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Chemoprevention of hepatocellular carcinoma using N-acetylgalactosamine-conjugated siRNAs
Gianna Maggiore1, Meng-Hsiung Hsieh1, Amaey Bellary1
1Children's Research Institute, Departments of Pediatrics and Internal Medicine, Center for Regenerative Science and Medicine, Simmons Comprehensive Cancer Center, Children's Research Institute Mouse Genome Engineering Core, University of Texas Southwestern Medical Center, Dallas, TX 75390, USA.
Abstract:
The ability to prevent hepatocellular carcinoma (HCC) in patients with chronic liver disease remains an unmet clinical need. We performed a head-to-head comparison of N-acetylgalactosamine (GalNAc)-conjugated small interfering RNA (siRNA)-mediated inhibition of five genes (CDK1, PD-L1, CTNNB1, SMYD3, ANLN) to prevent cancer in four distinct autochthonous HCC mouse models. siRNA targeting Cdk1 and Anln (siCdk1 and siAnln, respectively) increased overall survival in the CTNNB1/MYC hydrodynamic transfection (HDT) model, in which HCC formation is driven by oncogenes. Both long-term and transient dosing of siCtnnb1 or siAnln prevented cancer development in the NRASG12V/shp53-driven HDT model. siCdk1 and siAnln prevented cancer in a diethylnitrosamine/phenobarbital model, in which tumor formation is driven by mutagenesis and chemical injury. Moreover, siCtnnb1 and siAnln decreased cancer development in a metabolic dysfunction-associated steatohepatitis (MASH) model driven by a Western diet and carbon tetrachloride (CCl4). Given that the use of siAnln was effective in several models, we validated Anln effects using Cre-lox and found that histologic features of MASH and HCC development were independently reduced. This demonstrates that siRNAs are safe and effective in preventing HCC in a large panel of preclinical cancer models, and identifies ANLN as an effective chemoprevention target.
Insights
Small interfering RNA (siRNA) therapies targeting ANLN show promise for preventing hepatocellular carcinoma (HCC) in preclinical models. ANLN inhibition effectively reduced cancer development across diverse liver disease models, highlighting its potential as a chemoprevention strategy.
Area of Science:
- Hepatology
- Oncology
- RNA Therapeutics
Background:
- Hepatocellular carcinoma (HCC) prevention in chronic liver disease is a critical unmet need.
- N-acetylgalactosamine (GalNAc)-conjugated small interfering RNA (siRNA) offers a targeted therapeutic approach.
Purpose of the Study:
- To compare the efficacy of five siRNA-mediated gene inhibitions for HCC prevention.
- To identify effective siRNA targets across various preclinical HCC models.
Main Methods:
- Head-to-head comparison of GalNAc-siRNAs targeting CDK1, PD-L1, CTNNB1, SMYD3, and ANLN.
- Evaluation in four distinct autochthonous HCC mouse models: CTNNB1/MYC HDT, NRASG12V/shp53 HDT, DEN/phenobarbital, and MASH models.
Main Results:
- siRNA targeting ANLN (siAnln) and CDK1 (siCdk1) improved survival in the CTNNB1/MYC HDT model.
- siAnln and siCtnnb1 prevented cancer in NRASG12V/shp53 and DEN/phenobarbital models.
- siAnln and siCtnnb1 reduced cancer development in a MASH model; ANLN inhibition was further validated using Cre-lox, reducing MASH and HCC features.
Conclusions:
- siRNAs are safe and effective for HCC prevention in multiple preclinical models.
- ANLN is identified as a validated and effective target for HCC chemoprevention.
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