Affiliation:
1. Chemical Industry Institute of Toxicology, Research Triangle Park, North Carolina 27709,
2. Chemical Industry Institute of Toxicology, Research Triangle Park, North Carolina 27709
Abstract
Dysosmia and anosmia are reported to occur following human exposure to hydrogen sulfide (H2S) gas. The clinical association between H2S exposure and olfactory dysfunction in humans necessitates evaluation of the nasal cavity and olfactory system in experimental animals used to study H2S toxicity. The purpose of this study was to subchronically expose 10-week-old male CD rats to relatively low concentrations of H2S and to histologically evaluate the nasal cavity for exposure-related lesions. Rats (n = 12/ group) were exposed via inhalation to 0, 10, 30, or 80 ppm H2S 6 h/d and 7 d/wk for 10 weeks. Following exposure to 30 and 80 ppm H2S, a significant increase in nasal lesions limited to the olfactory mucosa was observed. The lesions, which consisted of olfactory neuron loss and basal cell hyperplasia, were multifocal, bilaterally symmetrical, and had a characteristic rostrocaudal distribution pattern. Regions of the nasal cavity affected included the dorsal medial meatus and the dorsal and medial portions of the ethmoid recess. The no observed adverse effect level for olfactory lesions in this study was 10 ppm. For perspective, the American Conference of Governmental Industrial Hygienists threshold limit value (TLV) recommendation for H 2S is currently 10 ppm (proposed revision: 5 ppm), so the concentrations employed in the present study were 3 and 8 times the TLV. These findings suggest that subchronic inhalation exposure to a relatively low level of H2 S (30 ppm) can result in olfactory toxicity in rats. However, because of differences in the breathing style and nasal anatomy of rats and humans, additional research is required to determine the significance of these results for human health risk assessment.
Subject
Cell Biology,Toxicology,Molecular Biology,Pathology and Forensic Medicine
Reference18 articles.
1. A Critical Review of the Literature on Hydrogen Sulfide Toxicity
2. Boorman GA, Morgan KT, Uriah LC (1990). Nose, larynx, and trachea. In: Pathology of the Fischer Rat, Boorman GA, Eustis SL, Elwell MR, Montgomery CA Jr, MacKenzie WF (eds). Academic Press, San Diego, California, p 321.
3. Fertility and developmental neurotoxicity effects of inhaled hydrogen sulfide in Sprague–Dawley rats
4. A metabolic map of cytochrome oxidase in the rat brain: Histochemical, densitometric and biochemical studies
5. Computer Simulation of Inspiratory Airflow in All Regions of the F344 Rat Nasal Passages
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