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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
MTDH antisense oligonucleotides reshape the immunosuppressive tumor microenvironment to sensitize Hepatocellular
Jing-Lei Wan1, Biao Wang2, Mei-Lan Wu3
1Liver Cancer Institute, Zhongshan Hospital, State Key Laboratory of Genetic Engineering, Fudan University, Shanghai, 200032, PR China; Key Laboratory of Carcinogenesis and Cancer Invasion, Fudan University, Ministry of Education, Shanghai, 200032, PR China.
Abstract:
Immune checkpoint blockade (ICB) therapy is an important treatment option for individuals with cancer, but it has certain limitations. Identifying a better target that can overcome tumor immune escape and stimulate T cell activity is critical. This research aimed to delve into the molecular mechanism underlying the immunoregulatory function of metadherin (MTDH), which is a novel and potential therapeutic target in hepatocellular cancer (HCC). A small interfering RNA library was screened using the luciferase reporter assay and PD-L1 promoter. The Cancer Genome Atlas database and HCC tissues were used to investigate the relationship between MTDH and PD-L1. The association between MTDH and β-catenin/lymphoid enhancer binding factor (LEF-1) was discovered by co-immunoprecipitation. The chromatin immunoprecipitation assay was used to investigate the interaction of MTDH with the PD-L1 promoter when LEF-1 expression was silenced. Locked nucleic acid antisense oligonucleotides (ASOs) were used to inhibit MTDH. We utilized in vitro co-cultures and in vivo syngeneic tumor development experiments to confirm the effectiveness of MTDH ASO combined with PD-1 monoclonal antibody (mAb). MTDH was demonstrated to be a PD-L1 modulator. MTDH increased PD-L1 expression and upregulated PD-L1 transcriptional activity through β-catenin/LEF-1 signaling. More importantly, MTDH ASO improved the anti-PD-1 response and increased cytotoxic T-cell infiltration in PD-1 mAb-treated malignancies. MTDH effectively predicts the therapeutic efficacy of ICB therapy. Our results imply that combining MTDH ASO with PD-1 mAb could be a promising therapeutic strategy for HCC. In addition, MTDH is a potential novel biomarker for predicting the effectiveness of immune checkpoint inhibitor treatment.
Insights
Metadherin (MTDH) regulates PD-L1 expression in hepatocellular cancer (HCC). Inhibiting MTDH enhances anti-PD-1 therapy by increasing T-cell activity, suggesting MTDH as a therapeutic target and biomarker for immune checkpoint blockade.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- Immune checkpoint blockade (ICB) therapy shows promise for cancer treatment but faces limitations due to tumor immune escape.
- Identifying novel targets to enhance T cell activity and overcome resistance is crucial for improving ICB efficacy.
Purpose of the Study:
- To investigate the molecular mechanism of metadherin (MTDH) in regulating immune responses within hepatocellular cancer (HCC).
- To evaluate MTDH as a potential therapeutic target and predictive biomarker for ICB therapy in HCC.
Main Methods:
- Screening of a small interfering RNA library targeting the PD-L1 promoter using luciferase reporter assays.
- Analysis of The Cancer Genome Atlas and HCC tissues to correlate MTDH and PD-L1 expression.
- Co-immunoprecipitation and chromatin immunoprecipitation assays to elucidate MTDH's role in the β-catenin/LEF-1 signaling pathway and PD-L1 promoter interaction.
- In vitro and in vivo experiments using MTDH antisense oligonucleotides (ASOs) in combination with anti-PD-1 monoclonal antibodies (mAbs).
Main Results:
- MTDH was identified as a modulator of PD-L1 expression, upregulating its transcription via the β-catenin/LEF-1 pathway.
- MTDH inhibition using ASOs enhanced the efficacy of anti-PD-1 therapy in preclinical models.
- Combined MTDH ASO and anti-PD-1 mAb treatment increased cytotoxic T-cell infiltration and improved anti-tumor responses.
- MTDH expression levels correlated with the therapeutic efficacy of ICB.
Conclusions:
- MTDH plays a significant role in regulating PD-L1 expression and immune evasion in HCC.
- Targeting MTDH in combination with PD-1 blockade represents a promising therapeutic strategy for HCC.
- MTDH serves as a potential biomarker for predicting patient response to ICB therapy.
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