活性氧
细胞生物学
p38丝裂原活化蛋白激酶
MAPK/ERK通路
活力测定
DNA损伤
线粒体ROS
炎症
信号转导
细胞毒性
化学
氧化应激
生物
分子生物学
细胞
体外
免疫学
生物化学
DNA
作者
Da Hye Kim,Hyesook Lee,Hyun Hwangbo,So Young Kim,Seon Yeong Ji,Min Yeong Kim,Seh-Kwang Park,Sungho Park,Mi-Young Kim,Gi‐Young Kim,JaeHun Cheong,Soo‐Wan Nam,Yung Hyun Choi
标识
DOI:10.1080/15569527.2022.2122489
摘要
AbstractPurpose Numerous studies have linked particulate matter2.5 (PM2.5) to ocular surface diseases, but few studies have been conducted on the biological effect of PM2.5 on the cornea. The objective of this study was to evaluate the harmful effect of PM2.5 on primary rat corneal epithelial cells (RCECs) in vitro and identify the toxic mechanism involved.Materials and methods Primary cultured RCECs were characterized by pan-cytokeratin (CK) staining. In PM2.5-exposed RCECs, cell viability, microarray gene expression, inflammatory cytokine levels, mitochondrial damage, DNA double-strand break, and signalling pathway were investigated.Results Exposure to PM2.5 induced cytotoxicity and morphological changes in RCECs. In addition, PM2.5 markedly up-regulated pro-inflammatory mediators but down-regulated the wound healing-related transforming growth factor-β. Furthermore, PM2.5 promoted mitochondrial reactive oxygen species (ROS) production and mediated cellular damage to mitochondria and DNA, whereas these cellular alterations induced by PM2.5 were markedly suppressed by a potential ROS scavenger. Noteworthy, removal of ROS selectively down-regulated the phosphorylation of p38 mitogen-activated protein kinase (MAPK) and the activation of the nuclear factor-κB (NF-κB) p65 in PM2.5-stimulated cells. Additionally, SB203580, a p38 MAPK inhibitor, markedly suppressed these PM2.5-mediated cellular dysfunctions.Conclusions Taken together, our findings show that PM2.5 can promote the ROS/p38 MAPK/NF-κB signalling pathway and lead to mitochondrial damage and DNA double-strand break, which is ultimately caused inflammation and cytotoxicity in RCECs. These findings indicate that the ROS/p38 MAPK/NF-κB signalling pathway is one mechanism involved in PM2.5-induced ocular surface disorders.Keywords: Particulate matter 2.5corneal epithelial cellsROSp38 MAPKNF-κB Geolocation informationThe research was conducted in Busan, Republic of Korea.Disclosure statementNo potential conflict of interest was reported by the authors.Additional informationFundingThis research was funded by the Basic Science Research Program through the National Research Foundation [2019R1C1C1008623 and 2021R1A2C200954911] and BGN Eye Clinic.
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