← Explorer/Network

Bacterial strains from moldy buildings are highly potent inducers of inflammatory and cytotoxic effects

Hirvonen MR, Huttunen K, Roponen M2005Indoor AirJournal Article
10.1111/j.1600-0668.2005.00345.xPubMed
Immune/Innate
ActinomycetesBacterial EndotoxinsIndoor Mold (Stachybotrys, Aspergillus, etc.)Water-Damaged Buildings (WDB)

Abstract

UNLABELLED: We aimed to identify inflammatory and cytotoxic potential of individual indoor air bacterial and fungal strains, as well as extracts of indoor air filter samples containing bacteria and fungi. Mouse RAW264.7 macrophages were exposed in vitro to four bacterial strains; Streptomyces californicus, Mycobacterium terrae, Bacillus cereus and Pseudomonas fluorescens, and three fungal strains; Penicillium spinulosum, Aspergillus versicolor and Stachybotrys chartarum. Furthermore, RAW264.7 macrophages were exposed to indoor air filter sample extracts representing 'low' (n = 21) and 'high' (n = 20) exposure to viable fungi or bacteria. Production of nitric oxide (NO), tumor necrosis factor-alpha (TNF-alpha) and interleukin-6 (IL-6) as well as cell viability were measured after 24 h exposure. The results show that the bacterial strains induce more profound production of NO, TNF-alpha and IL-6 than the studied fungal strains. They also decrease the viability of mouse macrophages. Similarly, the indoor air filter samples with high concentration of bacteria induced a statistically significant increase in TNF-alpha and IL-6 production as well as a decrease in cell viability. Altogether, these results suggest that indoor air bacterial strains are potent inducers of inflammatory responses and thus possibly related to adverse health effects of the inhabitants. PRACTICAL IMPLICATIONS: There is abundant documentation of the association between building dampness and mold and adverse health effects on occupants, but the causal agents of the effects are still unclear. In order to reveal these causal links, experimental studies with in vitro and in vivo methods are needed. The present findings shed new light on studies of the microbial constituents of indoor air in moldy buildings responsible for adverse health effects. These results imply that bacteria should also be monitored in cases of suspected microbial contamination of indoor air.

Key Biomarkers

Cell viabilityInterleukin-6 (IL-6)Nitric oxide (NO)Tumor necrosis factor-alpha (TNF-α)

Cited By (11)

  • The biocontaminants and complexity of damp indoor spaces: more than what meets the eyesToxicology and Industrial Health · 2009
  • Medizinisch klinische Diagnostik bei Schimmelpilzexposition in Innenräumen – Update 2023 (AWMF-Register-Nr. 161/001)Pneumologie · 2024
  • 30+ years of knowledge creation: Indoor Air 1991–2021Indoor Air · 2022
  • What effect do mycotoxins, cell wall components, enzymes and other mold components and metabolites have on our health?Allergo Journal International · 2024
  • Indoor PM 2.5 from occupied residences in Sweden caused higher inflammation in mice compared to outdoor PM 2.5Indoor Air · 2022
  • AWMF mold guideline “Medical clinical diagnostics for indoor mold exposure” – Update 2023 AWMF Register No. 161/001Allergologie select · 2024
  • The Toxicity of Wiped Dust and Airborne Microbes in Individual Classrooms Increase the Risk of Teachers’ Work-Related Symptoms: A Cross-Sectional Study

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 · 5 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 · 5 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 · 5 shared tags
  • The Evolution of Chronic Inflammatory Response Syndrome (CIRS) and the Biotoxin Pathway2023 · 5 shared tags
  • Synergistic interaction in simultaneous exposure to Streptomyces californicus and Stachybotrys chartarumEnvironmental Health Perspectives · 2004 · 5 shared tags
  • Production of proinflammatory mediators by indoor air bacteria and fungal spores in mouse and human cell lines
Pathogens · 2021
  • mycotoxins and associations with asthmatic symptoms among pupils in schools from Johor BahruPediatric Allergy and Immunology · 2011
  • How do mycotoxins, cell wall components, enzymes, other mold components and mold metabolites affect health?Allergo Journal · 2024
  • Rhinitis, Ocular, Throat and Dermal Symptoms, Headache and Tiredness among Students in Schools from Johor Bahru, Malaysia: Associations with Fungal DNA and Mycotoxins in Classroom DustPLoS ONE · 2016
  • Medical diagnostics for indoor mold exposureInternational Journal of Hygiene and Environmental Health · 2017
  • References (6)

    • Mycobacterium terrae isolated from indoor air of a moisture-damaged building induces sustained biphasic inflammatory response in mouse lungsEnvironmental Health Perspectives · 2002
    • Inflammatory responses in Raw264.7 macrophages caused by mycobacteria isolated from moldy housesEnvironmental Toxicology and Pharmacology · 2000
    • Synergistic interaction in simultaneous exposure to Streptomyces californicus and Stachybotrys chartarumEnvironmental Health Perspectives · 2004
    • Adverse health effects among adults exposed to home dampness and moldsAmerican Review of Respiratory Disease · 1991
    • Inflammatory Responses in Mice after Intratracheal Instillation of Spores of Streptomyces californicus Isolated from Indoor Air of a Moldy BuildingToxicology and Applied Pharmacology · 2001
    • Induction of Cytotoxicity and Production of Inflammatory Mediators in RAW264.7 Macrophages by Spores Grown on Six Different PlasterboardsInhalation Toxicology · 2001
    Environmental Health Perspectives · 2002 · 5 shared tags