AI Article Synopsis

  • Particulate matter (PM) can make skin cells called keratinocytes produce reactive oxygen species (ROS), which are harmful molecules that can damage cells.!* -
  • The study found that this ROS production happens through a system involving specific proteins called NOX1, NOX4, and DUOX1, as well as calcium signaling.!* -
  • The particles also interact with a receptor called AhR, which helps turn on the genes for NOX1 and DUOX1, leading to more ROS being made in skin cells.!*

Article Abstract

Stimulation of human keratinocytes with particulate matter 2.5 (PM) elicits complex signaling events, including a rise in the generation of reactive oxygen species (ROS). However, the mechanisms underlying PM-induced ROS production remain unknown. Here, we show that PM-induced ROS production in human keratinocytes is mediated via the NADPH oxidase (NOXs) system and the Ca signaling pathway. PM treatment increased the expression of NOX1, NOX4, and a calcium-sensitive NOX, dual oxidase 1 (DUOX1), in human epidermal keratinocyte cell line. PM bound to aryl hydrocarbon receptor (AhR), and this complex bound to promoter regions of NOX1 and DUOX1, suggesting that AhR acted as a transcription factor of NOX1 and DUOX1. PM increased the transcription of DUOX1 via epigenetic modification. Moreover, a link between DNA demethylase and histone methyltransferase with the promoter regions of DUOX1 led to an elevation in the expression of DUOX1 mRNA. Interestingly, PM increased NOX4 expression and promoted the interaction of NOX4 and Ca channels within the cytoplasmic membrane or endoplasmic reticulum, leading to Ca release. The increase in intracellular Ca concentration activated DUOX1, responsible for ROS production. Our findings provide evidence for a PM-mediated ROS-generating system network, in which increased NOX1, NOX4, and DUOX1 expression serves as a ROS signal through AhR and Ca activation.

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Source
http://dx.doi.org/10.1016/j.envpol.2024.123675DOI Listing

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