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An In Vitro Approach to Study Mitochondrial Dysfunction: A Cybrid Model
Published on: March 9, 2022
Suppression of Nrf2 confers chemosensitizing effect through enhanced oxidant-mediated mitochondrial dysfunction
Vachirapong Sompakdee1, Auemduan Prawan2, Laddawan Senggunprai2
1Department of Pharmacology, Faculty of Medicine, Khon Kaen University, Khon Kaen, 40002, Thailand.
Aims:
Transcription factor Nrf2, which regulates the expression of cytoprotective and antioxidant enzymes, contributes to proliferation and resistance to chemotherapy in cancer. The inhibition of Nrf2 can sensitize cholangiocarcinoma (CCA) cells to the cytotoxicity of several chemotherapeutic agents. In this study, we investigated the mechanism of this chemosensitizing effect.
Main Methods:
KKU-100 cells were used in the study. Nrf2 expression was knocked down by siRNA and expression was validated by reverse transcription and polymerase chain reaction. Cytotoxicity was assessed by sulforhodamine B method. Intracellular reactive oxygen species (ROS) was examined by fluorescent dye, dichlorofluorescin diacetate method and mitochondrial transmembrane potential was assessed by JC1 dye assay.
Key Findings:
Cytotoxicity of cisplatin (Cis) in KKU-100 cells was enhanced by knockdown of Nrf2 expression. The enhanced cytotoxic effect was abolished by treatment with N-acetylcysteine, TEMPOL and MnTBAP. Cells with Nrf2 knockdown or Cis treatment increased production of ROS, and ROS was markedly enhanced by a combination of Nrf2 knockdown and Cis. The increased ROS formation was associated with a decrease in mitochondrial transmembrane potential (Δψm), where this decrease was prevented by antioxidant compounds. The loss of Δψm and cell death were prevented by cyclosporine, an inhibitor of mitochondrial permeability transition pore (MPTP). Luteolin inhibited Nrf2 and markedly enhanced cytotoxicity in combination with Cis.
Significance:
Inhibition of Nrf2 is a feasible strategy in enhancing antitumor activity of chemotherapeutic agents and improving efficacy of chemotherapy in CCA.
Insights
Inhibiting the Nrf2 pathway enhances chemotherapy effectiveness in cholangiocarcinoma (CCA) by increasing reactive oxygen species (ROS) and reducing mitochondrial potential. This strategy offers a promising approach for cancer treatment.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Nuclear factor erythroid 2-related factor 2 (Nrf2) regulates antioxidant enzymes and is implicated in cancer cell proliferation and chemoresistance.
- Nrf2 inhibition can sensitize cholangiocarcinoma (CCA) cells to chemotherapy.
- Understanding the mechanism of Nrf2-mediated chemosensitization is crucial for developing effective cancer therapies.
Purpose of the Study:
- To investigate the mechanism by which Nrf2 inhibition enhances the chemosensitivity of cholangiocarcinoma (CCA) cells.
- To explore the role of reactive oxygen species (ROS) and mitochondrial function in Nrf2-dependent chemoresistance.
Main Methods:
- Nrf2 expression was suppressed using small interfering RNA (siRNA) in KKU-100 CCA cells.
- Cytotoxicity was evaluated using the sulforhodamine B assay.
- Intracellular ROS levels and mitochondrial transmembrane potential (Δψm) were assessed using fluorescent probes.
Main Results:
- Nrf2 knockdown significantly enhanced cisplatin-induced cytotoxicity in CCA cells.
- Combined Nrf2 knockdown and cisplatin treatment markedly increased ROS production and decreased mitochondrial membrane potential.
- Antioxidants and cyclosporine (MPTP inhibitor) reversed the effects of Nrf2 inhibition and cisplatin on ROS and mitochondrial potential, respectively.
Conclusions:
- Nrf2 inhibition potentiates the antitumor activity of chemotherapeutic agents like cisplatin in CCA.
- The chemosensitizing effect is mediated by increased ROS production and subsequent mitochondrial dysfunction.
- Targeting Nrf2 represents a viable strategy to improve chemotherapy efficacy in cholangiocarcinoma.
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