MiR-125a-5p is Upregulated in Plasma of Residents from An Electronic Waste Recycling Site

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The mechanism of health effects caused by organohalogen pollutants, e.g., toxins from electronic waste(e-waste), is poorly understood. We supposed that micro RNAs(mi RNAs), an important post-transcriptional regulator, could play a role in this process. In this study, fasting peripheral blood samples were collected from residents living at an e-waste site in northern China and a nearby reference population. Concentrations of e-waste related organohalogen pollutants in plasma from the exposure group were higher than the corresponding measurement in the reference group. Correspondingly, sixty mi RNAs in plasma showed > 2-fold change between the two groups in microarray analysis. Among them, mi R-125a-5p was confirmed to be upregulated by q RT-PCR and its validated targets were enriched in responses to xenobiotics and cancer related pathways. Furthermore, significant positive correlations were found between levels of mi R-125a-5p in plasma and reactive oxygen species(ROS) in polymorphonuclear neutrophil leukocytes(P < 0.05). These evidences suggested oxidative stress might be an intermediate between e-waste related POPs exposure and alteration of plasma mi RNA. The mechanism of health effects caused by organohalogen pollutants, eg, toxins from electronic waste (e-waste), is poorly understood. We supposed that microRNAs (mi RNAs), an important post-transcriptional regulator, could play a role in this process In this study, fasting peripheral blood samples were collected from residents living at an e-waste site in northern China and a nearby reference population. Concentrations of e-waste related organohalogen pollutants in plasma from the exposure group were higher than the corresponding measurement in the reference group. Correspondingly, sixty mi RNAs in plasma showed> 2-fold change between the two groups in microarray analysis. Among them, mi R-125a-5p was confirmed to be upregulated by q RT-PCR and its validated targets were enriched in response to xenobiotics and cancer related pathways. Significant correlations were found between levels of mi R-125a-5p in plasma and reactive oxygen species (ROS) in polymorphonucl These evidences suggest oxidative stress might be an intermediate between e-waste related POPs exposure and alteration of plasma mi RNA.
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