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Comparison of mycobacteria-induced cytotoxicity and inflammatory responses in human and mouse cell lines

Kati Huttunen2001Inhalation ToxicologyJournal Article
10.1080/089583701753210362PubMed
Immune/InnateRespiratory/Sinus
ActinomycetesIndoor Mold (Stachybotrys, Aspergillus, etc.)MycobacteriaWater-Damaged Buildings (WDB)

Abstract

Environmental mycobacteria, which are ubiquitous in nature, are also detected in moisture-damaged buildings. Their potential role inducing the adverse health effects associated with living in moisture damaged buildings requires clarification. To establish a model for these studies, we evaluated inflammatory responsiveness in different cell lines exposed to environmental mycobacterial species. Four mycobacterial isolates belonging to Mycobacterium avium complex and Mycobacterium terrae, recovered from the indoor air sampled when a moldy building was being demolished, were studied for their cytotoxicity and ability to stimulate the production of inflammatory mediators in mouse RAW264.7 and human 28SC macrophage cell lines, and human A549 lung epithelial cell line. Lipopolysaccharide (LPS) was used as a positive control. Production of cytokines (tumor necrosis factor alpha, TNF-alpha; interleukin 6, IL-6; and interleukin beta, IL-1beta) was analyzed immunochemically, nitric oxide (NO) by the Griess method, expression of inducible NO synthase with Western blot analysis, and cytotoxicity with the MTT test. Both human and mouse cells produced NO and IL-6 after mycobacterial exposure. Mouse macrophages also showed production of TNF-alpha induced by both mycobacteria and LPS, whereas the human cell lines failed to produce TNF-alpha after mycobacterial exposure and the human epithelial cell line also failed to respond to LPS. Similarly, only mouse macrophages produced IL-1beta. Mycobacterial exposure was not cytotoxic to human cells and was only slightly cytotoxic to mouse macrophages. The results indicate that environmental mycobacterial isolates from moldy buildings are capable of activating inflammatory mechanisms in both human and murine cells. The human and mouse cell lines, however, differ significantly in the grade and type of the responses.

Key Biomarkers

IL-1βIL-6Inducible NO synthaseNitric oxide (NO)TNF-α

Cited By (6)

  • Mycobacterium terrae isolated from indoor air of a moisture-damaged building induces sustained biphasic inflammatory response in mouse lungsEnvironmental Health Perspectives · 2002
  • Exposure assessment of residential mould, fungi and microbial components in relation to children’s health: Achievements and challengesInternational Journal of Hygiene and Environmental Health · 2013
  • Synergistic interaction in simultaneous exposure to Streptomyces californicus and Stachybotrys chartarumEnvironmental Health Perspectives · 2004
  • Potentially pathogenic, slow-growing mycobacteria released into workplace air during the remediation of buildingsJournal of Occupational and Environmental Hygiene · 2004
  • Effects of microbial cocultivation on inflammatory and cytotoxic potential of sporesInhalation Toxicology · 2005
  • Bacteria in a water-damaged building: associations of actinomycetes and non-tuberculous mycobacteria with respiratory health in occupantsIndoor Air · 2017

References (3)

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