Four-day repeated inhalation and recovery study of methyl isocyanate in F344 rats and B6C3F1 mice. 1987

K Mitsumori, and G A Boorman, and B N Gupta, and J R Bucher
Chemical Pathology Branch, National Institute of Environmental Health Sciences, Research Triangle Park, North Carolina 27709.

F344 rats and B6C3F1 mice of both sexes were exposed by inhalation to 0, 1, and 3 ppm methyl isocyanate (MIC) for 4 consecutive days (6 hr/day) followed by a recovery period of 91 days. Five mice and rats/sex/group except the 3 ppm group (5 rats/sex on Day 7 and 2 males on Day 28) were killed on Days 7, 28, 49, and 91 after the exposure and examined histopathologically. Forty-nine of 56 male rats, 51 of 56 female rats, and 1 of 56 male mice in the 3 ppm group died by 28 days; early death animals were also examined histologically. Exposure-related changes occurred in rats and mice of both sexes in the 3 ppm group only. Lesions of the nasal cavity in rats and mice were characterized by regeneration of the olfactory and respiratory epithelia secondary to epithelial erosion. By Day 28 the olfactory and respiratory epithelia in mice appeared normal, while in rats incomplete regeneration of the olfactory epithelium was still present. Regeneration of the respiratory epithelium in the trachea of rats occurred in the 3 ppm group and the epithelium appeared to return to normal by Day 28. Lung lesions in rats consisted of mural and/or intraluminal fibrosis secondary to extensive erosion of the respiratory epithelium in the major bronchi to the terminal bronchioles. Acute inflammation of the small airways, occasional hyaline membranes of alveolar walls, and pulmonary atelectasis were also seen. Alveolar fibrosis was observed in rats found dead from Day 14 on and in male rats killed on Day 28. Atrophy of the thymus and spleen, atrial thrombosis of the heart, and hepatocellular necrosis were frequently seen in rats dying following MIC exposure. The lung lesions in mice were qualitatively similar to those in rats, but were restricted to the major bronchi. Minimal intraluminal or mural fibrosis was still present in mice on Day 91. In a separate study, a single 6-hr exposure of five male rats to 3 ppm MIC was followed by a recovery period of 7 days. The lesions of the respiratory system were essentially the same as those in the 3 ppm group killed on Day 7 after the 4-day repeated exposure of MIC, but the alveolar lesions were more severe.

UI MeSH Term Description Entries
D008168 Lung Either of the pair of organs occupying the cavity of the thorax that effect the aeration of the blood. Lungs
D008297 Male Males
D009296 Nasal Cavity The proximal portion of the respiratory passages on either side of the NASAL SEPTUM. Nasal cavities, extending from the nares to the NASOPHARYNX, are lined with ciliated NASAL MUCOSA. Nasal Cavities,Cavities, Nasal,Cavity, Nasal
D011916 Rats, Inbred F344 An inbred strain of rat that is used for general BIOMEDICAL RESEARCH purposes. Fischer Rats,Rats, Inbred CDF,Rats, Inbred Fischer 344,Rats, F344,Rats, Inbred Fisher 344,CDF Rat, Inbred,CDF Rats, Inbred,F344 Rat,F344 Rat, Inbred,F344 Rats,F344 Rats, Inbred,Inbred CDF Rat,Inbred CDF Rats,Inbred F344 Rat,Inbred F344 Rats,Rat, F344,Rat, Inbred CDF,Rat, Inbred F344,Rats, Fischer
D012137 Respiratory System The tubular and cavernous organs and structures, by means of which pulmonary ventilation and gas exchange between ambient air and the blood are brought about. Respiratory Tract,Respiratory Systems,Respiratory Tracts,System, Respiratory,Tract, Respiratory
D001835 Body Weight The mass or quantity of heaviness of an individual. It is expressed by units of pounds or kilograms. Body Weights,Weight, Body,Weights, Body
D003485 Cyanates Organic salts of cyanic acid containing the -OCN radical. Cyanate
D005260 Female Females
D000280 Administration, Inhalation The administration of drugs by the respiratory route. It includes insufflation into the respiratory tract. Drug Administration, Inhalation,Drug Administration, Respiratory,Drug Aerosol Therapy,Inhalation Drug Administration,Inhalation of Drugs,Respiratory Drug Administration,Aerosol Drug Therapy,Aerosol Therapy, Drug,Drug Therapy, Aerosol,Inhalation Administration,Administration, Inhalation Drug,Administration, Respiratory Drug,Therapy, Aerosol Drug,Therapy, Drug Aerosol
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia

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