Experimental Study on DNA Damages Induced by Cooking Oil Fume Condensates
Dongyan Li
Abstract
Dongyan Li
Abstract
Objective To study the effects of DNA damages in the human peripheral blood lymphocytes induced by cooking oil fume condenates(COFC).Methods The human peripheral blood lymphocytes were incubated in 37℃ for 60 minutes with different concentration of cooking oil fume condensates.The formation of DNA single-strand breaks(SSB),DNA double-strand breaks(SSB) and DNA-protein cosslinks(DPC) of the cells in various groups were detected with the method of single cell gel-electrophoresis(SCGE).Results Various concentration of COFC within the dose range of the experiment all could induce DNA strand breaks of human peripheral blood lymphocytes.At the concentration of 100μg/ml,200μg/ml and 400 μg/ml,COFC could result in DNA-protein crosslinks of human peripheral blood lymphocytes,and it was obvious that dose-response relationship between DNA damages and COFC.Conclusion COFC could induce DNA damages of human peripheral blood lymphocytes,and it may be potential carinogenic risk to human.
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Objective To study the effects of DNA damages in the human peripheral blood lymphocytes induced by cooking oil fume condenates(COFC).Methods The human peripheral blood lymphocytes were incubated in 37℃ for 60 minutes with different concentration of cooking oil fume condensates.The formation of DNA single-strand breaks(SSB),DNA double-strand breaks(SSB) and DNA-protein cosslinks(DPC) of the cells in various groups were detected with the method of single cell gel-electrophoresis(SCGE).Results Various concentration of COFC within the dose range of the experiment all could induce DNA strand breaks of human peripheral blood lymphocytes.At the concentration of 100μg/ml,200μg/ml and 400 μg/ml,COFC could result in DNA-protein crosslinks of human peripheral blood lymphocytes,and it was obvious that dose-response relationship between DNA damages and COFC.Conclusion COFC could induce DNA damages of human peripheral blood lymphocytes,and it may be potential carinogenic risk to human.
Key concepts: Peripheral blood, DNA, DNA damage, Gel electrophoresis, Chemistry, Human blood, Comet assay, Molecular biology