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Targeting the Cohesive Cluster Phenotype in Chordoma via β1 Integrin Increases Ionizing Radiation Efficacy
William L Harryman1, Jaime M C Gard1, Kelvin W Pond2
1University of Arizona Cancer Center, 1515 N. Campbell Ave., Tucson, AZ, 85724.
Abstract:
Chordoma is a rare, radiation-resistant, skull-base and spinal tumor with high local recurrence containing mixed cell-adhesion phenotypes. We characterized DNA damage response (DDR) signaling (γH2AX, pKAP1, pATM) and survival response to ionizing radiation (IR) in human chordoma samples (42 resections, 23 patients) to test if blocking cell adhesion sensitizes U-CH1 tumor cells to IR. U-CH1 cells expressed brachyury, YAP, and laminin adhesion receptors (CD49c, CD49f, CD44), and approximately 15% to 20% of U-CH1 cells featured an α6 integrin-dependent (CD49f) cohesive cluster phenotype, which confers therapeutic resistance and aids metastasis. DDR to IR in U-CH1 cells was compared to normal prostate epithelial (PrEC) and tumor cells (DU145). Flow cytometry showed a dose- and time-dependent increase in γH2AX and pKAP1 expression in all cell lines. However, nearly 50% of U-CH1 cells exhibited nonresponsive phenotype to IR (measured by γH2AX and pKAP1) independent of cell cycle status. Immunofluorescence microscopy verified that only 15% of U-CH1 clustered cells were γH2AX or pKAP1 positive (versus 80% of nonclustered cells) 2 hours following 2-Gy IR. Conversely, both tumor cell lines were uniformly defective in pATM response. HYD1, a synthetic ECM ligand, inhibited DDR through an unresolved γH2AX response. β1 integrin-blocking antibody (AIIB2) decreased cell survival 50% itself and approximately doubled the IR-induced cell kill at all IR doses observed at 2 and 4 weeks posttreatment. These results suggest that a heterogeneity of DDR to IR exists within a chordoma population. Blocking integrin function alone and/or as an adjuvant to IR may eradicate chordomas containing the cohesive cluster phenotype.
Insights
Chordoma cells show varied DNA damage response (DDR) to radiation. Blocking cell adhesion, particularly integrin function, may enhance radiation therapy effectiveness for resistant chordoma tumors.
Area of Science:
- Oncology
- Molecular Biology
- Radiation Oncology
Background:
- Chordoma is a rare, radiation-resistant tumor of the skull base and spine.
- Chordoma exhibits high local recurrence rates and possesses mixed cell-adhesion phenotypes.
- Understanding DNA damage response (DDR) and cell adhesion in chordoma is crucial for developing effective treatments.
Purpose of the Study:
- To characterize the DNA damage response (DDR) signaling pathways in human chordoma samples.
- To investigate the role of cell adhesion phenotypes in radioresistance of chordoma cells.
- To determine if blocking cell adhesion sensitizes chordoma cells to ionizing radiation (IR).
Main Methods:
- Analysis of DNA damage response markers (γH2AX, pKAP1, pATM) in human chordoma samples and cell lines.
- Flow cytometry and immunofluorescence microscopy to assess DDR and cell clustering.
- Treatment of U-CH1 chordoma cells with ionizing radiation (IR) alone and in combination with cell adhesion inhibitors (HYD1, AIIB2).
Main Results:
- Chordoma cells exhibit heterogeneous DDR to IR, with a significant portion showing a nonresponsive phenotype.
- A cohesive cluster phenotype, dependent on α6 integrin (CD49f), was associated with therapeutic resistance.
- Blocking β1 integrin function with AIIB2 significantly reduced cell survival and enhanced IR-induced cell kill.
Conclusions:
- Heterogeneity in DDR exists within chordoma cell populations, contributing to radioresistance.
- Targeting cell adhesion mechanisms, specifically integrin function, holds promise for overcoming chordoma radioresistance.
- Combined therapy of integrin inhibition and IR may be an effective strategy to eradicate chordomas with cohesive cluster phenotypes.
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