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An Oncogenic Hepatocyte-Induced Orthotopic Mouse Model of Hepatocellular Cancer Arising in the Setting of Hepatic Inflammation and Fibrosis
Published on: September 12, 2019
miR-221 silencing blocks hepatocellular carcinoma and promotes survival
Jong-Kook Park1, Takayuki Kogure, Gerard J Nuovo
1College of Pharmacy, Ohio State University, Columbus, Ohio 43210, USA.
Abstract:
Patients with advanced hepatocellular carcinoma (HCC) face a dismal prognosis because of a lack of any effective therapies. To address this situation, we conducted a preclinical investigation of the therapeutic efficacy of oligonucleotides directed against the oncogenic microRNA miR-221, which has been implicated in HCC. Of 9 chemistries evaluated, we determined that a 2'-O-methyl phosphorothioate-modified anti-miR-221 oligonucleotide was most effective at reducing proliferation in vitro. A cholesterol-modified isoform of anti-miR-221 (chol-anti-miR-221) exhibited improved pharmacokinetics and liver tissue distribution compared with unmodified oligonucleotide. Chol-anti-miR-221 significantly reduced miR-221 levels in liver within a week of intravenous administration and in situ hybridization studies confirmed accumulation of the oligonucleotide in tumor cells in vivo. Within the same period, chol-anti-miR-221 reduced tumor cell proliferation and increased markers of apoptosis and cell-cycle arrest, elevating the tumor doubling time and increasing mouse survival. Taken together, our findings offer a preclinical proof of efficacy for chol-anti-miR-221 in a valid orthotopic mouse model of HCC, suggesting that this targeted agent could benefit treatment for patients with advanced HCC.
Insights
A novel oligonucleotide therapy targeting miR-221 shows promise for advanced hepatocellular carcinoma (HCC). This treatment reduced tumor growth and improved survival in preclinical models, offering hope for effective HCC therapies.
Area of Science:
- Oncology
- Molecular Biology
- Hepatology
Background:
- Advanced hepatocellular carcinoma (HCC) lacks effective treatments.
- The microRNA miR-221 is implicated in HCC development and progression.
Purpose of the Study:
- To investigate the therapeutic potential of anti-miR-221 oligonucleotides against HCC.
- To evaluate a cholesterol-modified anti-miR-221 (chol-anti-miR-221) for improved delivery and efficacy.
Main Methods:
- Screening of oligonucleotide chemistries to identify effective anti-miR-221 agents.
- Preclinical testing of chol-anti-miR-221 in an orthotopic mouse model of HCC.
- Assessment of miR-221 levels, tumor cell proliferation, apoptosis, and cell-cycle arrest.
Main Results:
- A 2'-O-methyl phosphorothioate-modified anti-miR-221 was most effective in vitro.
- Chol-anti-miR-221 demonstrated improved pharmacokinetics and liver distribution.
- In vivo, chol-anti-miR-221 reduced miR-221 levels, inhibited tumor proliferation, and increased survival.
Conclusions:
- Chol-anti-miR-221 provides a preclinical proof-of-concept for HCC therapy.
- Targeting miR-221 with chol-anti-miR-221 represents a potential new strategy for advanced HCC.
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