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Induction of Hepatoma Cell Pyroptosis by Endogenous Lipid Geranylgeranoic Acid-A Comparison with Palmitic Acid and
1Graduate School of Human Health Science, University of Nagasaki, Nagayo, Nagasaki 851-2195, Japan.
Abstract:
Research on retinoid-based cancer prevention, spurred by the effects of vitamin A deficiency on gastric cancer and subsequent clinical studies on digestive tract cancer, unveils novel avenues for chemoprevention. Acyclic retinoids like 4,5-didehydrogeranylgeranoic acid (4,5-didehydroGGA) have emerged as potent agents against hepatocellular carcinoma (HCC), distinct from natural retinoids such as all-trans retinoic acid (ATRA). Mechanistic studies reveal GGA's unique induction of pyroptosis, a rapid cell death pathway, in HCC cells. GGA triggers mitochondrial superoxide hyperproduction and ER stress responses through Toll-like receptor 4 (TLR4) signaling and modulates autophagy, ultimately activating pyroptotic cell death in HCC cells. Unlike ATRA-induced apoptosis, GGA and palmitic acid (PA) induce pyroptosis, underscoring their distinct mechanisms. While all three fatty acids evoke mitochondrial dysfunction and ER stress responses, GGA and PA inhibit autophagy, leading to incomplete autophagic responses and pyroptosis, whereas ATRA promotes autophagic flux. In vivo experiments demonstrate GGA's potential as an anti-oncometabolite, inducing cell death selectively in tumor cells and thus suppressing liver cancer development. This review provides a comprehensive overview of the molecular mechanisms underlying GGA's anti-HCC effects and underscores its promising role in cancer prevention, highlighting its importance in HCC prevention.
Insights
Acyclic retinoids like 4,5-didehydrogeranylgeranoic acid (GGA) show promise for preventing liver cancer by selectively inducing pyroptosis, a programmed cell death, in hepatocellular carcinoma (HCC) cells.
Area of Science:
- Biochemistry
- Molecular Biology
- Cancer Research
Background:
- Retinoids are investigated for cancer prevention, with vitamin A deficiency linked to gastric cancer.
- Acyclic retinoids, such as 4,5-didehydrogeranylgeranoic acid (GGA), show distinct efficacy against hepatocellular carcinoma (HCC).
Purpose of the Study:
- To explore the molecular mechanisms of GGA's anti-HCC effects.
- To evaluate GGA's potential in liver cancer chemoprevention.
Main Methods:
- Investigated GGA's effects on HCC cell death pathways, including pyroptosis and apoptosis.
- Analyzed GGA's impact on mitochondrial function, ER stress, and autophagy.
- Conducted in vivo experiments to assess GGA's anti-tumorigenic activity.
Main Results:
- GGA selectively induces pyroptosis in HCC cells, distinct from ATRA-induced apoptosis.
- GGA triggers mitochondrial superoxide production and ER stress via TLR4 signaling.
- GGA inhibits autophagy, leading to pyroptosis, while ATRA promotes autophagic flux.
- In vivo studies confirmed GGA's selective tumor cell death induction and liver cancer suppression.
Conclusions:
- GGA acts as an anti-oncometabolite, offering a novel mechanism for HCC prevention.
- The distinct induction of pyroptosis by GGA highlights its unique therapeutic potential in liver cancer.
- Further research into GGA's role in cancer chemoprevention is warranted.
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