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September 12, 2025Biomedicines10 citationsOpen Access

MicroRNA Landscape in Hepatocellular Carcinoma: Metabolic Re-Wiring, Predictive and Diagnostic Biomarkers, and Emerging Therapeutic Targets

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DLDimitris LiapopoulosPSPanagiotis SarantisTBTheodora Biniari

Key Points

  • MicroRNA signatures can differentiate early-stage hepatocellular carcinoma from benign liver diseases, enhancing diagnostic accuracy.
  • Loss of tumor-suppressor microRNAs significantly impacts metabolic pathways, promoting tumor growth and altering cell behavior.
  • The use of microRNA-based therapies shows promise in reinforcing anti-tumor responses, highlighting a potential for future clinical applications.
  • Current challenges in delivering microRNA therapeutics necessitate innovative approaches to improve their effectiveness and safety in clinical settings.

Abstract

Hepatocellular carcinoma (HCC) remains a leading cause of cancer-related mortality, in part due to late diagnosis and limited prognostic tools. In recent years, microRNAs, small, non-coding regulators of gene expression, have emerged as key modulators of tumor metabolism, microenvironmental crosstalk, and therapeutic response in HCC. This narrative review synthesizes evidence published from January 2000 through April 2025, focusing on four interrelated themes: (1) miRNA-driven metabolic rewiring; (2) circulating and exosomal miRNAs as diagnostic and (3) predictive biomarkers; (4) miRNA-based therapeutic strategies. We conducted a targeted PubMed search using terms related to HCC, miRNA biology, biomarkers, metabolism, and therapy, supplemented by manual reference mining. Preclinical and clinical studies reveal that loss of tumor-suppressor miRNAs and gain of oncomiRs orchestrate glycolysis, lipid and glutamine metabolism, and stromal-immune remodeling. Circulating miRNA signatures, including single- and multimarker panels, demonstrate diagnostic AUCs up to 0.99 for early-stage HCC and distinguish HCC from cirrhosis more accurately than alpha-fetoprotein. Predictively, miRNAs such as miR-21 and miR-486-3p correlate with sorafenib resistance, while tissue and exosomal miRNAs forecast recurrence and survival after curative therapy. Therapeutic manipulation, restoring tumor-suppressor miRNAs via mimics or AAV vectors and inhibiting oncomiRs with antagomirs or LNA oligonucleotides, yields potent anti-tumor effects in models, affecting cell cycle, apoptosis, angiogenesis, and immune activation. Despite technical and delivery challenges, early-phase trials validate target engagement and inform safety optimization. In this review, we highlight opportunities to integrate miRNA biomarkers into surveillance algorithms and combine miRNA therapeutics with existing modalities, charting a roadmap toward precision-guided management of HCC.

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Cite This Study

Liapopoulos et al. (2025) studied this question.

synapsesocial.com/papers/68d44a4031b076d99fa53849https://doi.org/10.3390/biomedicines13092243
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