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Updated: Feb 4, 2026

Author Spotlight: Investigating Liver Cancer Pathogenesis Using Patient-Derived Organoids
Published on: August 18, 2023
PI3Kδ Is a Therapeutic Target in Hepatocellular Carcinoma
Eunkyong Ko1, Hyun-Wook Seo1, Eun Sun Jung2
1Department of Biological Sciences, College of Natural Sciences, Seoul National University, Seoul, South Korea.
Abstract:
Class I phosphoinositide 3-kinase (PI3K) signaling is a major pathway in human cancer development and progression. Among the four PI3K isoforms, PI3Kα and PI3Kβ are ubiquitously expressed, whereas PI3Kγ and PI3Kδ are found primarily in leukocytes. Until now, PI3K targeting in solid tumors has focused on inhibiting PI3Kα-mediated and PI3Kβ-mediated cancer cell-intrinsic PI3K activity. The role of PI3Kδ in solid tumors is unknown. Here, we evaluated the effects of PI3Kδ using established hepatocellular carcinoma (HCC) cells, malignant hepatocytes derived from patients with advanced HCC, murine models, and HCC tissues using RNA sequencing, quantitative PCR, immunoblotting, immunofluorescence, microarray, liquid chromatography-tandem mass spectrometry, and kinase assay. We established a chemical carcinogenesis model of liver malignancy that reflects the malignant phenotype and the in vivo environment of advanced HCC. In this in vivo advanced HCC-mimic system using HCC cells treated with hydrogen peroxide (H2 O2 ), we showed that H2 O2 selectively increases PI3Kδ activity while decreasing that of other class I PI3Ks. Blocking PI3Kδ activity with a PI3Kδ inhibitor or small interfering RNA-mediated PI3Kδ gene silencing inhibited HCC-cell proliferation and dampened key features of malignant HCC, including the up-regulation of telomerase reverse transcriptase (TERT). Mechanistically, H2 O2 induced oxidative modification of the serpin peptidase inhibitor, serpin peptidase inhibitor (SERPINA3), blocking its ubiquitin-dependent degradation and enhancing its activity as a transcriptional activator of PI3Kδ and TERT. High PI3Kδ levels in HCC were found to correlate with poor survival rates, with human advanced HCC showing positive correlations between the protein levels of oxidized SERPINA3, PI3Kδ, and TERT. Thus, PI3Kδ plays significant roles in malignant liver tumors. Conclusion: Our data identify PI3Kδ inhibition, recently approved for the treatment of human B-cell malignancies, as a potential treatment for HCC.
Insights
This study reveals phosphoinositide 3-kinase delta (PI3Kδ) is a key driver in liver cancer. Inhibiting PI3Kδ shows promise for treating hepatocellular carcinoma (HCC) by reducing cancer cell proliferation.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Class I phosphoinositide 3-kinase (PI3K) signaling is crucial in cancer development.
- PI3Kα and PI3Kβ are common targets, but PI3Kδ's role in solid tumors, like hepatocellular carcinoma (HCC), is unexplored.
- Current therapies focus on PI3Kα/β, leaving PI3Kδ as a potential therapeutic target in HCC.
Purpose of the Study:
- To investigate the role of PI3Kδ in hepatocellular carcinoma (HCC) progression.
- To evaluate the therapeutic potential of PI3Kδ inhibition in HCC models.
- To elucidate the molecular mechanisms underlying PI3Kδ activation in HCC.
Main Methods:
- Utilized established HCC cells, patient-derived malignant hepatocytes, murine models, and HCC tissues.
- Employed techniques including RNA sequencing, qPCR, immunoblotting, immunofluorescence, microarray, LC-MS/MS, and kinase assays.
- Developed a chemical carcinogenesis model mimicking advanced HCC for in vivo studies.
Main Results:
- Hydrogen peroxide (H₂O₂) selectively increased PI3Kδ activity in HCC cells.
- PI3Kδ inhibition reduced HCC cell proliferation and key malignant features, including telomerase reverse transcriptase (TERT) upregulation.
- Oxidative modification of SERPINA3 by H₂O₂ enhanced its transcriptional activity for PI3Kδ and TERT, correlating with poor HCC survival.
Conclusions:
- PI3Kδ plays a significant role in the malignancy of liver tumors.
- PI3Kδ inhibition is a potential therapeutic strategy for HCC.
- Targeting PI3Kδ, already approved for B-cell malignancies, could offer a new treatment avenue for HCC.
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