The effects of the metal welding fume UFPs on oxidative damage via Nrf-2 signaling pathway in 16HBE cells

Author:

Ying Mengchao1,Yang Yun1,Huo Qian1,Sun Jingqiu1,Hong Xinyu1,Yang Feng1,Fang Yamin1,Lu Lingyi2,Mao Tingfeng2,Xiao Ping1,Tao Gonghua1

Affiliation:

1. Shanghai Municipal Center for Disease Control & Prevention

2. Xuhui District Center for Disease Control and Prevention

Abstract

Abstract

As one of the main occupational hazards, welding fumes can cause oxidative damage and induce series of diseases, such as COPD or asthma. To clarify the effects of the metal fume ultrafine particulates (MF-UFPs) of welding fumes on oxidative damage, UFPs were collected by melt inert gas (MIG) and manual metal arc (MMA) welding, and the composition was confirmed. Human bronchial epithelial 16HBE cells were treated with 0-1000 µg/cm2 MF-UFPs to analyse the cytotoxicity, oxidative stress and cytokines. The protein and mRNA expression of Keap1-Nrf-2/ARE signalling pathway components were also analysed. After 4 h of treatment, the cell viability decreased 25% after 33.85 and 32.81 µg/cm2 MIG/MMA-UFPs treated. The intracellular ATP concentrations were also decreased significantly, while LDH leakage was increased. The decreased mitochondrial membrane potential and increased ROS suggested the occurrence of oxidative damage, and the results of proteome profiling arrays also showed a significant increase in IL-6 and IL-8. The expression of AREs which related to antioxidant and anti-inflammatory were also increased. These results indicate that the MF-UFPs can cause oxidative stress in 16HBE cells and activate the Nrf-2/ARE signalling pathway to against oxidative damage.

Publisher

Springer Science and Business Media LLC

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