In vitro Cytotoxicity of Epigallocatechin Gallate and Tea Extracts to Cancerous and Normal Cells from the Human Oral Cavity

: This study compared the in vitro responses of malignant and normal cells from the human oral cavity to tea extracts and to its main polyphenolic component, (−)‐epigallocatechin gallate (EGCG). The antiproliferative effects of tea polyphenolic extracts and EGCG were more pronounced towards immortal...

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Veröffentlicht in:Basic & clinical pharmacology & toxicology 2004-10, Vol.95 (4), p.191-200
Hauptverfasser: Weisburg, Jeffrey H., Weissman, Danielle B., Sedaghat, Tannaz, Babich, Harvey
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Sprache:eng
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Zusammenfassung:: This study compared the in vitro responses of malignant and normal cells from the human oral cavity to tea extracts and to its main polyphenolic component, (−)‐epigallocatechin gallate (EGCG). The antiproliferative effects of tea polyphenolic extracts and EGCG were more pronounced towards immortalized, tumourigenic (CAL27, HSC‐2, and HSG1) and non‐tumourigenic (S‐G) cells than towards normal (GN56 and HGF‐1) fibroblasts and green tea was more toxic than black tea. As the addition of tea extract or EGCG to cell culture medium led to the formation of hydrogen peroxide (H2O2), the research then focused on EGCG as an inducer of oxidative stress, using CAL27, the cancerous cells most sensitive to EGCG, HSG1, the cancerous cells least sensitive to EGCG, and GN56 cells. The toxicity of EGCG was decreased in the presence of catalase, an enzyme that degrades H2O2, or of deferoxamine, a chelator of Fe3+. Conversely, pretreatment of the cells with the glutathione depleters, 1‐chloro‐2,4‐dinitrobenzene and 1,3‐bis(2‐chloroethyl)‐N‐nitrosourea, potentiated the toxicity of EGCG. A 4‐hr exposure to EGCG lessened the intracellular level of reduced glutathione in the CAL27 and HSG1 cells, but not in the GN56 fibroblasts. Whereas EGCG itself did not induce lipid peroxidation, Fe2+‐induced lipid peroxidation was potentiated by EGCG. A 72‐hr exposure to cytotoxic concentrations of EGCG induced significant cytoplasmic vacuolization in all cell types. The results presented herein are consistent with EGCG acting as a prooxidant, with the cancerous cells more sensitive to oxidative stress than the normal cells.
ISSN:1742-7835
1742-7843
DOI:10.1111/j.1742-7843.2004.pto_950407.x