV-induced miRNAs were associated with survival in LIHC and regulated viral carcinogenesis and cell cycle pathways.
- MiRNA-mediated suppression of RCN1 inhibited HCC cell invasion and migration.
Conclusions:
- Persistent HCV infection induces tumor-suppressive miRNAs that inhibit oncogenes in HCC.
- An inverse relationship was observed between miRNA upregulation and RCN1 suppression.
- Specific miRNAs (hsa-miR-215-5p, hsa-miR-10b-5p, hsa-let-7a-5p) and RCN1 show potential as biomarkers for HCV-HCC progression monitoring.
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