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Multistage carcinogenesis process as molecular targets in cancer chemoprevention by epicatechin-3-gallate.

Abstract
The consumption of green tea has long been associated with a reduced risk of cancer development. (-)-Epicatechin-3-gallate (ECG) or (-)-epigallocatechin-3-gallate (EGCG) are the major antioxidative polyphenolic compounds of green tea. They have been shown to exert growth-inhibitory potential of various cancer cells in culture and antitumor activity in vivo models. ECG or EGCG could interact with various molecules like proteins, transcription factors, and enzymes, which block multiple stages of carcinogenesis via regulating intracellular signaling transduction pathways. Moreover, ECG and EGCG possess pharmacological and physiological properties including induction of phase II enzymes, mediation of anti-inflammation response, regulation of cell proliferation and apoptosis effects and prevention of tumor angiogenesis, invasion and metastasis. Numerous review articles have been focused on EGCG, however none have been focused on ECG despite many studies supporting the cancer preventive potential of ECG. To develop ECG as an anticarcinogenic agent, more clear understanding of the cell signaling pathways and the molecular targets responsible for chemopreventive and chemotherapeutic effects are needed. This review summarizes recent research on the ECG-induced cellular signal transduction events which implicate in cancer management.
AuthorsMin-Hsiung Pan, Yi-Siou Chiou, Yin-Jen Wang, Chi-Tang Ho, Jen-Kun Lin
JournalFood & function (Food Funct) Vol. 2 Issue 2 Pg. 101-10 (Feb 2011) ISSN: 2042-650X [Electronic] England
PMID21779554 (Publication Type: Journal Article, Review)
Chemical References
  • Anticarcinogenic Agents
  • Antineoplastic Agents, Phytogenic
  • Tea
  • Catechin
  • epicatechin gallate
  • epigallocatechin gallate
Topics
  • Anticarcinogenic Agents (therapeutic use)
  • Antineoplastic Agents, Phytogenic (therapeutic use)
  • Catechin (analogs & derivatives, therapeutic use)
  • Humans
  • Neoplasms (metabolism, prevention & control)
  • Signal Transduction (drug effects, physiology)
  • Tea (chemistry)

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