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Published on: January 19, 2024
NQO1 Mediates Lenvatinib Resistance by Regulating ROS-induced Apoptosis in Hepatocellular Carcinoma
Wei Xue1,2,3, Ting Wang1,3, Wen-Jing Tian1,3
1Department of General Surgery, The First Affiliated Hospital of University of Science and Technology of China, Division of Life Science and Medicine, University of Science and Technology of China, Hefei, 230027, China.
Objective:
Hepatocellular carcinoma (HCC) is the third leading cause of cancer-associated death worldwide. As a first-line drug for advanced HCC treatment, lenvatinib faces a significant hurdle due to the development of both intrinsic and acquired resistance among patients, and the underlying mechanism remains largely unknown. The present study aims to identify the pivotal gene responsible for lenvatinib resistance in HCC, explore the potential molecular mechanism, and propose combinatorial therapeutic targets for HCC management.
Methods:
Cell viability and colony formation assays were conducted to evaluate the sensitivity of cells to lenvatinib and dicoumarol. RNA-Seq was used to determine the differences in transcriptome between parental cells and lenvatinib-resistant (LR) cells. The upregulated genes were analyzed by GO and KEGG analyses. Then, qPCR and Western blotting were employed to determine the relative gene expression levels. Afterwards, the intracellular reactive oxygen species (ROS) and apoptosis were detected by flow cytometry.
Results:
PLC-LR and Hep3B-LR were established. There was a total of 116 significantly upregulated genes common to both LR cell lines. The GO and KEGG analyses indicated that these genes were involved in oxidoreductase and dehydrogenase activities, and reactive oxygen species pathways. Notably, NAD(P)H:quinone oxidoreductase 1 (NQO1) was highly expressed in LR cells, and was involved in the lenvatinib resistance. The high expression of NQO1 decreased the production of ROS induced by lenvatinib, and subsequently suppressed the apoptosis. The combination of lenvatinib and NQO1 inhibitor, dicoumarol, reversed the resistance of LR cells.
Conclusion:
The high NQO1 expression in HCC cells impedes the lenvatinib-induced apoptosis by regulating the ROS levels, thereby promoting lenvatinib resistance in HCC cells.
Insights
High NQO1 expression in hepatocellular carcinoma (HCC) drives lenvatinib resistance by reducing reactive oxygen species (ROS) and apoptosis. Combining lenvatinib with an NQO1 inhibitor, dicoumarol, overcomes this resistance.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Hepatocellular carcinoma (HCC) is a leading cause of cancer death globally.
- Lenvatinib is a first-line treatment for advanced HCC, but drug resistance is a major clinical challenge.
- The molecular mechanisms underlying lenvatinib resistance in HCC are not fully understood.
Purpose of the Study:
- To identify key genes driving lenvatinib resistance in HCC.
- To elucidate the molecular mechanisms of lenvatinib resistance.
- To explore potential combination therapies for overcoming lenvatinib resistance.
Main Methods:
- Establishment of lenvatinib-resistant (LR) HCC cell lines (PLC-LR, Hep3B-LR).
- RNA sequencing (RNA-Seq) to analyze differential gene expression between parental and LR cells.
- Gene Ontology (GO) and KEGG pathway analyses to identify enriched biological processes.
- Quantitative PCR (qPCR) and Western blotting for gene expression validation.
- Flow cytometry to assess reactive oxygen species (ROS) production and apoptosis.
Main Results:
- 116 common upregulated genes were identified in LR cells, enriched in oxidoreductase and ROS pathways.
- NAD(P)H:quinone oxidoreductase 1 (NQO1) was significantly upregulated in LR cells and correlated with lenvatinib resistance.
- High NQO1 expression reduced lenvatinib-induced ROS production and suppressed apoptosis.
- Combination therapy with lenvatinib and the NQO1 inhibitor dicoumarol restored sensitivity in LR cells.
Conclusions:
- Elevated NQO1 expression in HCC cells confers lenvatinib resistance.
- NQO1 promotes resistance by modulating ROS levels, thereby inhibiting lenvatinib-induced apoptosis.
- Targeting NQO1 in combination with lenvatinib presents a promising therapeutic strategy for advanced HCC.
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