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Cytotoxic Efficacy of Photodynamic Therapy in Osteosarcoma Cells In Vitro
Published on: March 18, 2014
Targeting Osteosarcoma: The Dual Action of Halogenated Boroxine and Cerium Oxide Nanoparticles
Nikolina Tomic1, Sahra Esmkhani2,3,4, Jamila Bayramova2,3,4,5
1Institute for Genetic Engineering and Biotechnology, University of Sarajevo, Zmaja od Bosne 8, 71000 Sarajevo, Bosnia and Herzegovina.
Abstract:
Current standard treatments for osteosarcoma have not been changed for decades and have limited and variable success. The advancement of precision medicine technologies, along with the drug-repurposing and fast drug-screening methodologies available, has opened new avenues for the development of more effective therapeutic strategies. In this study, we evaluated the effectiveness of halogenated boroxine (HB) and dextran-coated cerium oxide nanoparticles-DexCeNPs (SD2)-in an in vitro osteosarcoma model. Both agents were tested individually and in combination. The research encompassed assessments of treatment-related cytotoxicity and cell viability, oxidative stress, and apoptotic and necrotic responses, as well as the effects on 3D spheroid models. The results demonstrated that the effects of HB and SD2 were strongly influenced by the dose, exposure time, and cell type. Both exhibited distinguished antitumor activity through cytotoxicity and specific reactive oxygen species (ROS) induction. The combined treatment produced modulated responses that were dependent on the treatment ratio and cell line, suggesting potential synergistic or selective interactions. Notably, the outcomes of the analysis conducted in 3D models revealed reduced toxicity toward non-tumor cells. These findings suggest the improved efficacy of HB and SD2 used in combination as a selective and novel antitumor strategy and underscore the need for further mechanistic studies at the transcriptomic and proteomic levels to elucidate the underlying pathways and clarify the mechanisms of action.
Insights
Halogenated boroxine (HB) and DexCeNPs (SD2) show promise as novel osteosarcoma treatments. Their combination demonstrated significant antitumor activity with reduced toxicity to non-tumor cells in vitro.
Area of Science:
- Oncology
- Nanomedicine
- Materials Science
Background:
- Current osteosarcoma treatments lack efficacy and variability.
- Precision medicine and drug repurposing offer new therapeutic avenues.
- Novel agents are needed to overcome treatment limitations.
Purpose of the Study:
- To evaluate halogenated boroxine (HB) and DexCeNPs (SD2) for osteosarcoma treatment.
- To assess individual and combination effects on cancer cells in vitro.
- To investigate cytotoxicity, oxidative stress, apoptosis, and necrotic responses.
Main Methods:
- In vitro osteosarcoma cell models were used.
- Cytotoxicity, cell viability, oxidative stress, and cell death were assessed.
- 3D spheroid models were employed to evaluate efficacy and toxicity.
Main Results:
- Both HB and SD2 exhibited dose- and time-dependent antitumor activity.
- Agents induced cytotoxicity and reactive oxygen species (ROS) in cancer cells.
- Combination therapy showed modulated responses, with reduced toxicity to non-tumor cells in 3D models.
Conclusions:
- HB and SD2 combination therapy presents a selective and novel antitumor strategy for osteosarcoma.
- Further transcriptomic and proteomic studies are needed to elucidate mechanisms of action.
- These findings support further investigation into HB and SD2 for osteosarcoma treatment.
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