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Korean Journal of Otorhinolaryngology-Head and Neck Surgery > Volume 16(2); 1973 > Article
Korean Journal of Otorhinolaryngology-Head and Neck Surgery 1973;16(2): 1-14.
An Experimental Study on the Effects of Inhalation of Nitrogen Dioxide in the Respiratory Tract of the Rats
Byoung Doo Jun, MD, Man Kee Paik, MD, and Hong Ki Kim, MD
Department of Otolaryngology, College of Medicine, Seoul National University, Korea
二酸化窒素가스 吸入이 白鼠의 氣道에 미치는 病理學的 變化에 關한 實驗的 硏究
全炳斗 · 白萬基 · 金弘基
서울大學校 醫科大學 耳鼻咽喉科學敎室
ABSTRACT

Nitrogen dioxide is one of the most prevalent noxious gas in our artificial environments. Toxicologically, nitrogen dioxide is classified as an irritant gas and its effects by inhalation have been ascertained by many case reports on the intoxication incidence in the industrial exposure. A strong irritating effect on the epithelium of airway tract and the formation of methemoglobin have been known as the main toxic action. Clinically, pulmonary edema and cogestion are believed to be main causes of death. Author designed this study to elucidate the pathological findings at the different sites and levels of the repiratory tracts of the rats exposed to the nitrogen dioxide of 1,000 ppm, 500 ppm and 100 ppm in concentrations. The findings observed are as follows : 1) Average tolerance of rat to 1,000 ppm nitrogen dioxide was 5.3 hrs. and in case of 500 ppm, it was 6.8 hrs. 2) In the 1,000 ppm group, loss of cilia, squamous cell metaplasia, basal cell hyperplasia, goblet cell hyperplasia, edema and congestion, inflammatory infiltration, epithelial ulceration and mucous gland hypertrophy were found in the larynx, trachea, carina, main bornchus and lobe bronchi. Lymphoid hyperplasia was found in the lobe bronchi. In the lungs diffuse and marked edema were noticed and moderate congestion with bronchiolitis and acute bronchopneumonia were observed. 3) In the 500 ppm group, the severity of the pathological changes were much less than those of the 1,000 ppm group, but showed the similar findings. 4) In the 100 ppm group the severity and the characteristics of the pathological changes were almost same as those of 1,000 ppm group. This finding might by due to the longer(almost 12 times) inhalation time imposed to 100 ppm group. Thus, in the interpretation of dose-response relationship, the concentration and time should be taken into consideration with a reasonable extrapolation.

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