← Explorer/Network

Potentially pathogenic, slow-growing mycobacteria released into workplace air during the remediation of buildings

Rautiala S, Torvinen E, Torkko P +4 more2004Journal of Occupational and Environmental HygieneJournal Article
10.1080/15459620490250008PubMed
Immune/InnateRespiratory/Sinus
ActinomycetesIndoor Mold (Stachybotrys, Aspergillus, etc.)MycobacteriaWater-Damaged Buildings (WDB)

Abstract

Construction workers' exposure to airborne viable mycobacteria was studied during the remediation of three moldy and two nonmoldy buildings. Furthermore, the concentrations of airborne fungal and actinobacterial spores were determined. The samples for the microbial analyses were collected using a six-stage impactor and an all-glass impinger sampler, and by filter sampling. Specific mycobacteria media and nonselective media were used for the cultures. The samples were cultured for the total numbers of rapidly growing and slow-growing mycobacteria, and the isolates obtained were identified to the genus or species level. Mycobacteria were recovered from the air during the remediation of two of the moldy buildings and one nondamaged building. Concentrations of mycobacteria up to 160 cfu/m3 were detected. A total of 43 mycobacterial isolates was recovered. Most of the isolates were slow-growers, only two rapid-growing strains being detected. The 38 identified isolates belonged to potentially pathogenic species, including Mycobacterium avium complex, M. scrofulaceum, and M. fortuitum, and to saprophytic species, including M. nonchromogenicum and M. terrae. Mycobacteria were the most often detected in samples taken with a six-stage impactor. They were found in buildings with both high and low concentrations of fungi. In conclusion, mycobacteria, both potentially pathogenic and saprophytic species, may be released into the indoor air during the remediation of buildings.

Cited By (3)

  • The biocontaminants and complexity of damp indoor spaces: more than what meets the eyesToxicology and Industrial Health · 2009
  • Mold Exposure and Mold-Associated Diseases- Does the Public Healthcare System Protect Us? A CommentJournal of Public Health Issues and Practices · 2025
  • Indoor Air Quality in Nonindustrial Occupational EnvironmentsPatty's Industrial Hygiene · 2021

References (3)

  • Bacteria, molds, and toxins in water-damaged building materialsApplied and Environmental Microbiology · 1997
  • Inflammatory responses in Raw264.7 macrophages caused by mycobacteria isolated from moldy housesEnvironmental Toxicology and Pharmacology · 2000
  • Comparison of mycobacteria-induced cytotoxicity and inflammatory responses in human and mouse cell linesInhalation Toxicology · 2001

Related Papers

  • Comparison of mycobacteria-induced cytotoxicity and inflammatory responses in human and mouse cell linesInhalation Toxicology · 2001 · 6 shared tags
  • The biocontaminants and complexity of damp indoor spaces: more than what meets the eyesToxicology and Industrial Health · 2009 · 6 shared tags
  • Bacteria in a water-damaged building: associations of actinomycetes and non-tuberculous mycobacteria with respiratory health in occupantsIndoor Air · 2017 · 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 linesEnvironmental Health Perspectives · 2002 · 5 shared tags
  • The relation between growth of four microbes on six different plasterboards and biological activity of sporesIndoor Air · 2003 ·
5 shared tags