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Melatonin and (-)-Epigallocatechin-3-Gallate: Partners in Fighting Cancer
Lingyun Zhang1, Yufeng He1, Ximing Wu1
1Laboratory of Redox Biology, State Key Laboratory of Tea Plant Biology and Resources Utilization, School of Tea & Food Science, Anhui Agricultural University, Hefei 230000, China.
Abstract:
We have demonstrated previously that melatonin attenuates hepatotoxicity triggered by high doses of (-)-epigallocatechin-3-gallate (EGCG) in mice. The current work investigated the influence of melatonin on the oncostatic activity of EGCG in two cancer cell lines, wherein melatonin induced an opposite response of p21. In human tongue cancer TCA8113 cells, melatonin-induced p21 and EGCG-mediated formation of quinoproteins were positively associated with the oncostatic effects of melatonin and EGCG. Melatonin-stimulated an increase in p21 which was correlated with a pronounced nuclear translocation of thioredoxin 1 and thioredoxin reductase 1, both of which are known to induce p21 via promoting p53 trans-activation. Melatonin did not influence the EGCG-mediated increase of quinoprotein formation nor did EGCG impair melatonin-induced p21 up-regulation. Co-treatment with both agents enhanced the cell-killing effect as well as the inhibitory activities against cell migration and colony formation. It is known that p21 also plays a powerful anti-apoptotic role in some cancer cells and confers these cells with a survival advantage, making it a target for therapeutic suppression. In human hepatocellular carcinoma HepG2 cells, melatonin suppressed p21 along with the induction of pro-survival proteins, PI3K and COX-2. However, EGCG prevented against melatonin-induced PI3K and COX-2, and melatonin probably sensitized HepG2 cells to EGCG cytotoxicity via down-regulating p21, Moreover, COX-2 and HO-1 were significantly reduced only by the co-treatment, and melatonin aided EGCG to achieve an increased inhibition on Bcl2 and NFκB. These events occurring in the co-treatment collectively resulted in an enhanced cytotoxicity. In addition, the co-treatment also enhanced the inhibitory activities against cell migration and colony formation. Overall, the results gathered from these two cancer cell lines with a divergent p21 response to melatonin show that the various oncostatic activities of melatonin and EGCG together are more robust than each agent alone, suggesting that they may be useful partners in fighting cancer.
Insights
Melatonin and (-)-epigallocatechin-3-gallate (EGCG) show enhanced anti-cancer effects when combined. This combination therapy boosts cytotoxicity and inhibits cancer cell migration and colony formation in different cancer cell lines.
Area of Science:
- Molecular Oncology
- Cancer Therapeutics
- Pharmacology
Background:
- Melatonin is known to attenuate hepatotoxicity induced by high doses of (-)-epigallocatechin-3-gallate (EGCG).
- The role of p21 in cancer is complex, acting as both a tumor suppressor and a pro-survival factor.
- EGCG exhibits oncostatic properties, but its interaction with melatonin in cancer cells requires further investigation.
Purpose of the Study:
- To investigate the influence of melatonin on the oncostatic activity of EGCG in human tongue cancer (TCA8113) and hepatocellular carcinoma (HepG2) cell lines.
- To elucidate the molecular mechanisms underlying the combined effects of melatonin and EGCG, particularly the role of p21.
- To evaluate the synergistic potential of melatonin and EGCG as a combined cancer therapy.
Main Methods:
- Treatment of TCA8113 and HepG2 cancer cell lines with melatonin and EGCG, individually and in combination.
- Analysis of p21 expression, quinoprotein formation, and key signaling proteins (Thioredoxin 1, Thioredoxin reductase 1, PI3K, COX-2, HO-1, Bcl2, NFκB).
- Assessment of oncostatic effects, including cytotoxicity, inhibition of cell migration, and colony formation.
Main Results:
- In TCA8113 cells, melatonin-induced p21 and EGCG-mediated quinoprotein formation correlated with oncostatic effects; co-treatment enhanced cell killing and inhibited migration/colony formation.
- In HepG2 cells, melatonin suppressed p21 and induced pro-survival proteins, while EGCG counteracted these effects; co-treatment enhanced cytotoxicity by down-regulating p21 and inhibiting Bcl2/NFκB.
- Combined melatonin and EGCG treatment demonstrated robust oncostatic activities, exceeding the effects of individual agents across both cell lines.
Conclusions:
- Melatonin and EGCG exhibit synergistic oncostatic activities in different cancer cell lines, with divergent effects on p21 expression.
- The combination therapy enhances cytotoxicity and inhibits cancer cell proliferation, migration, and colony formation.
- Melatonin and EGCG represent promising therapeutic partners for cancer treatment, warranting further clinical investigation.
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