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Mechanical Stimulation-induced Calcium Wave Propagation in Cell Monolayers: The Example of Bovine Corneal Endothelial Cells
Published on: July 16, 2013
Enhanced cytotoxic activity of natural killer cells from increased calcium influx induced by electrical stimulation
Minseon Lee1,2, Soonjo Kwon1,2
1Department of Biological Engineering, Inha University, Incheon, Korea.
Abstract:
Natural killer (NK) cells play a crucial role in immunosurveillance independent of antigen presentation, which is regulated by signal balance via activating and inhibitory receptors. The anti-tumor activity of NK cells is largely dependent on signaling from target recognition to cytolytic degranulation; however, the underlying mechanism remains unclear, and NK cell cytotoxicity is readily impaired by tumor cells. Understanding the activation mechanism is necessary to overcome the immune evasion mechanism, which remains an obstacle in immunotherapy. Because calcium ions are important activators of NK cells, we hypothesized that electrical stimulation could induce changes in intracellular Ca2+ levels, thereby improving the functional potential of NK cells. In this study, we designed an electrical stimulation system and observed a correlation between elevated Ca2+ flux induced by electrical stimulation and NK cell activation. Breast cancer MCF-7 cells co-cultured with electrically stimulated KHYG-1 cells showed a 1.27-fold (0.5 V/cm) and 1.55-fold (1.0 V/cm) higher cytotoxicity, respectively. Electrically stimulated KHYG-1 cells exhibited a minor increase in Ca2+ level (1.31-fold (0.5 V/cm) and 1.11-fold (1.0 V/cm) higher), which also led to increased gene expression of granzyme B (GZMB) by 1.36-fold (0.5 V/cm) and 1.58-fold (1.0 V/cm) by activating Ca2+-dependent nuclear factor of activated T cell 1 (NFAT1). In addition, chelating Ca2+ influx with 5 μM BAPTA-AM suppressed the gene expression of Ca2+ signaling and lytic granule (granzyme B) proteins by neutralizing the effects of electrical stimulation. This study suggests a promising immunotherapeutic approach without genetic modifications and elucidates the correlation between cytolytic effector function and intracellular Ca2+ levels in electrically stimulated NK cells.
Insights
Electrical stimulation enhances natural killer (NK) cell anti-tumor activity by increasing intracellular calcium (Ca2+) levels, leading to improved cytotoxicity and granzyme B expression. This method offers a promising, non-genetic approach for immunotherapy.
Area of Science:
- Immunology
- Cell Biology
- Biophysics
Background:
- Natural killer (NK) cells are crucial for immunosurveillance, acting independently of antigen presentation.
- NK cell anti-tumor activity relies on signaling pathways, but mechanisms are unclear and tumors can evade NK cell detection.
- Intracellular calcium ions (Ca2+) are key activators of NK cell function, suggesting potential for external modulation.
Purpose of the Study:
- To investigate if electrical stimulation can modulate intracellular Ca2+ levels in NK cells.
- To determine if electrical stimulation enhances NK cell anti-tumor cytotoxicity and effector functions.
- To elucidate the role of Ca2+ signaling in electrically stimulated NK cell activation and effector mechanisms.
Main Methods:
- Development of an electrical stimulation system for NK cells (KHYG-1 cell line).
- Measurement of intracellular Ca2+ flux and gene expression (granzyme B, NFAT1) following electrical stimulation.
- Assessment of NK cell cytotoxicity against breast cancer cells (MCF-7) and the effect of Ca2+ chelation (BAPTA-AM).
Main Results:
- Electrical stimulation significantly increased NK cell cytotoxicity against MCF-7 cells in a dose-dependent manner (0.5 V/cm and 1.0 V/cm).
- Electrically stimulated NK cells showed elevated intracellular Ca2+ levels and increased gene expression of granzyme B (GZMB) and NFAT1.
- Chelation of Ca2+ influx with BAPTA-AM abolished the effects of electrical stimulation on gene expression and cytotoxicity.
Conclusions:
- Electrical stimulation is a viable method to enhance NK cell anti-tumor activity by modulating Ca2+ signaling.
- The study demonstrates a direct correlation between Ca2+ flux, GZMB expression, and cytolytic effector function in electrically stimulated NK cells.
- This approach offers a promising, non-genetic immunotherapeutic strategy to overcome tumor immune evasion.
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