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Melatonin effects on intercellular junctional communication in MCF-7 human breast cancer cells
1Department of Physiology and Pharmacology, School of Medicine, University of Cantabria, Santander, Spain. coss@medi.unican.es
Abstract:
Melatonin exerts a direct antiproliferative effect on estrogen-responsive MCF-7 cells in culture. Recently, the importance of the anti-invasive actions of melatonin as a part of the oncostatic action of this indolamine has been reported. Gap junctional intercellular communication is known to be involved in controlling cell proliferation and differentiation, and a decrease in intercellular junctional communication has been described in highly invasive mammary cancer cells. Because melatonin at physiological doses (1 nM) shifts MCF-7 cells to a lower invasive status, we postulate that melatonin could modulate the levels of gap junctional intercellular communication in these tumor cells. To test our hypothesis, we studied gap junctional intercellular communication in MCF-7 human breast cancer cells previously (7-8 days) treated, or not, with melatonin (10 microM or 1 nM). Using the scrape-loading assay dye-transfer technique to introduce 0.05% Lucifer yellow into cells, we measured the ability of the tumor cells to transfer dye to adjacent cells. Rhodamine dextran (0.05%) was used as a control dye to verify that dye-transfer occurs through intercellular junctions. The presence of melatonin (10 microM or 1 nM) in the culture medium significantly increased (P < 0.01) the transfer of the dye to adjacent cells through gap junctions. This increase was greater at 10 microM melatonin, and averaged scan profiles of cells treated with melatonin 10 microM showed a statistically significant increase (P < 0.01) in the integrated optical density values, and a broadening of the densitometric scan. These findings suggest that melatonin could exert its antitumor action, at least in part, by increasing regulatory signals that are passed between adjacent epithelial cells through intercellular junctions.
Insights
Melatonin enhances gap junctional intercellular communication in breast cancer cells, suggesting a mechanism for its antitumor effects. This indoleamine increases communication between adjacent cells, potentially reducing cancer cell invasiveness.
Area of Science:
- Endocrinology
- Cell Biology
- Oncology
Background:
- Melatonin exhibits antiproliferative and anti-invasive properties against cancer cells.
- Reduced gap junctional intercellular communication is linked to increased mammary cancer cell invasiveness.
- Melatonin's effect on cell invasiveness suggests a modulation of intercellular communication.
Purpose of the Study:
- To investigate the effect of melatonin on gap junctional intercellular communication (GJIC) in MCF-7 human breast cancer cells.
- To determine if melatonin influences the transfer of molecules between adjacent tumor cells via gap junctions.
- To explore the potential role of GJIC modulation in melatonin's oncostatic action.
Main Methods:
- MCF-7 cells were treated with melatonin (10 microM or 1 nM) for 7-8 days.
- Dye-transfer assay using Lucifer yellow was employed to measure GJIC.
- Rhodamine dextran served as a control to confirm transfer through intercellular junctions.
- Densitometric scanning quantified dye transfer and junctional communication.
Main Results:
- Melatonin treatment significantly increased dye transfer between adjacent MCF-7 cells (P < 0.01).
- The increase in GJIC was dose-dependent, with a greater effect observed at 10 microM melatonin.
- Quantitative analysis showed a statistically significant increase in integrated optical density and broadening of scan profiles in melatonin-treated cells.
Conclusions:
- Melatonin enhances gap junctional intercellular communication in human breast cancer cells.
- Increased GJIC mediated by melatonin may contribute to its antitumor effects by facilitating intercellular signaling.
- These findings highlight a novel mechanism for melatonin's oncostatic action involving enhanced cell-to-cell communication.