| Literature DB >> 25825685 |
Katarína Koňariková1, Miriam Ježovičová1, Ján Keresteš2, Helena Gbelcová3, Zdeňka Ďuračková1, Ingrid Žitňanová1.
Abstract
In this study we investigated effects of natural extract from the black tea Camellia sinensis (BTE) against human colon carcinoma cell line HT-29, human breast carcinoma cell line MCF-7, human alveolar carcinoma cell line A549 and healthy cell line NIH-3T3. We identified concentration range for cytotoxic/antiproliferative effects using MTT assay and the trypan blue assay, gel electrophoresis we employed to determine the type of cell death induced by BTE and DNA damage we determined by comet assay. Different concentrations of the extract (0.00078 - 5 μg/mL) we added to the cultured cells and incubated for 216 h. BTE showed cytotoxic effects against all carcinoma cell lines, however HT-29 and MCF-7 cells were more sensitive than A549. BTE showed no antiproliferative effect against healthy cells NIH-3T3 at tested concentrations. We found no apoptotic cell death in HT-29 and MCF-7 cells after 72 h of incubation in case of single administration of BTE but in case of repetitive administration of BTE (BTE was added to the cells each day) we found apoptotic cell death in HT-29 after 72 h incubation. BTE induced also DNA strand breaks and oxidative damage to DNA in carcinoma cells HT-29 and MCF-7.Entities:
Keywords: Apoptosis; Black tea; Camellia sinensis; Cancer; Protective effect
Year: 2015 PMID: 25825685 PMCID: PMC4374083 DOI: 10.1186/s40064-015-0871-4
Source DB: PubMed Journal: Springerplus ISSN: 2193-1801
Cytotoxic/antiproliferative effect of BTE against HT-29, MCF-7, A549 and NIH-3T3 cell lines represented by IC (μg/mL)
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| <0.00078 | <0.00078 | 0.0014 | <0.00078 | 0.0051 | 0.0013 | 0.015 | 0.0125 |
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| 0.0125 | 0.0145 | 0.0016 | - | - | - | - | - |
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| >5 | >5 | >5 | - | - | - | - | |
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| >5 | >5 | >5 | - | - | - | - | - |
The values represent mean ± SD of three independent experiments.
Figure 1Agarose gel electrophoresis in cells HT-29 (a, b) and MCF-7 (c, d) treated with 1–0.00625 μg/mL; 2 – 0.0125 μg/mL; 3 – 0.025 μg/mL; 4 – 5 μg/mL of BTE for 24, 48, 72, 144 and 216 h. C – control cells without BTE, PC – positive control (L1210 cells treated with 6 μmol/L cisPt).
Figure 2Effects of BTE on the DNA damage (%) in HT-29 (a) and MCF-7 (b) cells after 24 h treatment. DNA damage was represented by DNA strand breaks (without Fpg) and as the total DNA damage (with Fpg). Each value represents the arithmetic mean ± SD of three separate experiments (n = 3): * < 0.05 when compared with controls (HT-29 or MCF-7 cells without BTE). Maximal DNA damage (100%) for 100 comets was considered the DNA damage (TD) with the maximal score (400).