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Published on: May 21, 2018
Synergistic interaction in simultaneous exposure to Streptomyces californicus and Stachybotrys chartarum
Kati Huttunen1, Jukka Pelkonen, Kristian Fogg Nielsen
1Department of Environmental Health, National Public Health Institute, Kuopio, Finland. Kati.Huttunen@ktl.fi
Abstract:
The microbial exposure associated with health complaints in moldy houses consists of a heterogeneous group of components, including both living and dead bacteria, fungi, and their metabolites and active compounds. However, little is known about the interactions between different microbes and their metabolites, although the cytotoxicity and inflammatory potential of certain individual microbes have been reported. In this study, we investigated the inflammatory responses of mouse RAW264.7 macrophages after exposure to six indoor air microbes (Aspergillus versicolor, Penicillium spinulosum, Stachybotrys chartarum, Bacillus cereus, Mycobacterium terrae, and Pseudomonas fluorescens) alone and together with the actinomycete Streptomyces californicus. The production of nitric oxide, levels of the proinflammatory cytokines tumor necrosis factor alpha (TNF-alpha) and interleukin-6 (IL-6), and cytotoxicity were measured. The coexposure to Sta. chartarum and Str. californicus caused a synergistic increase in the production of IL-6 but not other cytokines. In further experiments, the metabolites from Sta. chartarum or from closely related fungi (atranones B and E, satratoxin G, trichodermin, 7-alpha-hydroxytrichodermol, staplabin, and SMTP-7) and the known fungal toxins sterigmatocystin, citrinin, and ochratoxin A were each tested with Str. californicus. The testing revealed a synergistic response in TNF-alpha and IL-6 production after coexposure to Str. californicus with both trichodermin and 7-alpha-hydroxytrichodermol. Finally, the synergistic inflammatory response caused by Str. californicus and trichodermin together was studied by analyzing for the presence of nuclear factor-kappa-B (NF-kappa-B) in nuclear extracts of the exposed cells. The exposure to Str. californicus induced the binding of NF-kappa-B proteins to the NF-kappa-B consensus sequence as well as to the natural NF-kappa-B site of the IL-6 promoter. Adding trichodermin to the exposure did not increase the DNA binding.
Insights
Indoor moldy houses expose occupants to diverse microbes. This study found that Streptomyces californicus combined with certain fungal toxins synergistically increased inflammatory responses in immune cells, highlighting complex microbial interactions.
Area of Science:
- Environmental microbiology
- Immunology
- Toxicology
Background:
- Microbial exposure in moldy homes involves complex mixtures of bacteria, fungi, and their metabolites.
- Individual microbial components can exhibit cytotoxicity and inflammatory potential, but their interactions are poorly understood.
Purpose of the Study:
- To investigate the inflammatory responses of mouse RAW264.7 macrophages to indoor air microbes alone and in combination with Streptomyces californicus.
- To identify synergistic interactions between specific microbial metabolites and S. californicus.
Main Methods:
- Macrophages were exposed to six indoor air microbes and Streptomyces californicus, individually and in combination.
- Measurements included nitric oxide production, pro-inflammatory cytokines (TNF-alpha, IL-6), and cytotoxicity.
- Synergistic effects of microbial metabolites and toxins with S. californicus were assessed, along with NF-kappa-B activation.
Main Results:
- Coexposure to Stachybotrys chartarum and S. californicus synergistically increased IL-6 production.
- S. californicus combined with trichodermin or 7-alpha-hydroxytrichodermol synergistically elevated TNF-alpha and IL-6.
- S. californicus alone induced NF-kappa-B binding to the IL-6 promoter, an effect not enhanced by trichodermin.
Conclusions:
- Interactions between indoor air microbes and their metabolites can lead to synergistic inflammatory responses.
- Specific fungal toxins, like trichodermin, can potentiate the inflammatory effects of actinomycetes such as S. californicus.
- Understanding these complex microbial interactions is crucial for assessing health risks associated with moldy indoor environments.
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