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Long-term low-dose ionizing radiation (LLIR) widely exists in human life and has been confirmed to have potential pathogenic effects on cancer and cardiovascular diseases. However, it is technically and ethically unfeasible to explore LLIR-induced phenotypic changes in the human cohort, leading t...

2022-04-07 | MTBLS3854 | MetaboLights
Expression profiles in mouse liver exposed to long-term gamma-irradiation were examined to assess in vivo effects of low dose-rate radiation. Three groups of male C57BL/6J mice were exposed to whole body irradiation at dose-rates of 17-20 mGy/day, 0.86-1.0 mGy/day or 0.042-0.050 mGy/day for 401-485 ...
ORGANISM(S): Mus musculus 
To obtain more insight in the molecular effects of chronic low dose irradiation on endothelial cells, HUVEC were irradiated with low-dose rate irradiation (137Cs gamma source; 0, 1.4 and 4.1 mGy/h) for several weeks. At different time points (1, 3 and 6 weeks) cells were harvested for RNA extraction...
ORGANISM(S): Homo sapiens 
BACKGROUND: Epidemiological evidence suggests a link between pesticide exposure and the development of metabolic diseases. However, most experimental studies have evaluated the metabolic effects of pesticides using individual molecules, often at non relevant doses or in combination with other r...
2019-05-28 | MTBLS596 | MetaboLights
Measuring global gene expression using cDNA or oligonucleotide microarrays is an effective approach to understanding the complex mechanisms of the effects of radiation. However, few studies have been carried out that investigate gene expression in vivo after prolonged exposure to low-dose-rate radia...
ORGANISM(S): Mus musculus 
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