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Toxic and metabolic effect of sodium butyrate on SAS tongue cancer cells: role of cell cycle deregulation and redox changes
- Publication Year :
- 2006
-
Abstract
- Lifestyle element evaluated: sodium butyrate. Outcome studied: toxic effect of sodium butyrate (cell cycle arrest, apoptosis and growth inhibition) in SAS tongue cancer cells; sodium butyrate-induced ROS production in SAS tongue cancer cells. Method of biomarker analysis: toxic effect of sodium butyrate on SAS cancer cells (growth of SAS cancer cells, cell cycle progression of SAS cancer cells); ROS production (Reactive oxygen species scavenging properties of sodium butyrate, effect of sodium butyrate on GSH and ROS levels in SAS cancer cells)Study type: Human tongue cancer cell line SAS Quality control: More than four separate experiments were performed for each test.Impact on outcome: Sodium butyrate inhibited the growth of SAS tongue cancer cells by 32% and 53% at concentrations of 1 and 2mM, respectively. Low concentrations of sodium butyrate (1-8mM) induced G0/G1 cell cycle arrest of SAS cells, whereas concentrations of 4-16 mM elicited G2/M arrest and a slight increase in apoptotic cell populations. These events were concomitant with induction of intracellular reactive oxygen species (ROS) production. An elevation in p21 mRNA and protein level was noted in SAS cells by sodium butyrate. On the contrary, a decline of cyclin Bl, cdc2 and cdc25C mRNA and protein expression in SAS cells was found after exposure to sodium butyrate. In addition, no evident increase in cdc2 inhibitory phosphorylation was found in sodium butyrate-treated SAS cancer cells. Inclusion of N-acetyl-l-cysteine (NAC) (3mM), catalase (1000 U/ml) and dimethylthiourea (DMT, 5mM), and also SOD (500 U/ml) attenuated the sodium butyrate-induced ROS production in SAS cells. However, they were not able to prevent the cell cycle arrest, apoptosis and growth inhibition in SAS cells induced by 1, 2 and 16 mM of sodium butyrate. KEYWORDS - CLASIFFICATION: analysis;Apoptosis;Butyrates;Cell Cycle;Cell Cycle Proteins;Cell Line,Tumor;drug effects;Free Radical Scavengers;Gene Expression;genetics;Human;Humans;lifestyle modulation of cancer & cancer biomarkers;mechanisms of carcinogenesis;metabolism;Oxidation-Reduction;pathology;pharmacology;Proteins;Reactive Oxygen Species;Research;Sodium;Taiwan;Tongue Neoplasms;Toxicology; Butyrate is a metabolite produced by oral and colonic microorganism. Butyrate has been shown to reduce colon cancer, whereas its role in oral carcinogenesis is not clear. Butyrate concentration in dental plaque and saliva ranged from 0.2 to 16 mM. In this study, we found that sodium butyrate inhibited the growth of SAS tongue cancer cells by 32% and 53% at concentrations of 1 and 2mM, respectively. Low concentrations of sodium butyrate (1-8mM) induced G0/G1 cell cycle arrest of SAS cells, whereas concentrations of 4-16 mM elicited G2/M arrest and a slight increase in apoptotic cell populations. These events were concomitant with induction of intracellular reactive oxygen species (ROS) production. An elevation in p21 mRNA and protein level was noted in SAS cells by sodium butyrate. On the contrary, a decline of cyclin Bl, cdc2 and cdc25C mRNA and protein expression in SAS cells was found after exposure to sodium butyrate. In addition, no evident increase in cdc2 inhibitory phosphorylation was found in sodium butyrate-treated SAS cancer cells. Inclusion of N-acetyl-l-cysteine (NAC) (3mM), catalase (1000 U/ml) and dimethylthiourea (DMT, 5mM), and also SOD (500 U/ml) attenuated the sodium butyrate-induced ROS production in SAS cells. However, they were not able to prevent the cell cycle arrest, apoptosis and growth inhibition in SAS cells induced by 1, 2 and 16 mM of sodium butyrate. These results indicate that sodium butyrate is toxic and inhibits the tongue cancer cell growth via induction of cell cycle arrest and apoptosis. Sodium butyrate mediates these events by mechanisms additional to ROS production.
- Subjects :
- Sodium
Cytotoxicity
chemistry.chemical_element
Gene Expression
Apoptosis
Cell Cycle Proteins
Butyrate
Biology
Toxicology
medicine.disease_cause
Antioxidants
chemistry.chemical_compound
Cell Line, Tumor
medicine
Humans
Cell Cycle
Sodium butyrate
Free Radical Scavengers
Cell cycle
Molecular biology
Tongue Neoplasms
Butyrates
chemistry
Biochemistry
Cancer cell
Carcinogenesis
Reactive Oxygen Species
G1 phase
Oxidation-Reduction
Subjects
Details
- Language :
- English
- Database :
- OpenAIRE
- Accession number :
- edsair.doi.dedup.....4418100273f062f1220ccb3726e63c53