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Coculture Assays to Study Macrophage and Microglia Stimulation of Glioblastoma Invasion
Published on: October 20, 2016
Human monocytes kill M-CSF-expressing glioma cells by BK channel activation
Neil T Hoa1, Jian Gang Zhang, Christina L Delgado
1Department of Diagnostic and Molecular Medicine, Veterans Affairs Medical Center, Long Beach, CA 90822, USA.
Abstract:
In this study, human monocytes/macrophages were observed to kill human U251 glioma cells expressing membrane macrophage colony-stimulating factor (mM-CSF) via a swelling and vacuolization process called paraptosis. Human monocytes responded to the mM-CSF-transduced U251 glioma cells, but not to viral vector control U251 glioma cells (U251-VV), by producing a respiratory burst within 20 min. Using patch clamp techniques, functional big potassium (BK) channels were observed on the membrane of the U251 glioma cell. It has been previously reported that oxygen indirectly regulates BK channel function. In this study, it was demonstrated that prolonged BK channel activation in response to the respiratory burst induced by monocytes initiates paraptosis in selected glioma cells. Forced BK channel opening within the glioma cells by BK channel activators (phloretin or pimaric acid) induced U251 glioma cell swelling and vacuolization occurred within 30 min. U251 glioma cell cytotoxicity, induced by using BK channel activators, required between 8 and 12 h. Swelling and vacuolization induced by phloretin and pimaric acid was prevented by iberiotoxin, a specific BK channel inhibitor. Confocal fluorescence microscopy demonstrated BK channels co-localized with the endoplasmic reticulum and mitochondria, the two targeted organelles affected in paraptosis. Iberiotoxin prevented monocytes from producing death in mM-CSF-expressing U251glioma cells in a 24 h assay. This study demonstrates a novel mechanism whereby monocytes can induce paraptosis via the disruption of internal potassium ion homeostasis.
Insights
Human monocytes induce glioma cell death via paraptosis by activating big potassium (BK) channels. This novel mechanism disrupts potassium ion homeostasis, leading to cell swelling and vacuolization.
Area of Science:
- Immunology
- Cell Biology
- Neuro-oncology
Background:
- Monocytes/macrophages can eliminate cancer cells.
- Paraptosis is a distinct form of programmed cell death characterized by vacuolization.
- Big potassium (BK) channels regulate cellular processes.
Purpose of the Study:
- To investigate the mechanism by which monocytes induce paraptosis in U251 glioma cells.
- To determine the role of BK channels in monocyte-mediated glioma cell death.
Main Methods:
- Co-culture of U251 glioma cells (mM-CSF-transduced or control) with human monocytes.
- Patch clamp electrophysiology to assess BK channel function.
- Treatment with BK channel activators (phloretin, pimaric acid) and inhibitors (iberiotoxin).
- Confocal fluorescence microscopy to visualize BK channel localization.
Main Results:
- Monocytes induced paraptosis in mM-CSF-expressing U251 glioma cells, not control cells.
- Monocyte-induced respiratory burst led to prolonged BK channel activation.
- Forced BK channel activation caused glioma cell swelling and vacuolization.
- BK channels co-localized with endoplasmic reticulum and mitochondria.
- Iberiotoxin blocked monocyte-induced glioma cell death.
Conclusions:
- Monocytes induce paraptosis in glioma cells through BK channel activation.
- Disruption of potassium ion homeostasis is a key event in this cell death pathway.
- This study reveals a novel immunotherapeutic target for glioma treatment.

