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Histological, immunohistochemical and morphometric changes in lung tissue in juvenile mice experimentally exposed to Stachybotrys chartarum spores

T.G2002MycopathologiaJournal Article
10.1023/a:1022920205355PubMed
CardiovascularEndocrine (ADH/ACTH/MSH)GastrointestinalHypothalamic-PituitaryImmune/InnateMusculoskeletalNeurologicalOcularRespiratory/Sinus
Bacterial EndotoxinsIndoor Mold (Stachybotrys, Aspergillus, etc.)MycotoxinsVolatile Organic Compounds (VOCs)Water-Damaged Buildings (WDB)

Abstract

Stachybotrys chartarum is an important toxigenic fungus often associated with chronically wet cellulose-based building materials. The purpose of this study was to evaluate some histological, immunohistochemical and morphometric changes in mouse lung tissues exposed intratracheally to either 50 microl of 1.4 x 10(6) S. chartarum spores (< or = 35 ng toxin/kg BW), isosatratoxin-F (35 ng/kg BW), 50 microl of 1.4 x 10(6) Cladosporium cladosporioides spores, or 50 microl saline. Exposure of lung tissues to S. chartarum or C. cladosporioides spores resulted in granuloma formation at the sites of spore impaction. Some of the lung tissues impacted by S. chartarum spores also showed erythrocyte accumulation in the alveolar air space, dilated capillaries engorged with erythrocytes, and hemosiderin accumulation at spore impaction sites, which were features not noted in the C. cladosporioides-spore treated animals. Immunohistochemistry revealed reduced collagen IV distribution in lung granulomas in S. chartarum-treated animals especially at 48 and 72 hr post-exposure compared to that in lungs of mice with C. cladosporioides-spore induced granulomas. Quantitative analysis of pooled S. chartarum and C. cladosporioides spore impacted lungs revealed significant depression (P < 0.05) of alveolar air space from 71.4 +/- 6.1% in untreated animals to 56.04 +/- 6.1% in the S. chartarum- and 60.24 +/- 5.5% in the C. cladosporioides-spore treated animals. It also revealed that alveolus air space in S. chartarum treated animals declined significantly from 63.74 +/- 3.1% at 12 hr post-exposure to 42.94 +/- 7.9% at 72 hr post-exposure and was increased to 54.84 +/- 5.2% at 96 hr post-exposure. Alveolus air space in C. cladosporioides treated animals also decreased significantly from 64.84 +/- 7.1% at 12 hr exposure to 54.94 +/- 5.4% at 48 hr post-exposure and was increased to 64.64 +/- 10.1% at 96 hr post-exposure. It also revealed significant (P < 0.05) alveolar accumulation of erythrocytes from 1.24 +/- 1.4% in the untreated animals to 3.44 +/- 1.5% in the pooled S. chartarum spore treated animals. Erythrocyte abundance in S. chartarum treated animals increased significantly (P < 0.001) from 2.14 +/- 1.7% at 12 hr post-exposure to 5.54 +/- 1.5% at 72 hr and 4.94 +/- 1.4% at 96 hr post-exposure. These results further reveal that exposure to S. chartarum spores elicit tissue responses in vivo significantly different from those associated with exposure to pure trichothecene toxin and to spores of a non-toxigenic fungus.

Key Biomarkers

Alpha Melanocyte Stimulating Hormone (MSH)Immunoglobulin E (IgE)LeptinMatrix Metalloproteinase 9 (MMP9)Vascular Endothelial Growth Factor (VEGF)Visual Contrast Sensitivity (VCS)

Symptom Clusters

Gastrointestinal: excessive thirst, frequent urinationGeneral: fatigue, headache, night sweats, mood swings, appetite swings, tingling in extremitiesMusculoskeletal: muscle aches, joint pain, ice pick painNeurological: memory loss, difficulty with concentration, confusion, word finding difficulty, light sensitivityRespiratory: cough, shortness of breath, sinus congestion

Cited By (10)

  • The biocontaminants and complexity of damp indoor spaces: more than what meets the eyesToxicology and Industrial Health · 2009
  • Sick building syndrome (SBS) and exposure to water-damaged buildings: Time series study, clinical trial and mechanismsNeurotoxicology and Teratology · 2006
  • Localization of Satratoxin-G in Stachybotrys chartarum Spores and Spore-Impacted Mouse Lung Using ImmunocytochemistryToxicologic Pathology · 2004
  • Detection of trichothecene mycotoxins in sera from individuals exposed to Stachybotrys chartarum in indoor environmentsArchives of Environmental Health An International Journal · 2004
  • Stachybotrys chartarum, Trichothecene Mycotoxins, and Damp Building–Related Illness: New Insights into a Public Health EnigmaToxicological Sciences · 2008
  • The role of fungal proteinases in pathophysiology of Stachybotrys chartarumMycopathologia · 2007
  • Detection of AirborneStachybotrys chartarumMacrocyclic Trichothecene Mycotoxins in the Indoor Environment

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  • References (10)

    • Reduction of Pulmonary Toxicity of Stachybotrys chartarum Spores by Methanol Extraction of MycotoxinsApplied and Environmental Microbiology · 2000
    • Building-Associated Pulmonary Disease From Exposure toStachybotrys chartarum and Aspergillus versicolorJournal of Occupational and Environmental Medicine · 1998
    • Effects of Intranasal Exposure to Spores of Stachybotrys atra in MiceToxicological Sciences · 1997
    • Clinical experience and results of a sentinel health investigation related to indoor fungal exposureEnvironmental Health Perspectives · 1999
    • Overview of investigations into pulmonary hemorrhage among infants in Cleveland, OhioEnvironmental Health Perspectives · 1999
    • Infant animal model of pulmonary mycotoxicosis induced by Stachybotrys chartarumMycopathologia · 2002
    • The time course of responses to intratracheally instilled toxic Stachybotrys chartarum spores in ratsMycopathologia · 2000
    • Airborne outbreak of trichothecene toxicosisAtmospheric Environment (1967) · 1986
    • Acute inhalation toxicity of T-2 mycotoxin in mice*1Fundamental and Applied Toxicology · 1987
    • Analysis of pulmonary surfactant by fourier-transform infrared spectroscopy following exposure to Stachybotrys chartarum (atra) sporesChemistry and Physics of Lipids · 2001
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