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Microtubule-targeting-compound PBOX-15 radiosensitizes cancer cells in vitro
James C Forde1, Elaina N Maginn, Gillian McNamara
1Prostate Molecular Oncology Research Group, Academic Unit of Clinical and Molecular Oncology, St James's Hospital and Trinity College Dublin, Ireland.
Background:
We proposed to investigate the radiosensitizing properties of PBOX-15, a novel microtubule-disrupting agent, in a panel of cancer cell lines.
Results:
PBOX-15 treatment was associated with significant cell kill and increased radiosensitivity in all three cell lines tested. The number of surviving cells in response to the combined treatment was significantly less than PBOX -15 alone in 22Rv1 cells. In these cells, radiosensitisation correlated with induction of G2/M cell cycle arrest by PBOX-15. The compound sustained its activity and increased HIF-1Α expression under hypoxic conditions. PBOX-15 prevented onset of hypoxia-induced radioresistance in hypoxic prostate cells and reduced the surviving fraction of irradiated hypoxic cells to levels similar to those achieved under aerobic conditions.
Methods:
Clonogenic assays were used to determine sensitivity of a panel of cancer cell lines (22Rv1, A549, U87) to PBOX-15 alone or in combination with a single 2Gy dose fraction. Induction of cell cycle arrest and apoptosis was investigated in 22Rv1 prostate cancer cells. The cytotoxic properties of the compound under hypoxic conditions were correlated with Hypoxia Inducible Factor 1 alpha (HIF-1Α) gene and protein expression levels and its radiosensitisation potential was investigated in hypoxic 22Rv1 using clonogenic assays.
Conclusions:
This preliminary data identifies the potential of PBOX-15 as a novel radiosensitising agent for the management of solid tumours and eradication of hypoxic cells.
Insights
PBOX-15, a novel agent disrupting microtubules, enhances cancer cell radiosensitivity. It effectively reduces surviving cells, particularly in hypoxic conditions, showing promise for solid tumor treatment.
Area of Science:
- Oncology
- Radiation Oncology
- Cancer Cell Biology
Background:
- Investigating PBOX-15, a novel microtubule-disrupting agent, for its radiosensitizing potential.
- Evaluating PBOX-15 efficacy across a panel of cancer cell lines.
Purpose of the Study:
- To assess the radiosensitizing properties of PBOX-15.
- To determine PBOX-15's effect on cancer cell survival and cell cycle.
- To evaluate PBOX-15's activity under hypoxic conditions.
Main Methods:
- Clonogenic assays used to determine sensitivity to PBOX-15 alone and combined with radiation.
- Cell cycle arrest and apoptosis investigated in 22Rv1 prostate cancer cells.
- Hypoxia Inducible Factor 1 alpha (HIF-1Α) expression correlated with cytotoxic properties and radiosensitization under hypoxia.
Main Results:
- PBOX-15 demonstrated significant cell kill and increased radiosensitivity in all tested cell lines.
- Combined PBOX-15 and radiation therapy significantly reduced surviving cells in 22Rv1 cells.
- PBOX-15 prevented hypoxia-induced radioresistance, reducing surviving hypoxic cells to aerobic levels.
Conclusions:
- PBOX-15 shows potential as a novel radiosensitizing agent for solid tumors.
- PBOX-15 effectively targets and eradicates hypoxic cancer cells.
- Further investigation into PBOX-15 for cancer management is warranted.
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