P53 mediates lipopolysaccharide‐induced inflammation in human gingival fibroblasts

脂多糖 炎症 活性氧 肿瘤坏死因子α 线粒体ROS 氧化应激 化学 免疫印迹 细胞生物学 分泌物 细胞因子 分子生物学 生物 免疫学 生物化学 基因
作者
Jia Liu,Jiajun Zeng,Xiaoxuan Wang,Ming Zheng,Qingxian Luan
出处
期刊:Journal of Periodontology [Wiley]
卷期号:89 (9): 1142-1151 被引量:25
标识
DOI:10.1002/jper.18-0026
摘要

The role of reactive oxygen species (ROS) in activation of the inflammatory response has been proven in previous study using human gingival fibroblasts (HGFs) to lipopolysaccharide (LPS) from Porphyromonas gingivalis (Pg) stimulation, but its exact mechanism has not been established. ROS can be generated through increased oxidative phosphorylation. P53 originally identified as a tumor suppressor, has been demonstrated to be associated with energy metabolism. We proposed that LPS-induced inflammatory cytokines release in HGFs is mediated by interaction between P53 and ROS levels.HGFs were grown in medium with Pg LPS stimulation. Gene expression was performed by quantitative reverse transcription polymerase chain reaction (qRT-PCR) and Western blot analysis. HGFs were also processed by immunofluorescence to characterize the localization of P53. ROS was measured using a multimodal microplate reader and immunofluorescence microscopy. Cellular respiration levels were performed with a high-resolution respirometer. Cytokines secretion was confirmed by enzyme-linked immunosorbent assay.LPS-induced P53 activity and localization in mitochondria led to cellular redox imbalance and mitochondrial dysfunction, thus triggered the cellular inflammatory response with increased secretion of interleukin (IL)-1β, IL-6 and tumor necrosis factor (TNF)-α. Furthermore, the cellular redox imbalance and inflammation induced by LPS were reversed by inhibiting P53 activity. P53 expression followed by LPS-induced inflammation was also be restricted by suppressing ROS generation.The present study shows that LPS-induced inflammation in HGFs is partially dependent on P53 modulating ROS and ROS stimulating P53, which suggests that P53 and ROS may form a feedback loop. The identification of this mechanism may provide potential new therapeutic strategies for periodontitis.
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