EFFECT OF LINER AND CORE MATERIALS OF PLASTERBOARD ON MICROBIAL GROWTH, SPORE-INDUCED INFLAMMATORY RESPONSES, AND CYTOTOXICITY IN MACROPHAGES
Abstract
Microorganisms, when grown on wetted plasterboards, can produce bioactive compounds capable of inducing inflammatory and toxic reactions in mammalian cells. The paper liner of plasterboard is commonly regarded as the major substrate for microbial growth. In this study, we cultured Stachybotrys chartarum, Aspergillus versicolor, Penicillium spinulosum, and Streptomyces californicus on liners and cores of plasterboards in order to examine the role of these main plasterboard components on microbial growth and the resulting bioactivity, which was assessed as the ability of microbial spores to induce inflammatory responses and to evoke cytotoxicity in mouse macrophages. The microbes, isolated from mold problem buildings, were grown under saturated humidity conditions on wetted liners and cores of six different plasterboards. The spores were collected, applied to RAW264.7 macrophages at different doses, and evaluated 24 h after exposure for their ability to evoke cytotoxicity and to stimulate production of nitric oxide (NO), tumor necrosis factor alpha (TNFalpha), and interleukin-6 (IL-6). In general, microbial growth was better on the cores than on the liners. All of the studied microbes collected from cores induced a dose-dependent production of TNFalpha in macrophages. The TNFalpha production stimulated by spores of Stachybotrys, Aspergillus, and Streptomyces paralleled their cytotoxicity. Spores of Streptomyces and Aspergillus collected from liners were among the most potent inducers of NO and IL-6. Good growth of Stachybotrys on cores was associated with high cytotoxicity. Penicillium grew only on cores, but it did not induce major inflammatory mediator productions, nor was it significantly cytotoxic. These results indicate that previously reported microbial growth on plasterboards and spore-induced production of important inflammatory mediators and cell death in macrophages is not only due to the paper liner of plasterboard, but the core material also has a crucial role.
Key Biomarkers
Symptom Clusters
Cited By (4)
- Effect of Plasterboard Composition on Stachybotrys chartarum Growth and Biological Activity of SporesApplied and Environmental Microbiology · 2003
- Damp Buildings: Associated Fungi and How to Find ThemJournal of Fungi · 2024
- Inflammatory and cytotoxic responses in mouse lungs exposed to purified toxins from building isolated Penicillium brevicompactum Dierckx and P. chrysogenum ThomToxicological Sciences · 2005
- Starch in plasterboard sustainsStreptomyces californicusgrowth and bioactivity of sporesJournal of Applied Microbiology · 2003
Related Papers
- Newer Molecular Methods Bring New Insights into Human- And Building-Health Risk Assessments from Water-Damaged Buildings: Defining Exposure and Reactivity, the Two Sides of Causation of CIRS-WDB IllnessMedical Research Archives · 2021 · 4 shared tags
- TUBB1, TUBA4A and MAPK as Indicators of Die-Back Degenerative Central Nervous System Disease in Patients Sickened by Specific Exposure to the Interior Environment of Water- Damaged BuildingsMedical Research Archives · 2023 · 4 shared tags
- A Novel Therapeutic Approach to Parkinson's Disease: Using Transcriptomics to Identify Unique Patterns of Gene Expression including 'Triple Positives,' Toll receptors, and Endotoxin ExposureMedical Research Archives · 2025 · 4 shared tags
- The Evolution of Chronic Inflammatory Response Syndrome (CIRS) and the Biotoxin Pathway2023 · 4 shared tags
- Co-cultivation of Streptomyces californicus and Stachybotrys chartarum stimulates the production of cytostatic compound(s) with immunotoxic propertiesToxicology and Applied Pharmacology · 2006 · 4 shared tags