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Combined Usage of MDK Inhibitor Augments Interferon-γ Anti-Tumor Activity in the SKOV3 Human Ovarian Cancer Cell Line
Qun Liu1,2, Jingyu Tan3, Zhenguo Zhao4
1Department of Gynaecology and Obstetrics, Beijing Anzhen Hospital, Capital Medical University, Beijing 100029, China.
Abstract:
Ovarian cancer (OC) is a particularly lethal disease due to intratumoral heterogeneity, resistance to traditional chemotherapy, and poor response to targeted therapy and immunotherapy. Interferon-γ (IFN-γ) is an attractive therapeutic cytokine, with positive responses achieved in multiple OC clinical trials. However, clinical application of IFN-γ in OC is still hindered, due to the severe toxicity when used at higher levels, as well as the considerable pro-metastatic adverse effect when used at lower levels. Thus, an effective combined intervention is needed to enhance the anti-tumor efficacy of IFN-γ and to suppress the IFN-γ-induced metastasis. Here, we uncovered that OC cells develop an adaptive strategy by upregulating midkine (MDK) to counteract the IFN-γ-induced anti-tumor activity and to fuel IFN-γ-induced metastasis. We showed that MDK is a critical downstream target of IFN-γ in OC, and that this regulation acts in a dose-dependent manner and is mediated by STAT1. Gain-of-function studies showed that MDK overexpression promotes cell proliferation and metastasis in OC, indicating that IFN-γ-activated MDK may antagonize IFN-γ in inhibiting OC proliferation but synergize IFN-γ in promoting OC metastasis. Subsequently, we assessed the influence of MDK inhibition on IFN-γ-induced anti-proliferation and pro-metastasis effects using an MDK inhibitor (iMDK), and we found that MDK inhibition robustly enhanced IFN-γ-induced growth inhibition (all CIs < 0.1) and reversed IFN-γ-driven epithelial-to-mesenchymal transition (EMT) and metastasis in OC in vitro. Collectively, these data identify an IFN-γ responsive protein, MDK, in counteracting anti-proliferation while endowing the pro-metastatic role of IFN-γ in cancer treatment, and we therefore propose the combined utilization of the MDK inhibitor in IFN-γ-based therapies in future OC treatment.
Insights
Interferon-gamma (IFN-γ) shows promise for ovarian cancer (OC) but has limitations. Upregulation of midkine (MDK) by IFN-γ counteracts anti-tumor effects and promotes metastasis, suggesting MDK inhibition could improve OC therapy.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- Ovarian cancer (OC) is lethal due to heterogeneity and treatment resistance.
- Interferon-gamma (IFN-γ) shows therapeutic potential in OC but has dose-dependent toxicities and pro-metastatic effects.
- A combined intervention is needed to enhance IFN-γ efficacy and mitigate its adverse effects.
Purpose of the Study:
- To investigate the role of midkine (MDK) in mediating IFN-γ's effects in ovarian cancer.
- To explore the potential of MDK inhibition to improve IFN-γ-based ovarian cancer therapy.
Main Methods:
- Investigated MDK as a downstream target of IFN-γ in OC cells, mediated by STAT1.
- Utilized gain-of-function studies to assess MDK's impact on OC proliferation and metastasis.
- Evaluated the effects of an MDK inhibitor (iMDK) in combination with IFN-γ on OC growth, epithelial-to-mesenchymal transition (EMT), and metastasis in vitro.
Main Results:
- OC cells upregulate MDK in response to IFN-γ, counteracting anti-tumor activity and promoting metastasis.
- MDK overexpression enhances OC proliferation and metastasis, while IFN-γ-activated MDK antagonizes IFN-γ's anti-proliferative effects.
- MDK inhibition significantly enhanced IFN-γ-induced growth inhibition and reversed IFN-γ-driven EMT and metastasis in vitro.
Conclusions:
- Midkine (MDK) is identified as an IFN-γ responsive protein that counteracts anti-proliferation and promotes metastasis in ovarian cancer.
- Combined therapy using an MDK inhibitor with IFN-γ shows potential for improving ovarian cancer treatment outcomes.
- This strategy may overcome limitations of IFN-γ monotherapy and enhance its anti-tumor efficacy.
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