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A Novel Wogonin Derivative Induces Apoptosis in PC-3M Cells by Targeting Mitochondrial Dysfunction and Activating the
Dingrui Liu1, Fangfei Liu1, Mingjie Song1
1College of Chinese Medicinal Material, Jilin Agricultural University, 2888 Xincheng Street, Changchun 130118, China.
Abstract:
Current cancer treatments have significant limitations. Designing TPP+-modified, mitochondrial-targeted drugs can improve anticancer efficacy. Although wogonin exhibits antitumor activity, it has drawbacks, including poor solubility and limited distribution. This study designed and synthesized 27 derivatives, including nine novel wogonin triphenylphosphine derivatives that demonstrated in vitro antitumor activity. Mito-WO-8, one of these derivatives, exhibited potent activity against PC-3M cells (IC50 = 3.19 μmol/L), demonstrating 15-fold higher potency than wogonin. Further analysis revealed that Mito-WO-8 accumulates more in mitochondria than wogonin and induces mitochondrial dysfunction, including increased reactive oxygen species, reduced membrane potential, and activation of the MPTP channel. Transcriptome and network analyses revealed that Mito-WO-8 activates the p38/MAPK pathway. Downregulation of p-MKK6 and p-p38, as well as upregulation of DDIT3 and cleaved caspase-3, were validated by Western blot (WB) and quantitative polymerase chain reaction (qPCR). Therefore, Mito-WO-8 enhances mitochondrial enrichment and induces mitochondrial damage. This process is associated with apoptosis and the activation of the ROS-p38/MAPK pathway. Additionally, the study found that Mito-WO-8 exhibits a stronger binding affinity for mitochondrial glycerol-3-phosphate dehydrogenase 2 (GPD2) than the parent compound (-9.6 kJ/mol vs. -6.6 kJ/mol), suggesting a potential interaction with GPD2. This finding establishes a foundation for further investigation into its targeted antitumor mechanism.
Insights
Mito-WO-8, a novel wogonin derivative, effectively targets cancer cell mitochondria, enhancing potency and inducing apoptosis via the ROS-p38/MAPK pathway. This improved mitochondrial drug delivery offers a promising strategy for cancer treatment.
Area of Science:
- Medicinal Chemistry
- Molecular Biology
- Cancer Research
Background:
- Current cancer therapies face limitations in efficacy and distribution.
- Wogonin shows antitumor potential but suffers from poor solubility and limited distribution.
- Mitochondrial-targeted drug design can enhance anticancer effects.
Purpose of the Study:
- To design and synthesize novel wogonin derivatives for improved anticancer activity.
- To investigate the mitochondrial targeting and mechanism of action of a lead derivative, Mito-WO-8.
- To explore the potential interaction of Mito-WO-8 with mitochondrial targets like GPD2.
Main Methods:
- Synthesis and in vitro evaluation of 27 wogonin derivatives.
- Mitochondrial accumulation and dysfunction assays (ROS, membrane potential, MPTP).
- Transcriptome analysis, network analysis, Western blot, and qPCR to elucidate signaling pathways.
- Binding affinity studies using molecular docking.
Main Results:
- Nine novel wogonin triphenylphosphine derivatives demonstrated in vitro antitumor activity.
- Mito-WO-8 showed potent activity against PC-3M cells, 15-fold higher than wogonin.
- Mito-WO-8 enhanced mitochondrial accumulation, induced mitochondrial dysfunction, and activated the ROS-p38/MAPK pathway.
- Mito-WO-8 exhibited stronger binding affinity to mitochondrial GPD2 than wogonin.
Conclusions:
- Mito-WO-8 effectively targets mitochondria, induces mitochondrial damage and apoptosis through the ROS-p38/MAPK pathway.
- The enhanced mitochondrial enrichment and specific binding to GPD2 suggest a novel targeted antitumor mechanism.
- Mito-WO-8 represents a promising lead compound for developing improved mitochondrial-targeted cancer therapies.
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