Inhibition of chemical carcinogenesis and tumorigenesis by selenium

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.

Related Concept Videos

Inhibition of Cdk Activity02:34

Inhibition of Cdk Activity

The orderly progression of the cell cycle depends on the activation of Cdk protein by binding to its cyclin partner. However, the cell cycle must be restricted when undergoing abnormal changes. Most cancers correlate to the deregulated cell cycle, and since Cdks are a central component of the cell cycle, Cdk inhibitors are extensively studied to develop anticancer agents. For instance, cyclin D associates with several Cdks, such as Cdk 4/6, to form an active complex. The cyclin D-Cdk4/6 complex...
Cancer Prevention02:59

Cancer Prevention

Several factors can increase the risk of cancer in an individual. About 50% of cancer cases can be prevented by adopting a healthy lifestyle, regular exercise, eating healthy, and following a modest cancer prevention diet. Epidemiological studies have consistently shown that populations with vegetable and fruit-rich diets have reduced the incidence of cancer. On the other hand, populations who have a diet rich in animal fat, red meat, junk food, or high calories are predisposed to cancer.
Some...
Cancer-Critical Genes II: Tumor Suppressor Genes01:05

Cancer-Critical Genes II: Tumor Suppressor Genes

Genes usually encode proteins necessary for the proper functioning of a healthy cell. Mutations can often cause changes to the gene expression pattern, thereby altering the phenotype.
When the function of certain critical genes, especially those involved in cell cycle regulation and cell growth signaling cascades, gets disrupted, it upsets the cell cycle progression. Such cells with unchecked cell cycles start proliferating uncontrollably and eventually develop into tumors.
Such genes that act...
Inhibition of CDK Activity02:34

Inhibition of CDK Activity

The orderly progression of the cell cycle depends on the activation of Cdk protein by binding to its cyclin partner. However, the cell cycle must be restricted when undergoing abnormal changes. Most cancers correlate to the deregulated cell cycle, and since Cdks are a central component of the cell cycle, Cdk inhibitors are extensively studied to develop anticancer agents. For instance, cyclin D associates with several Cdks, such as Cdk 4/6, to form an active complex. The cyclin D-Cdk4/6 complex...
Cancer-Critical Genes II: Tumor Suppressor Genes01:05

Cancer-Critical Genes II: Tumor Suppressor Genes

Genes usually encode proteins necessary for the proper functioning of a healthy cell. Mutations can often cause changes to the gene expression pattern, thereby altering the phenotype.
When the function of certain critical genes, especially those involved in cell cycle regulation and cell growth signaling cascades, gets disrupted, it upsets the cell cycle progression. Such cells with unchecked cell cycles start proliferating uncontrollably and eventually develop into tumors.
Such genes that act...
Mutagenicity and Carcinogenicity01:25

Mutagenicity and Carcinogenicity

Mutagenicity and carcinogenicity refer to the ability of drugs to cause genetic defects and induce cancer, respectively. The International Agency for Research on Cancer (IARC) classifies agents into four groups based on their carcinogenic potential. Group 1 agents are known human carcinogens; group 2A agents are probably carcinogenic to humans; group 3 agents lack data to support their role in carcinogenesis; and group 4 includes agents for which data support that they are not likely to be...