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Published on: May 6, 2018
Extracellular Vesicles from a Novel Chordoma Cell Line, ARF-8, Promote Tumorigenic Microenvironmental Changes When
Khoa N Nguyen1,2, Arin N Graner1, Anthony R Fringuello1
1Department of Neurosurgery, University of Colorado, Anschutz Medical Campus, Aurora, CO 80045, USA.
Abstract:
Chordomas are rare, generally slow-growing spinal tumors that nonetheless exhibit progressive characteristics over time, leading to malignant phenotypes and high recurrence rates, despite maximal therapeutic interventions. The tumors are notoriously resistant to therapies and are often located in regions that complicate achieving gross total resections. Cell lines from these tumors are rare as well. We cultured a new chordoma cell line (ARF-8) derived from an extensive clival chordoma that extended back to the cervical spine. We characterized the ARF-8 cellular and extracellular vesicle (EV) proteomes, as well as the impacts of ARF-8 EVs on the proteomes and secretomes of recipient cells (both ARF-8 and human osteoblasts) in autocrine and paracrine settings. Our proteomic analyses suggested roles for transforming growth factor beta (TGFB/TGFβ), cell-matrix interactions involving the epithelial-to-mesenchymal transition (EMT), and cell-extracellular matrix interactions in cell migration, consistent with a migratory/metastatic tumor phenotype. We demonstrated that ARF-8 tumor cell migration was dependent on general (arginine-glycine-aspartic acid [RGD]-based) integrin activity and that ARF-8 EVs could promote such migration. ARF-8 EVs also prompted proteomic/secretomic changes in human osteoblast cells, again with indications that cell-cell and cell-extracellular matrix interactions would be activated. All the characteristics typically associated with chordomas as cancers-migration and invasion, therapeutic resistance, metastatic potential-can be driven by tumor EVs. Overall, ARF-8 EVs promoted predicted tumorigenic phenotypes in recipient cells and suggested novel therapeutic targets for chordomas.
Insights
Newly discovered chordoma cell line EVs drive tumor cell migration and invasion, suggesting novel therapeutic targets for these rare spinal tumors.
Area of Science:
- Oncology
- Cancer Biology
- Biochemistry
Background:
- Chordomas are rare, slow-growing spinal tumors with high recurrence rates and therapeutic resistance.
- Achieving complete tumor resection is challenging due to tumor location.
- Chordoma cell lines are scarce, limiting research into tumor biology.
Purpose of the Study:
- To characterize a new chordoma cell line (ARF-8) and its extracellular vesicles (EVs).
- To investigate the role of ARF-8 EVs in promoting chordoma cell migration and invasion.
- To explore potential therapeutic targets for chordoma based on EV activity.
Main Methods:
- Culture and characterization of a novel chordoma cell line (ARF-8).
- Proteomic analysis of ARF-8 cells and their extracellular vesicles (EVs).
- Assessment of ARF-8 EV impact on recipient cells (autocrine and paracrine effects).
Main Results:
- Proteomic analysis revealed roles for TGF-beta and cell-matrix interactions (EMT) in ARF-8 cell migration.
- ARF-8 EVs promoted tumor cell migration, dependent on integrin activity.
- ARF-8 EVs induced proteomic/secretomic changes in human osteoblasts, suggesting activated cell interactions.
Conclusions:
- Chordoma cell-derived EVs can drive cancer hallmarks like migration, invasion, and therapeutic resistance.
- ARF-8 EVs promote tumorigenic phenotypes in recipient cells.
- EVs represent promising novel therapeutic targets for chordoma treatment.
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