Lokman Hekim Health Sciences
Article Open Access Volume 5 · Issue 1 · 2025 pp. 6–15

Investigation of the Cytotoxic Effects of Thymbra Spicata Polysaccharides on MCF-7 Breast Cancer Cell Proliferation and Migration in vitro Conditions

Caner Özbey1 ORCID, Işıl Aydemir2 ORCID, Emre Çetindağ2 ORCID, Oktay Özkan3 ORCID
1 Department of Pathology, Niğde Ömer Halisdemir University, Training and Research Hospital, Niğde, Türkiye
2 Department of Histology and Embryology, Niğde Ömer Halisdemir University Faculty of Medicine, Niğde, Türkiye
3 Department of Pharmacology, Niğde Ömer Halisdemir University Faculty of Medicine, Niğde, Türkiye
Published: 2025 DOI: 10.14744/lhhs.2025.66605 Article ID: LHHS-66605
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Abstract
Abstract
Introduction: Thymbra spicata species is a widely used plant, especially in the Eastern Mediterranean region, and is known to have many health benefits. However, the effects of its polysaccharides on tumor cells have not been investigated. We aimed to evaluate the biological effects of Thymbra spicata polysaccharides in MCF-7 breast cancer cells.
Methods: MTT test was performed to determine the cytotoxicity levels of polysaccharides and doxorubicin in MCF-7 and L929 fibroblast cells. The expression levels of VEGF and GSK-3β were examined by immunocytochemistry. For the in vitro wound healing assay, the scratch wound model was created in the shape of plus (+), and the percentage of closure was calculated.
Results: Thymbra spicata polysaccharides and doxorubicin had a cytotoxic effect on MCF-7 cells depending on the dose increase. The percentage of wound closure also decreased in correlation with the MTT results. In L929 cells, there was no significant difference in VEGF and GSK-3β immunoreactivity after polysaccharides and doxorubicin treatments, but a significant decrease in VEGF and GSK-3β expression was observed in MCF-7 cells.
Discussion and Conclusion: We demonstrated that polysaccharides exert toxic effects by suppressing VEGF and GSK-3β molecules. In addition, the polysaccharides inhibited cell proliferation and migration and delayed in vitro wound healing at high concentrations.

Keywords: Breast cancer; Cell migration; Cytotoxicity; Proliferation; Thymbra spicata Polysaccharides

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