Title of article :
The Effects of Pre-Treatment and Post- Treatment of Thymol against tert-Butyl Hydroperoxide (t-BHP) Cytotoxicity in MCF-7 Cell Line and Fibroblast Derived Foreskin
Author/Authors :
Pourbagher, Roghayeh Cellular and Molecular Biology Research Center - Health Research Institute - Babol University of Medical Sciences - Babol, I. R. Iran , Zabihi, Ebrahim Cellular and Molecular Biology Research Center - Health Research Institute - Babol University of Medical Sciences - Babol, I. R. Iran , Mahjoub, Soleiman Cellular and Molecular Biology Research Center - Health Research Institute - Babol University of Medical Sciences - Babol, I. R. Iran , Dashtaki, Afsaneh Student Research Committee - Babol University of Medical Sciences - Babol, I. R. Iran
Abstract :
Some recent studies have reported anti-tumor activity for Thymol, but the findings are
inconsistent. This study aimed to investigate and compare Thymol's effects on MCF-7 cancer cells and
fibroblasts while treated with tert-Butyl hydroperoxide (t-BHP).
Methods: In the pre-treatment, MCF-7 and fibroblast cells were treated with various Thymol concentrations
and incubated for 24 h. Then, t-BHP was added to a final concentration of 50 μM, and the cells were incubated
for one h. In the post-treatment, cells were incubated first with 50 μM t-BHP for one h and then treated with
Thymol. Cell viability was tested by 3-(4,5-Dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide (MTT)
assay. Thymol's antioxidant capacity was measured by DPPH and FRAP assays, and lipid peroxidation levels
were determined by the TBARS method.
Results: The thymol effects were dose-dependent, and despite their antioxidant properties, at concentrations of
100 μg/ml or more, increased t-BHP toxicity and reduced cancer cell viability. MTT assay result showed that
pre-treatment and post-treatment with Thymol for 24 hours effectively reduced MCF-7 and fibroblast cell
viability compared with the untreated control group. Both pre- and post-treatment of Thymol, normal fibroblast
cell viability was significantly greater than that of the MCF-7 cells.
Conclusions: Our finding showed that Thymol appears to be toxic to MCF-7 cells at lower concentrations than
fibroblasts after 24 hours of incubation. Pre-treatment with Thymol neutralized the oxidative effect of t-BHP in
fibroblasts but was toxic for MCF-7 cells.
Keywords :
tert-Butyl Hydroperoxide , Oxidative Stress , MCF-7 Cells , Breast Cancer , Thymol
Journal title :
Reports of Biochemistry and Molecular Biology (RBMB)