Oxymatrine Synergizes with 5-fluorouracil to Inhibit the Proliferation of A549 Cells by Targeting APE1
Guofang Zeng1,2, Fei Luo1,3, Qiaoli Zeng1,3
1Key Laboratory of Research in Maternal and Child Medicine and Birth Defects, Guangdong Medical University, No. 3 Baojian Road, Foshan, 528300, Guangdong, P.R. China.
Objective:
Resistance to 5-fluorouracil (5-FU) necessitates its administration in combination with other drugs to enhance the clinical outcome. Oxymatrine (OMT) exhibits antitumor and anti-inflammatory activities. This study aimed to investigate the synergistic antitumor effect of OMT with 5-FU in A549 cells.
Methods:
The knockout of human Apurinic/Apyrimidinic Endonuclease 1 (APE1) in A549 cells was achieved using shRNA. The level of APE1 protein was determined via Western blotting. The levels of IL-2, IL-6, and IL-8 were detected using ELISA. The level of intracellular Reactive Oxygen Species (ROS) and cell cycle were analyzed by flow cytometry. Genome-wide transcriptome profiling was conducted using RNA- sequencing technology and bioinformatics analyses.
Results:
OMT synergistically augmented the antitumor activity of 5-FU in A549 cells by inhibiting the functions of APE1. OMT differentially modulated the secretion of IL-8, IL-6, and IL-2 from A549 cells in the presence of 5-FU. The inhibition of IL-8 and IL-6 by OMT predominantly occurred via APE1, whereas the inhibition of IL-2 by OMT was APE1-independent. OMT inhibited ROS production independent of APE1 and induced G2/M arrest in APE1-deficient cells. A genome-wide transcriptome analysis identified novel gene targets (B3GNT3, CRABP2, RHOV, and PCSK9) regulated by OMT, which contribute to its antitumor activity.
Discussion:
These findings uncover a multitarget mechanism underlying the synergistic antitumor effect of OMT and 5-FU, confirming APE1 as a key regulatory factor linking inflammatory cytokine secretion, ROS homeostasis, and cell cycle progression in lung cancer cells. The newly identified target genes further elaborate the molecular basis of OMT-mediated tumor suppression. This work provides a potential strategy to overcome 5-FU resistance and optimize combination therapy for lung cancer treatment.
Conclusion:
This study addresses the issue of 5-FU chemoresistance in lung cancer by validating OMT as a functional synergistic adjuvant. The findings clarify the molecular mechanisms by which OMT enhances 5-FU antitumor efficacy, offering a credible experimental basis for the potential development of optimized combination therapeutic regimens for lung cancer.
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