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Interactions between and can induce apoptosis and cell cycle arrest in mouse RAW264.7 macrophages

Penttinen P, Pelkonen J, Huttunen K +2 more2005Toxicology and Applied PharmacologyJournal Article
10.1016/j.taap.2004.07.002PubMed
Immune/Innate
ActinomycetesIndoor Mold (Stachybotrys, Aspergillus, etc.)Water-Damaged Buildings (WDB)

Abstract

Exposure to complex mixtures of bacteria and fungi in moisture-damaged buildings is a potential cause of inflammatory related symptoms among occupants. The present study assessed interactions between two characteristic moldy house microbes Streptomyces californicus and Stachybotrys chartarum. Differences in cytotoxic and inflammatory responses in mouse (RAW264.7) macrophages were studied after exposure to the spores of co-cultivated microbes, the mixture of separately cultivated spores, and the spores of either of these microbes cultivated alone. The RAW264.7 cells were exposed to six doses (1 x 10(4) to 3 x 10(6) spores/ml) for 24 h, and the time course of the induced responses was evaluated after 4, 8, 16, and 24 h of exposure (1 x 10(6) spores/ml). The cytotoxic potential of the spores was characterized by the MTT test, DNA content analysis, and enzyme assay for caspase-3 activity. The production of cytokines (IL-1beta, IL-6, IL-10, TNFalpha, and MIP2) was measured immunochemically and nitric oxide by the Griess method. Co-cultivation increased the ability of the spores to cause apoptosis by more than 4-fold and the proportion of RAW264.7 cells at the G2/M stage increased nearly 2-fold when compared to the response induced by the mixture of spores. In contrast, co-cultivation decreased significantly the ability of the spores to trigger the production of NO and IL-6 in RAW264.7 cells. In conclusion, these data suggest that co-culture of S. californicus and S. chartarum can result in microbial interactions that significantly potentiate the ability of the spores to cause apoptosis and cell cycle arrest in mammalian cells.

Key Biomarkers

Caspase-3 activityIL-10IL-1βIL-6MIP2Nitric oxideTNFα

Symptom Clusters

ApoptosisCell cycle arrestCytotoxic responsesInflammatory responses

Cited By (4)

  • Co-occurrence of toxic bacterial and fungal secondary metabolites in moisture-damaged indoor environmentsIndoor Air · 2011
  • The biocontaminants and complexity of damp indoor spaces: more than what meets the eyesToxicology and Industrial Health · 2009
  • Co-cultivation of Streptomyces californicus and Stachybotrys chartarum stimulates the production of cytostatic compound(s) with immunotoxic propertiesToxicology and Applied Pharmacology · 2006
  • Effects of microbial cocultivation on inflammatory and cytotoxic potential of sporesInhalation Toxicology · 2005

References (5)

  • The relation between growth of four microbes on six different plasterboards and biological activity of sporesIndoor Air · 2003
  • Synergistic interaction in simultaneous exposure to Streptomyces californicus and Stachybotrys chartarumEnvironmental Health Perspectives · 2004

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