Crizotinib Enhances PARP Inhibitor Efficacy in Ovarian Cancer Cells and Xenograft Models by Inducing Autophagy
Janice M Santiago-O'Farrill1, Alicia Blessing Bollu1, Hailing Yang1
1Department of Experimental Therapeutics, The University of Texas MD Anderson Cancer Center, Houston, Texas.
Abstract:
Poly (ADP-ribose) polymerase inhibitors (PARPi) can encounter resistance through various mechanisms, limiting their effectiveness. Our recent research showed that PARPi alone can induce drug resistance by promoting autophagy. Moreover, our studies have revealed that anaplastic lymphoma kinase (ALK) plays a role in regulating the survival of ovarian cancer cells undergoing autophagy. Here, we explored whether the ALK-inhibitor crizotinib could enhance the efficacy of PARPi by targeting drug-induced autophagic ovarian cancer cell and xenograft models. Our investigation demonstrates that crizotinib enhances the anti-tumor activity of PARPi across multiple ovarian cancer cells. Combination therapy with crizotinib and olaparib reduced cell viability and clonogenic growth in two-olaparib resistant cell lines. More importantly, this effect was consistently observed in patient-derived organoids. Furthermore, combined treatment with crizotinib and olaparib led to tumor regression in human ovarian xenograft models. Mechanistically, the combination resulted in increased levels of reactive oxygen species (ROS), induced DNA damage, and decreased the phosphorylation of AKT, mTOR, and ULK-1, contributing to increased olaparib-induced autophagy and apoptosis. Notably, pharmacologic, or genetic inhibition or autophagy reduced the sensitivity of ovarian cancer cell lines to olaparib and crizotinib treatment, underscoring the role of autophagy in cell death. Blocking ROS mitigated olaparib/crizotinib-induced autophagy and cell death while restoring levels of phosphorylated AKT, mTOR and ULK-1. These findings suggest that crizotinib can improve the therapeutic efficacy of olaparib by enhancing autophagy. Implications: The combination of crizotinib and PARPi presents a promising strategy, that could provide a novel approach to enhance outcomes for patients with ovarian cancer.
Insights
Crizotinib enhances poly (ADP-ribose) polymerase inhibitor (PARPi) efficacy in ovarian cancer by promoting autophagy. This combination therapy, including olaparib and crizotinib, reduces tumor growth and improves outcomes.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Poly (ADP-ribose) polymerase inhibitors (PARPi) are crucial in cancer therapy but face resistance.
- PARPi can induce drug resistance by promoting autophagy, a cellular survival mechanism.
- Anaplastic lymphoma kinase (ALK) is implicated in ovarian cancer cell survival during autophagy.
Purpose of the Study:
- To investigate if crizotinib, an ALK inhibitor, can overcome PARPi-induced resistance.
- To evaluate the efficacy of combining crizotinib with PARPi in ovarian cancer models.
- To elucidate the underlying mechanisms of this combination therapy.
Main Methods:
- Utilized ovarian cancer cell lines, patient-derived organoids, and xenograft models.
- Administered combination therapy with crizotinib and olaparib (a PARPi).
- Assessed cell viability, clonogenic growth, tumor regression, reactive oxygen species (ROS) levels, DNA damage, and signaling pathways (AKT, mTOR, ULK-1).
Main Results:
- Crizotinib enhanced the anti-tumor activity of PARPi across various ovarian cancer models.
- Combination therapy reduced cell viability and clonogenic growth in olaparib-resistant cell lines and patient-derived organoids.
- Tumor regression was observed in human ovarian xenograft models treated with crizotinib and olaparib.
- The combination increased ROS, induced DNA damage, and modulated key autophagy and apoptosis signaling pathways.
Conclusions:
- Crizotinib improves the therapeutic efficacy of olaparib by enhancing autophagy and overcoming resistance.
- The combination therapy of crizotinib and PARPi represents a promising strategy for ovarian cancer treatment.
- Targeting autophagy and ROS may be key to enhancing outcomes for ovarian cancer patients.
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