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Hesperetin effect on MLH1 and MSH2 expression on breast cancer cells BT-549
Assim Khattab Hasan1, Esmaeil Babaei1, Ahmed Salim Kadhim Al-Khafaji2
1Department of Animal Biology, Faculty of Natural Sciences, University of Tabriz, Tabriz, Iran.
Abstract:
Due to its genetic and phenotypic heterogeneity, breast cancer is very difficult to eliminate. The harmful consequences of conventional therapies like radiation and chemotherapy have prompted the search for organic-based alternatives. Hesperetin (HSP), a flavonoid, has been discovered to possess the ability to hinder the proliferation of cell associated with breast cancer by acting as an epigenetic agent and modifying gene expression. In this investigation, breast cancer cells (BT-549) and normal cells (MCF-10a) were subjected to the 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide) test and three different doses (200, 400, and 600 μM/mL) of HSP for real-time polymerase chain reaction and flow cytometry to examine its cytotoxic and anti-malignant potential. HSP was shown to be cytotoxic to both normal and breast cancer cells, but had a more pronounced effect on the cancer cell lines. After 48 h of treatment, the half-maximal inhibitory concentration (IC50) for BT-549 was 279.2 μM/mL, whereas the IC50 for MCF-10a was 855.4 μM/mL. At high HSP concentrations, upregulation of the MLH1 and MSH2 genes was observed in both cell lines. The influence of HSP on MLH1 gene expression was concentration dependent. Moreover, HSP had a concentration-dependent effect on MSH2 gene expression in the BT-549 cell line but not in the MCF-10a cell line. Cell death and early apoptosis were shown to be concentration dependent upon the application of HSP, as determined by flow cytometric analysis. HSP's capacity to cause apoptosis and its stronger impact on the malignant cell line when analyzed with the normal cell line imply that it might be useful as an effective therapeutic approach for combating breast cancer.
Insights
Hesperetin (HSP), a natural flavonoid, shows potential as a breast cancer therapy by selectively inhibiting cancer cell growth and inducing apoptosis. This epigenetic agent demonstrated a stronger cytotoxic effect on breast cancer cells than normal cells, suggesting a promising therapeutic avenue.
Area of Science:
- Biochemistry
- Molecular Biology
- Oncology
Background:
- Breast cancer's heterogeneity poses treatment challenges.
- Conventional therapies have significant side effects.
- Natural compounds like flavonoids are explored as alternatives.
Purpose of the Study:
- To investigate the cytotoxic and anti-malignant potential of hesperetin (HSP) on breast cancer cells.
- To examine HSP's effect on gene expression and apoptosis.
- To compare HSP's efficacy on breast cancer cells versus normal cells.
Main Methods:
- MTT assay for cytotoxicity.
- Real-time PCR for gene expression analysis (MLH1, MSH2).
- Flow cytometry for apoptosis detection.
Main Results:
- HSP exhibited dose-dependent cytotoxicity against BT-549 (breast cancer) and MCF-10a (normal) cells, with a lower IC50 for cancer cells.
- Upregulation of MLH1 and MSH2 genes was observed in both cell lines at higher HSP concentrations.
- HSP induced concentration-dependent cell death and early apoptosis, particularly in breast cancer cells.
Conclusions:
- Hesperetin demonstrates selective cytotoxicity towards breast cancer cells.
- HSP's ability to induce apoptosis and modulate gene expression suggests therapeutic potential.
- Further research into HSP as a natural therapeutic agent for breast cancer is warranted.

