Inflammatory and cytotoxic responses in mouse lungs exposed to purified toxins from building isolated Penicillium brevicompactum Dierckx and P. chrysogenum Thom
Abstract
In vitro and in vivo studies have shown that building-associated Penicillium spores and spore extracts can induce significant inflammatory responses in lung cells and animal models of lung disease. However, because spores and spore extracts comprise mixtures of bioactive constituents often including toxins, it is impossible to resolve which constituent mediates inflammatory responses. This study examined dose-response (0.5 nM, 2.5 nM, 5.0 nM, 12.5 nM/g body weight (BW) animal) and time-course (3, 6, 24 and 48 h post instillation (PI)) relationships associated with inflammatory and cytotoxic responses in mouse lungs intratracheally instilled with pure brevianamide A, mycophenolic acid, and roquefortine C. High doses (5.0 nM and/or 12.5 nM/g BW animal) of brevianamide A and mycophenolic acid, the dominant metabolites of P. brevicompactum, and roquefortine C, the dominant metabolite of P. chrysogenum, induced significant inflammatory responses within 6 h PI, expressed as differentially elevated macrophage, neutrophil, MIP-2, TNF, and IL-6 concentrations in the bronchioalveolar lavage fluid (BALF) of intratracheally exposed mice. Macrophage and neutrophil numbers were maximal at 24 h PI; responses of the other inflammatory markers were maximal at 6 h PI. Except for macrophage numbers in mycophenolic acid-treatment animals, cells exhibited significant dose-dependent-like responses; for the chemo-/cytokine markers, dose dependency was lacking except for MIP-2 concentration in brevianamide A-treatment animals. It was also found that brevianamide A induced cytotoxicity expressed as significantly increased LDH concentration in mouse BALF, at concentrations of 12.5 nM/g BW animal and at 6 and 24 h PI. Albumin concentrations, measured as a nonspecific marker of vascular leakage, were significantly elevated in the BALF of mice treated with 12.5 nM/g nM brevianamide A/animal from 6 to 24 h PI and in > or =5.0 nM/g mycophenolic acid-treated animals at 6 to 24 h PI. These results suggest that these three toxins from Penicillium species common on damp materials in residential housing provoke compound-specific toxic responses with different toxicokinetics. Moreover, that these toxins can stimulate significant inflammatory responses in vivo might help explain some of the indoor effects associated with Penicillium spore exposures in indoor environments.
Key Biomarkers
Symptom Clusters
Cited By (6)
- The biocontaminants and complexity of damp indoor spaces: more than what meets the eyesToxicology and Industrial Health · 2009
- Comparison of Inflammatory Responses in Mouse Lungs Exposed to Atranones A And C fromStachybotrys ChartarumJournal of Toxicology and Environmental Health · 2006
- Effects of low molecular weight fungal compounds on inflammatory gene transcription and expression in mouse alveolar macrophagesChemico-Biological Interactions · 2011
- Inflammation-associated gene transcription and expression in mouse lungs induced by low molecular weight compounds from fungi from the built environmentChemico-Biological Interactions · 2010
- Dectin-1 and inflammation-associated gene transcription and expression in mouse lungs by a toxic (1,3)-β-d glucanArchives of Toxicology · 2009
- Associations between Fungal Species and Water-Damaged Building MaterialsApplied and Environmental Microbiology · 2011
References (11)
Related Papers
- Timing of gene expression alters susceptibility to aflatoxicosis: a heterogeneous spectrum of disease in response to a single universal agentEgyptian Journal of Medical Human Genetics · 2025 · 4 shared tags
- Effects of Mycotoxins on Neuropsychiatric Symptoms and Immune ProcessesClinical Therapeutics · 2018 · 4 shared tags
- Pathophysiological aspects of exposure to dampness-associated indoor mould and mycotoxins: A mini-overviewJournal of Hazardous Materials Advances · 2023 · 4 shared tags
- The Myth of Mycotoxins and Mold InjuryClinical Reviews in Allergy & Immunology · 2019 · 4 shared tags
- Biological contaminants in the indoor air environment and their impacts on human healthAir Quality Atmosphere & Health · 2021 · 4 shared tags
- Environmental Mold and Mycotoxin Exposures Elicit Specific Cytokine and Chemokine ResponsesPLoS ONE · 2015 · 4 shared tags