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Immune Response of the Monocytic Cell Line THP-1 Against Six Aeromonas spp
Ana Fernández-Bravo1,2, Maria José Figueras1,2
1Rovira i Virgili University, Department of Basic Medical Sciences, Mycology and Environmental Microbiology Unit, Reus, Spain.
Abstract:
Aeromonas are autochthonous bacteria of aquatic environments that are considered to be emerging pathogens to humans, producing diarrhea, bacteremia, and wound infections. Genetic identification shows that 95.4% of the strains associated with clinical cases correspond to the species Aeromonas caviae (37.26%), Aeromonas dhakensis (23.49%), Aeromonas veronii (21.54%), and Aeromonas hydrophila (13.07%). However, few studies have investigated the human immune response against some Aeromonas spp. such as A. hydrophila, Aeromonas salmonicida, and A. veronii. The present study aimed to increase the knowledge about the innate human immune response against six Aeromonas species, using, for the first time, an in vitro infection model with the monocytic human cell line THP-1, and to evaluate the intracellular survival, the cell damage, and the expression of 11 immune-related genes (TLR4, TNF-α, CCL2, CCL20, JUN, RELA, BAX, TP53, CASP3, NLRP3, and IL-1β). Transcriptional analysis showed an upregulated expression of a variety of the monocytic immune-related genes, with a variable response depending upon the Aeromonas species. The species that produced the highest cell damage, independently of the strain origin, coincidentally induced a higher expression of immune-related genes and corresponded to the more prevalent clinical species A. dhakensis, A. veronii, and A. caviae. Additionally, monocytic cells showed an overexpression of the apoptotic and pyroptotic genes involved in cell death after A. dhakensis, A. caviae, and Aeromonas media infection. However, the apoptosis route seemed to be the only way of producing cell damage and death in the case of the species Aeromonas piscicola and Aeromonas jandaei, while A. veronii apparently only used the pyroptosis route.
Insights
This study investigated the human immune response to six Aeromonas species using an in vitro model. Pathogenic Aeromonas species like A. dhakensis and A. veronii induced significant immune gene expression and cell death pathways.
Area of Science:
- Microbiology
- Immunology
- Cell Biology
Background:
- Aeromonas bacteria are aquatic pathogens causing human infections like diarrhea and bacteremia.
- Clinical cases are often linked to Aeromonas caviae, Aeromonas dhakensis, Aeromonas veronii, and Aeromonas hydrophila.
- Limited research exists on the human immune response to specific Aeromonas species.
Purpose of the Study:
- To investigate the innate human immune response against six Aeromonas species.
- To evaluate bacterial survival, host cell damage, and immune gene expression.
- To elucidate the cell death pathways (apoptosis, pyroptosis) triggered by Aeromonas infection.
Main Methods:
- Utilized an in vitro infection model with the human monocytic cell line THP-1.
- Analyzed the expression of 11 immune-related genes (e.g., TLR4, TNF-α, NLRP3, CASP3).
- Assessed bacterial intracellular survival, host cell damage, and gene expression patterns.
Main Results:
- Variable upregulation of monocytic immune-related genes was observed depending on the Aeromonas species.
- Species causing higher cell damage (A. dhakensis, A. veronii, A. caviae) induced greater immune gene expression.
- Apoptotic and pyroptotic gene overexpression occurred after A. dhakensis, A. caviae, and A. media infections.
Conclusions:
- The human innate immune response to Aeromonas varies significantly by species.
- Pathogenic Aeromonas species trigger distinct cell death pathways, including apoptosis and pyroptosis.
- Understanding these responses is crucial for managing Aeromonas-related human infections.
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