Occupational exposure to volatile organic compounds (VOCs) may cause hematopoietic malignancy, either by single exposure to benzene or possibly due to a concomitant exposure to several VOCs. Since oxidative stress, inflammation and DNA repair pathways are closely involved in cancer development, the effect of VOC exposure on expression of proteins involved in these pathways has been studied, but epigenetic changes have not been well described. Here, DNA methylation status following occupational exposure to a VOC mixture was assessed by bisulfite sequencing of the promoter regions of seven genes involved in the mentioned pathways. Peripheral blood samples and individual-level VOC exposure data were obtained from healthy leather shoe factory w...
Occupational exposure to (benzene, toluene and xylene, BTX is common in the Chinese workplace. Chron...
Aberrant DNA methylation patterns are common in cancers and environmental pollutant exposed subjects...
Ethylbenzene, toluene and xylene are widely used volatile organic compounds (VOCs). VOCs are dangero...
Occupational exposure to volatile organic compounds (VOCs) may cause hematopoietic malignancy, eithe...
Exposure to low levels of benzene may cause acute myeloid leukemia in humans. Epigenetic effects in ...
Background: Exposure to benzene would be associated with many diseases including leukemia. Epigeneti...
Benzene is a primary industrial chemical and a ubiquitous environmental pollutant. ERCC3 is a key pl...
Gene-specific methylation levels (promoter region) on genes from critical cellular pathways were det...
Benzene, a known human carcinogen, and methyl tert-butyl ether (MTBE), not classifiable as to its ca...
Volatile organic compounds (VOCs) can be easily taken up by humans, leading to various diseases, suc...
Chronic occupational exposure to benzene is associated with an increased risk of hematological malig...
Chronic occupational exposure to benzene is associated with an increased risk of hematological malig...
Many workers are daily exposed to occupational agents like gases/fumes, mineral dust or biological d...
Benzene, a known human carcinogen, and methyl tert-butyl ether (MTBE), not classifiable as to its ca...
Aberrant DNA methylation is a common finding in AML and other cancer tissues. We investigated for t...
Occupational exposure to (benzene, toluene and xylene, BTX is common in the Chinese workplace. Chron...
Aberrant DNA methylation patterns are common in cancers and environmental pollutant exposed subjects...
Ethylbenzene, toluene and xylene are widely used volatile organic compounds (VOCs). VOCs are dangero...
Occupational exposure to volatile organic compounds (VOCs) may cause hematopoietic malignancy, eithe...
Exposure to low levels of benzene may cause acute myeloid leukemia in humans. Epigenetic effects in ...
Background: Exposure to benzene would be associated with many diseases including leukemia. Epigeneti...
Benzene is a primary industrial chemical and a ubiquitous environmental pollutant. ERCC3 is a key pl...
Gene-specific methylation levels (promoter region) on genes from critical cellular pathways were det...
Benzene, a known human carcinogen, and methyl tert-butyl ether (MTBE), not classifiable as to its ca...
Volatile organic compounds (VOCs) can be easily taken up by humans, leading to various diseases, suc...
Chronic occupational exposure to benzene is associated with an increased risk of hematological malig...
Chronic occupational exposure to benzene is associated with an increased risk of hematological malig...
Many workers are daily exposed to occupational agents like gases/fumes, mineral dust or biological d...
Benzene, a known human carcinogen, and methyl tert-butyl ether (MTBE), not classifiable as to its ca...
Aberrant DNA methylation is a common finding in AML and other cancer tissues. We investigated for t...
Occupational exposure to (benzene, toluene and xylene, BTX is common in the Chinese workplace. Chron...
Aberrant DNA methylation patterns are common in cancers and environmental pollutant exposed subjects...
Ethylbenzene, toluene and xylene are widely used volatile organic compounds (VOCs). VOCs are dangero...