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Evaluating the Effectiveness of Cancer Drug Sensitization In Vitro and In Vivo
Published on: February 6, 2015
Cancer and phase II drug-metabolizing enzymes
1Department of Bioscience & Technology, Institute of Graduate Studies & Research, Alexandria University, Egypt. sheweita@hotmail.com
Abstract:
Cancer development results from the interaction between genetic factors, the environment, and dietary factors have been identified as modulators of carcinogenesis process. The formation of DNA adducts is recognized as the initial step in chemical carcinogenesis. Accordingly, blocking DNA adducts formation would be the first line of defense against cancer caused by carcinogens. Glutathione-S-transferases inactivate chemical carcinogens into less toxic or inactive metabolite through reduction of DNA adducts formation. There are many different types of glutathione S-transferase isozymes. For example, GST delta serves as a marker for hepatotoxicity in rodent system, and also plays an important role in carcinogen detoxification. Therefore, inhibition of GST activity might potentiate the deleterious effects of many environmental toxicants and carcinogens. In addition, approximately half of the population lacks GST Mu expression. Epidemiological evidence showed that persons possessing this genotype are predisposed to a number of cancers including breast, prostate, liver and colon cancers. In addition, individual risk of cancer depends on the frequency of mutational events in target oncogenes and tumor suppressor genes which could lead to loss of chromosomal materials and tumor progression. The most frequent genetic alteration in a variety of human malignant tumors is the mutation of the coding sequence of the p53 tumor suppressor gene. O(6)-alkylguanine in DNA leads to very high rates of G:C deltaA:T transitions in p53 gene. These alterations will modulate the expression of p53 gene and consequently change DNA repair, cell division, and cell death by apoptosis. Also, changes in the expression of BcI-2 gene results in extended viability of cells by over-riding programmed cell death (apoptosis) induced under various conditions. The prolonged life-span increases the risk of acquiring genetic changes resulting in malignant transformation. In addition, a huge variety of food ingredients have been shown to affect cell proliferation rates. They, therefore, may either reduce or increase the risk of cancer development and progression. For example, it has been found that a high intake of dietary fat accelerates the development of breast cancer in animal models. Certain diets have been suggested to act as tumor promoters also in other types of cancer such as colon cancer, where high intake of fat and phosphate have been linked to colonic hyper-proliferation and colon cancer development. Different factors such as oncogenes, aromatic amines, alkylating agents, and diet have a significant role in cancer induction. Determination of glutathione S-transferase isozymes in plasma or serum could be used as a biomarker for cancer in different organs and could give an early detection.
Insights
Glutathione-S-transferases (GSTs) detoxify carcinogens, but inhibited GST activity or lack of GST Mu expression increases cancer risk. Diet and genetic mutations also influence cancer development, with GSTs potentially serving as early detection biomarkers.
Area of Science:
- Biochemistry
- Molecular Biology
- Cancer Research
Background:
- Carcinogenesis is influenced by genetic, environmental, and dietary factors.
- DNA adduct formation is an initial step in chemical carcinogenesis.
- Glutathione-S-transferases (GSTs) detoxify carcinogens, reducing DNA adducts and cancer risk.
Purpose of the Study:
- To explore the role of GSTs in carcinogen detoxification and cancer risk.
- To investigate the impact of GST isozyme variations and inhibition on cancer susceptibility.
- To examine the influence of genetic mutations and dietary factors on cancer development.
Main Methods:
- Review of scientific literature on GSTs, carcinogenesis, and cancer risk factors.
- Analysis of epidemiological data regarding GST genotypes and cancer predisposition.
- Examination of molecular mechanisms involving p53 and BcI-2 gene mutations in cancer progression.
Main Results:
- Inhibition of GST activity can potentiate the effects of carcinogens.
- Lack of GST Mu expression is linked to increased susceptibility to various cancers.
- Mutations in p53 and altered BcI-2 expression contribute to tumor progression and apoptosis resistance.
- Dietary factors, such as high fat intake, can influence cancer development.
Conclusions:
- GSTs play a critical role in detoxifying carcinogens and preventing DNA adduct formation.
- Individual cancer risk is influenced by genetic predisposition, environmental exposures, and diet.
- GST isozyme levels in plasma or serum may serve as potential biomarkers for early cancer detection.
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