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Oleuropein-Enriched Olive Leaf Extract Affects Calcium Dynamics and Impairs Viability of Malignant Mesothelioma Cells
Carla Marchetti1, Marco Clericuzio2, Barbara Borghesi3
1Istituto di Biofisica, Consiglio Nazionale delle Ricerche, Via De Marini 6, 16149 Genova, Italy.
Abstract:
Malignant mesothelioma is a poor prognosis cancer in urgent need of alternative therapies. Oleuropein, the major phenolic of olive tree (Olea europaea L.), is believed to have therapeutic potentials for various diseases, including tumors. We obtained an oleuropein-enriched fraction, consisting of 60% w/w oleuropein, from olive leaves, and assessed its effects on intracellular Ca(2+) and cell viability in mesothelioma cells. Effects of the oleuropein-enriched fraction on Ca(2+) dynamics and cell viability were studied in the REN mesothelioma cell line, using fura-2 microspectrofluorimetry and MTT assay, respectively. Fura-2-loaded cells, transiently exposed to the oleuropein-enriched fraction, showed dose-dependent transient elevations of cytosolic Ca(2+) concentration ([Ca(2+)]i). Application of standard oleuropein and hydroxytyrosol, and of the inhibitor of low-voltage T-type Ca(2+) channels NNC-55-0396, suggested that the effect is mainly due to oleuropein acting through its hydroxytyrosol moiety on T-type Ca(2+) channels. The oleuropein-enriched fraction and standard oleuropein displayed a significant antiproliferative effect, as measured on REN cells by MTT cell viability assay, with IC50 of 22 μg/mL oleuropein. Data suggest that our oleuropein-enriched fraction from olive leaf extract could have pharmacological application in malignant mesothelioma anticancer therapy, possibly by targeting T-type Ca(2+) channels and thereby dysregulating intracellular Ca(2+) dynamics.
Insights
Olive leaf extract, rich in oleuropein, shows promise as an alternative therapy for malignant mesothelioma. This compound effectively targets T-type calcium channels, impacting cancer cell viability.
Area of Science:
- * Pharmacology
- * Oncology
- * Phytochemistry
Background:
- * Malignant mesothelioma is an aggressive cancer with limited treatment options.
- * Oleuropein, a phenolic compound from olive leaves, exhibits potential anti-tumor properties.
- * Targeting intracellular calcium dynamics is a potential therapeutic strategy for cancer.
Purpose of the Study:
- * To investigate the effects of an oleuropein-enriched fraction on mesothelioma cells.
- * To determine the impact on intracellular calcium levels and cell viability.
- * To explore the potential role of T-type calcium channels in oleuropein's anti-cancer activity.
Main Methods:
- * An oleuropein-enriched fraction (60% oleuropein) was prepared from olive leaves.
- * Fura-2 microspectrofluorimetry was used to measure intracellular calcium ([Ca(2+)]i) dynamics.
- * MTT assay assessed cell viability in the REN mesothelioma cell line.
Main Results:
- * The oleuropein-enriched fraction induced dose-dependent transient increases in cytosolic calcium.
- * Oleuropein, acting via its hydroxytyrosol moiety, appeared to target T-type calcium channels.
- * A significant antiproliferative effect was observed, with an IC50 of 22 μg/mL for oleuropein.
Conclusions:
- * The oleuropein-enriched fraction demonstrates significant anti-mesothelioma activity.
- * Targeting T-type calcium channels and disrupting calcium homeostasis is a key mechanism.
- * Olive leaf extract containing oleuropein presents a potential therapeutic agent for malignant mesothelioma.
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