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.

Cells
|July 24, 2019
PubMed

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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