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Updated: Feb 15, 2026

A "Patient-Like" Orthotopic Syngeneic Mouse Model of Hepatocellular Carcinoma Metastasis
Published on: October 24, 2015
Saquinavir induces pyroptosis through the OTUD5-JAK1-GSDME axis in hepatocellular carcinoma
Leyi Yao1, Yu Yao2, Wanying He2
1Zhanjiang Institute of Clinical Medicine, Central People's Hospital of Zhanjiang, Zhanjiang, 524000, China.
Abstract:
Pyroptosis is a newly defined form of programmed cell death characterized by plasma membrane perforation, release of cellular contents, and a robust inflammatory response, thereby sensitizing tumors to existing anticancer therapies. Our study aimed to screen a panel of clinically used antiviral drugs to identify candidate compounds capable of inducing pyroptosis in hepatocellular carcinoma (HCC) cells by evaluating cell viability and monitoring morphological changes. In vitro experiments using two HCC cell lines and xenograft models were established to investigate the mechanism and combined therapeutic efficacy of the candidate drugs. Our results showed that saquinavir (SAQ) significantly inhibited HCC cell proliferation and triggered caspase-3-GSDME dependent pyroptosis. Mechanistically, SAQ significantly blocked glucose metabolism by inhibiting both glycolysis and tricarboxylic acid (TCA) cycles, reducing lactate accumulation and promoting ROS outburst. Additionally, SAQ potently targets the deubiquitinase OTUD5, accelerating the ubiquitin-proteasome mediated degradation of JAK1 and resulting in mitochondria disruption, which further activated the caspase-3-GSDME axis to induce pyroptosis. Furthermore, the combination of SAQ with sorafenib, a first-line therapeutic agent for HCC, exhibited synergistic antitumor activity both in vitro and in the nude mouse model. These findings not only identify SAQ as a novel pyroptosis-inducer, but also clarify the critical role of the OTUD5-JAK1-GSDME axis in resisting pyroptosis, which may further provide experimental evidence and potential new strategies for treating HCC.
Insights
Saquinavir induces pyroptosis in liver cancer cells by blocking glucose metabolism and targeting the OTUD5-JAK1-GSDME pathway. This antiviral drug shows synergistic effects with sorafenib, offering new hepatocellular carcinoma treatment strategies.
Area of Science:
- Oncology
- Cell Biology
- Pharmacology
Background:
- Pyroptosis is programmed cell death that sensitizes tumors to therapy.
- Hepatocellular carcinoma (HCC) requires novel therapeutic strategies.
Purpose of the Study:
- Screen antiviral drugs for pyroptosis induction in HCC.
- Investigate saquinavir's mechanism and therapeutic potential in HCC.
Main Methods:
- In vitro screening of antiviral drugs on HCC cell lines.
- In vivo xenograft models to assess therapeutic efficacy.
- Analysis of cell viability, morphology, glucose metabolism, and protein degradation.
Main Results:
- Saquinavir (SAQ) inhibited HCC proliferation and induced pyroptosis via caspase-3-GSDME.
- SAQ disrupted glucose metabolism (glycolysis, TCA cycles) and increased ROS.
- SAQ targeted OTUD5, promoting JAK1 degradation and mitochondrial disruption.
Conclusions:
- Saquinavir is a novel pyroptosis inducer for HCC.
- The OTUD5-JAK1-GSDME axis is crucial for pyroptosis resistance in HCC.
- SAQ combined with sorafenib shows synergistic antitumor activity, suggesting new HCC treatment strategies.
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