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Multifunctional aspects of the action of indole-3-carbinol as an antitumor agent
H L Bradlow1, D W Sepkovic, N T Telang
1Strang Cancer Research Laboratory, New York, New York 10021, USA. leon@rockvax.rockefeller.edu
Abstract:
Previous studies from this laboratory have suggested that 2-hydroxyestrone is protective against breast cancer, whereas the other principal metabolite, 16 alpha-hydroxyestrone, and the lesser metabolite quantitatively, 4-hydroxyestrone, are potent carcinogens. Attempts to directly decrease the formation of the 16-hydroxylated metabolite were either unsuccessful or required such high levels of the therapeutic agent as to be impractical. On the other hand the concentration of the protective metabolite, 2-hydroxyestrone, proved to be readily modulated by a variety of agents, both in the direction of increased protection and the opposite direction, increased risk by a variety of agents and activities. We have focussed our attention on indole-3-carbinol, a compound found in cruciferous vegetables, and its further metabolites in the body, diindolylmethane (DIM) and indolylcarbazole (ICZ), because of its relative safety and multifaceted activities. It has been shown that it induces CyP4501A1, increasing 2-hydroxylation of estrogens, leading to the protective 2-OHE1, and also decreases CyP1B1 sharply, inhibiting 4-hydroxylation of estradiol, thereby decreasing the formation of the carcinogenic 4-OHE1. In addition to these indirect effects as a result of altered estrogen metabolism, indole-3-carbinol has been shown to have direct effects on apoptosis and cyclin D, resulting in blockage of the cell cycle. In addition to its antitumor activity in animals, it has also been shown to be effective against HPV-mediated tumors in human patients. All of these responses make the study of its behavior as a therapeutic agent of considerable interest.
Insights
Indole-3-carbinol, found in cruciferous vegetables, shows promise in breast cancer prevention by altering estrogen metabolism. It increases protective 2-hydroxyestrone and decreases carcinogenic 4-hydroxyestrone, while also directly impacting cell cycle regulation.
Area of Science:
- Endocrinology
- Oncology
- Nutritional Science
Background:
- Estrogen metabolism plays a crucial role in breast cancer development.
- 2-hydroxyestrone is a protective metabolite, while 16 alpha-hydroxyestrone and 4-hydroxyestrone are carcinogenic.
- Previous attempts to modulate estrogen metabolism were often impractical.
Purpose of the Study:
- To investigate the potential of indole-3-carbinol and its metabolites (DIM, ICZ) as therapeutic agents for breast cancer.
- To evaluate their ability to modulate estrogen metabolism for cancer prevention.
Main Methods:
- Focus on indole-3-carbinol, a compound from cruciferous vegetables.
- Assessed its effects on cytochrome P450 enzymes (CYP4501A1 and CYP1B1) involved in estrogen hydroxylation.
- Examined direct effects on apoptosis and cell cycle regulation (cyclin D).
Main Results:
- Indole-3-carbinol induces CYP4501A1, increasing protective 2-hydroxyestrone (2-OHE1).
- It significantly decreases CYP1B1, inhibiting carcinogenic 4-hydroxyestrone (4-OHE1) formation.
- Demonstrated direct anti-cancer effects, including cell cycle arrest and efficacy against HPV-mediated tumors in animal models and human patients.
Conclusions:
- Indole-3-carbinol and its metabolites offer a promising therapeutic strategy for breast cancer.
- Their ability to favorably alter estrogen metabolism and exert direct anti-tumor effects warrants further investigation.
- These compounds represent a safe and effective approach to cancer prevention and treatment.