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Inhibition of chemical carcinogenesis and tumorigenesis by selenium
Abstract:
Selenium is effective in inhibiting the incidence and total number of tumors resulting from treatment with various chemical carcinogens. This inhibition occurs both at the initiation and promotion phases of chemical carcinogenesis. At least part of the inhibition of the initiation stage is associated with changes in the metabolism of the parent carcinogen. Studies with 7,12-dimethylbenz(a)anthracene suggest that selenium specifically blocks the enzyme(s) responsible for the formation of anti-dihydrodiol epoxide adducts to DNA. Selenium is also effective in reducing the in vitro and in vivo growth of numerous neoplastic cells. However, differences in the sensitivity to selenium are evident in the various tumor cell lines that have been examined. Continuous selenium intake appears to be necessary to maximal inhibition in both models of carcinogenesis. Evidence suggests that selenodiglutathione or some other intermediate in selenium metabolism is responsible for the anticarcinogenic and antitumorigenic properties of this trace element. The mechanism by which selenium produces these effects is unknown, but it may relate to alterations in either RNA transcription or translation. These and other data strongly suggest that selenium is a naturally occurring anticarcinogenic and antitumorigenic agent.
Insights
Selenium, a trace element, effectively inhibits tumor development and growth by interfering with chemical carcinogenesis at multiple stages. Continuous intake is crucial for its potent anticarcinogenic and antitumorigenic effects.
Area of Science:
- Biochemistry
- Oncology
- Nutritional Science
Background:
- Selenium is a trace element with known biological functions.
- Chemical carcinogenesis involves initiation and promotion phases.
- Neoplastic cell growth is a hallmark of cancer.
Purpose of the Study:
- To investigate the anticarcinogenic and antitumorigenic properties of selenium.
- To elucidate the mechanisms by which selenium inhibits chemical carcinogenesis and neoplastic cell growth.
Main Methods:
- Studies involving chemical carcinogens and tumor models.
- In vitro and in vivo experiments with neoplastic cells.
- Analysis of carcinogen metabolism and DNA adduct formation.
Main Results:
- Selenium inhibited tumor incidence and number in chemical carcinogenesis models.
- Inhibition occurred during both initiation and promotion phases.
- Selenium reduced in vitro and in vivo neoplastic cell growth, with varying sensitivity across cell lines.
- Evidence suggests selenodiglutathione or related metabolites mediate these effects.
Conclusions:
- Selenium acts as a naturally occurring anticarcinogenic and antitumorigenic agent.
- Its effects may involve alterations in carcinogen metabolism and RNA processing.
- Continuous selenium intake is necessary for maximal efficacy.
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