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Updated: May 5, 2026

Activation and Measurement of NLRP3 Inflammasome Activity Using IL-1β in Human Monocyte-derived Dendritic Cells
Published on: May 22, 2014
LncPOPDC3-1 promotes Cd-induced inflammation response in human bronchial epithelial cells via the miR-548a-3p/NF-κB
Jinjin Cui1, Liying Sun2, Yanfang Yang2
1School of Public Health, Shantou university, Shantou, Guangdong 515063, China; School of Public Health, Baotou Medical College, Baotou, Inner Mongolia 014030, China.
Abstract:
Cadmium (Cd), a pervasive environmental heavy metal pollutant, has been extensively documented for its toxic effects on human health. However, the underlying pathogenic mechanisms of Cd toxicity, spanning molecular to cellular levels, remain incompletely elucidated and warrant further investigation. Here, quantitative real-time PCR (qRT-PCR) and enzyme-linked immunosorbent assay (ELISA) analyses demonstrated that cadmium exposure induced a pronounced inflammatory response, characterized by significant elevation of interleukin-6 (IL-6) and interleukin-8 (IL-8) in 16HBE cells. High-throughput sequencing of cadmium-exposed versus control 16HBE cells identified LncPOPDC3-1 as a novel differentially expressed transcript showing marked upregulation during cadmium-triggered inflammation. We found that LncPOPDC3-1 accelerated the progression of inflammation, including increasing inflammatory factors IL-6 and IL-8. Mechanistically, dual luciferase reporter gene assays and qRT-PCR analysis have demonstrated that LncPOPDC3-1 can directly bind to miR-548a-3p, which regulated the activation of NF-κB signaling pathway. Following inhibition of the NF-κB signaling pathway, the regulatory effect of LncPOPDC3-1 on Cd-induced inflammation was significantly attenuated. Therefore, our data suggest that LncPOPDC3-1 regulates the activation of NF-κB pathway through competitive bound to miR-548a-3p, which subsequently promotes the Cd-induced inflammation in 16HBE cells. This provides a new mechanism and potential molecular targets for Cd-induced toxicity.
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