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Updated: Jan 29, 2026

A "Patient-Like" Orthotopic Syngeneic Mouse Model of Hepatocellular Carcinoma Metastasis
Published on: October 24, 2015
Bioengineered Let-7c Inhibits Orthotopic Hepatocellular Carcinoma and Improves Overall Survival with Minimal
Joseph L Jilek1, Qian-Yu Zhang1, Mei-Juan Tu1
1Department of Biochemistry & Molecular Medicine, UC Davis School of Medicine, Sacramento, CA 95817, USA.
Abstract:
Hepatocellular carcinoma (HCC) remains a leading cause of cancer-related deaths, warranting better therapies. Restoration of tumor-suppressive microRNAs depleted in hepatocellular carcinoma represents a new therapeutic strategy. Herein, we sought to identify a potent microRNA (miRNA) agent that could alleviate HCC tumor burden and improve survival. Among a collection of bioengineered noncoding RNA molecules produced through bacterial fermentation, we identified let-7c agent as the most potent inhibitor of HCC cell viability. Bioengineered let-7c selectively modulated target gene expression (Lin-28 homolog B [LIN28B], AT-rich interactive domain-containing protein 3B [ARID3B], B cell lymphoma-extra large [Bcl-xl], and c-Myc) in HCC cells, and consequently induced apoptosis and inhibited tumorsphere growth. When formulated with liposomal-branched polyethylenimine polyplex, bioengineered let-7c exhibited serum stability up to 24 h. Furthermore, liposomal polyplex-formulated let-7c could effectively reduce tumor burden and progression in orthotopic HCC mouse models, while linear polyethyleneimine-formulated let-7c to a lower degree, as revealed by live animal and ex vivo tissue imaging studies. This was also supported by reduced serum α-fetoprotein and bilirubin levels in let-7c-treated mice. In addition, lipopolyplex-formulated let-7c extended overall survival of HCC tumor-bearing mice and elicited no or minimal immune responses in healthy immunocompetent mice and human peripheral blood mononuclear cells. These results demonstrate that bioengineered let-7c is a promising molecule for advanced HCC therapy, and liposomal polyplex is a superior modality for in vivo RNA delivery.
Insights
Bioengineered let-7c microRNA effectively inhibits hepatocellular carcinoma (HCC) growth and improves survival in mice. Liposomal delivery enhances its stability and therapeutic efficacy for advanced HCC treatment.
Area of Science:
- Oncology
- Molecular Biology
- Biotechnology
Background:
- Hepatocellular carcinoma (HCC) is a major cause of cancer mortality.
- Restoring tumor-suppressive microRNAs (miRNAs) is a novel therapeutic approach for HCC.
- Identifying potent miRNA agents is crucial for effective HCC treatment.
Purpose of the Study:
- To identify a potent miRNA agent to reduce HCC tumor burden and enhance survival.
- To evaluate the therapeutic potential of bioengineered let-7c in HCC.
- To assess the efficacy of different delivery formulations for let-7c in vivo.
Main Methods:
- Bacterial fermentation to produce bioengineered noncoding RNA molecules.
- In vitro assessment of let-7c's effect on HCC cell viability and gene expression.
- In vivo studies using orthotopic HCC mouse models with liposomal polyplex formulation.
- Analysis of tumor burden, survival rates, and immune response.
Main Results:
- Bioengineered let-7c potently inhibited HCC cell viability by modulating key target genes (LIN28B, ARID3B, Bcl-xl, c-Myc).
- Liposomal polyplex formulation of let-7c demonstrated enhanced serum stability and significant reduction in tumor burden and progression in HCC mouse models.
- let-7c treatment led to reduced serum biomarkers (α-fetoprotein, bilirubin), extended survival, and minimal immune response.
Conclusions:
- Bioengineered let-7c is a promising therapeutic candidate for advanced HCC.
- Liposomal polyplex represents a superior delivery system for in vivo RNA-based HCC therapy.
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