Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
8553381 | Toxicology Letters | 2018 | 8 Pages |
Abstract
We tested cadmium (Cd2+) effects on porcine IPEC-J2 cells, which represent an in vitro model of the interaction between intestinal cells and both infectious and non-infectious stressors. Accordingly, we investigated the effects of low (2â¯Î¼M) to moderate (20â¯Î¼M) concentrations of Cd2+, in terms of pro-inflammatory gene expression and protein release, as well as of infectivity in a Salmonella typhimurium penetration model. Our data showed a significant (Pâ¯<â¯.001) increase of intracellular Cd2+ after 3, 6 and 24â¯h of exposure with respect to levels at 1â¯h. These data showed the ability of IPEC-J2 to absorb Cd2+ as a function of both time and concentration. Also, the absorption of this heavy metal was related to a significant modulation of important pro-inflammatory messengers. In particular, down-regulation of IL-8 was associated with a significant decrease of Salmonella typhimurium ability to penetrate into IPEC-J2 cells, in agreement with a previous study in which an anti-IL 8 antibody could significantly inhibit Salmonella penetration into the same cells (Razzuoli et al., 2017). This finding demonstrates the ability of Cd2+ to affect the outcome of an important host-pathogen relationship. In conclusion, our study highlighted the ability of an environmental pollutant like Cd2+ to modulate innate immune responses in terms of chemokine release and gene expression, and susceptibility to microbial infections.
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Authors
E. Razzuoli, G. Mignone, F. Lazzara, W. Vencia, M. Ferraris, L. Masiello, B. Vivaldi, A. Ferrari, E. Bozzetta, M. Amadori,