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.

Cell Death & Disease
|October 26, 2013
PubMed

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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