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Panobinostat synergizes with zoledronic acid in prostate cancer and multiple myeloma models by increasing ROS and
F Bruzzese1, B Pucci, M R Milone
1Experimental Pharmacology Unit, Istituto Nazionale per lo Studio e la Cura dei Tumori 'Fondazione Giovanni Pascale'-IRCCS, Napoli, Italy.
Abstract:
Patients with advanced prostate cancer (PCa) and multiple myeloma (MM) have limited long-term responses to available therapies. The histone deacetylase inhibitor panobinostat has shown significant preclinical and clinical anticancer activity in both hematological and solid malignancies and is currently in phase III trials for relapsed MM. Bisphosphonates (BPs), such as zoledronic acid (ZOL), inhibit osteoclast-mediated bone resorption and are indicated for the treatment of bone metastasis. BPs, including ZOL, have also shown anticancer activity in several preclinical and clinical studies. In the present report, we found a potent synergistic antiproliferative effect of panobinostat/ZOL treatment in three PCa and three MM cell lines as well as in a PCa ZOL-resistant subline, independently of p53/KRAS status, androgen dependency, or the schedule of administration. The synergistic effect was also observed in an anchorage-independent agar assay in both ZOL-sensitive and ZOL-resistant cells and was confirmed in vivo in a PCa xenograft model. The co-administration of the antioxidant N-acetyl-L-cysteine blocked the increased reactive oxygen species generation and apoptosis observed in the combination setting compared with control or single-agent treatments, suggesting that oxidative injury plays a functional role in the synergism. Proapoptotic synergy was also partially antagonized by the addition of geranyl-geraniol, which bypasses the inhibition of farnesylpyrophosphate synthase by ZOL in the mevalonate pathway, supporting the involvement of this pathway in the synergy. Finally, at the molecular level, the inhibition of basal and ZOL-induced activation of p38-MAPK by panobinostat in sensitive and ZOL-resistant cells and in tumor xenografts could explain, at least in part, the observed synergism.
Insights
Panobinostat and zoledronic acid (ZOL) show a powerful synergistic effect against prostate cancer (PCa) and multiple myeloma (MM) cells, offering new therapeutic options for these advanced cancers.
Area of Science:
- Oncology
- Pharmacology
- Molecular Biology
Background:
- Advanced prostate cancer (PCa) and multiple myeloma (MM) have limited treatment options.
- Panobinostat (a histone deacetylase inhibitor) and zoledronic acid (ZOL, a bisphosphonate) have shown individual anticancer activities.
- ZOL is used to treat bone metastasis but also exhibits anticancer properties.
Purpose of the Study:
- To investigate the combined antiproliferative effects of panobinostat and ZOL in PCa and MM.
- To explore the mechanisms underlying the synergistic interaction between panobinostat and ZOL.
Main Methods:
- Testing panobinostat/ZOL combination in PCa and MM cell lines, including ZOL-resistant models.
- Evaluating synergistic effects in anchorage-independent growth assays and a PCa xenograft model.
- Investigating the roles of reactive oxygen species, the mevalonate pathway, and p38-MAPK signaling.
Main Results:
- Panobinostat/ZOL demonstrated potent synergistic antiproliferative effects in vitro and in vivo.
- Synergy was observed across various cell lines, including ZOL-resistant ones, irrespective of genetic status or treatment schedule.
- Oxidative stress and the mevalonate pathway were implicated in the synergistic mechanism, with p38-MAPK inhibition by panobinostat playing a role.
Conclusions:
- Panobinostat and ZOL exhibit significant synergistic anticancer activity in PCa and MM.
- The combination therapy's efficacy involves oxidative injury and the mevalonate pathway.
- This combination represents a promising therapeutic strategy for advanced PCa and MM.
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