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Paramyxoviruses for Tumor-targeted Immunomodulation: Design and Evaluation Ex Vivo
Published on: January 7, 2019
Bortezomib Treatment Sensitizes Oncolytic HSV-1-Treated Tumors to NK Cell Immunotherapy
Ji Young Yoo1, Alena Cristina Jaime-Ramirez2, Chelsea Bolyard2
1Department of Neurological Surgery, Dardinger Laboratory for Neuro-oncology and Neurosciences, The Ohio State University Wexner Medical Center, Columbus, Ohio. balveen.kaur@osumc.edu Jiyoung.Yoo@osumc.edu.
Purpose:
Both the proteasome inhibitor bortezomib and an oncolytic herpes simplex virus-1 (oHSV)-expressing GM-CSF are currently FDA approved. Although proteasome blockade can increase oHSV replication, immunologic consequences, and consequent immunotherapy potential are unknown. In this study, we investigated the impact of bortezomib combined with oHSV on tumor cell death and sensitivity to natural killer (NK) cell immunotherapy.
Experimental Design:
Western blot, flow cytometry, and caspase 3/7 activity assays were used to evaluate the induction of apoptosis/autophagy and/or necroptotic cell death. Cellular and mitochondrial reactive oxygen species (ROS) production was measured using CellROX and MitoSOX. Inhibitors/shRNA-targeting ROS, JNK and RIP1 kinase (RIPK1) were used to investigate the mechanism of cell killing. The synergistic interaction between oHSV and bortezomib was calculated using a Chou-Talalay analysis. NK cells isolated from normal human blood were co-cultured with tumor cells to evaluate cellular interactions. Q-PCR, ELISA, and FACS analysis were used to evaluate NK cell activation. Intracranial tumor xenografts were used to evaluate antitumor efficacy.
Results:
Combination treatment with bortezomib- and oHSV-induced necroptotic cell death and increased the production of mitochondrial ROS and JNK phosphorylation. Inhibitors/shRNA of RIPK1 and JNK rescued synergistic cell killing. Combination treatment also significantly enhanced NK cell activation and adjuvant NK cell therapy of mice treated with bortezomib and oHSV improved antitumor efficacy.
Conclusions:
This study provides a significant rationale for triple combination therapy with bortezomib, oHSV, and NK cells to improve efficacy, in glioblastoma patients. Clin Cancer Res; 22(21); 5265-76. ©2016 AACRSee related commentary by Suryadevara et al., p. 5164.
Insights
Combining bortezomib with oncolytic herpes simplex virus-1 (oHSV) enhances tumor cell death and natural killer (NK) cell immunotherapy efficacy, suggesting a triple therapy approach for glioblastoma.
Area of Science:
- Oncology
- Immunotherapy
- Virology
Background:
- Bortezomib (proteasome inhibitor) and oHSV-GM-CSF are FDA-approved cancer treatments.
- The combined immunologic effects of bortezomib and oHSV remain largely unknown.
- Investigating synergistic effects of combined therapies is crucial for advancing cancer treatment.
Purpose of the Study:
- To assess the impact of combining bortezomib with oHSV on tumor cell death.
- To determine if this combination enhances sensitivity to natural killer (NK) cell immunotherapy.
- To explore the underlying mechanisms of cell death and immune activation.
Main Methods:
- Utilized Western blot, flow cytometry, and caspase assays to analyze cell death pathways (apoptosis, autophagy, necroptosis).
- Measured reactive oxygen species (ROS) production and JNK/RIPK1 signaling.
- Evaluated NK cell activation and antitumor efficacy in intracranial xenograft models.
Main Results:
- Combination therapy induced necroptotic cell death, increased mitochondrial ROS, and JNK phosphorylation.
- RIPK1 and JNK inhibition abrogated synergistic cell killing, highlighting their mechanistic role.
- Enhanced NK cell activation and improved antitumor efficacy were observed with combination treatment and adjuvant NK cell therapy.
Conclusions:
- The study provides a strong rationale for a triple combination therapy involving bortezomib, oHSV, and NK cells.
- This triple therapy holds promise for improving glioblastoma treatment efficacy.
- Further clinical investigation is warranted to validate these findings in glioblastoma patients.
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