Literature DB >> 2724908

Sensory and pulmonary irritation of inhaled n-butylamine in CF-1 and NMRI mice.

A M Vinggaard1, G D Nielsen, A S Fries.   

Abstract

Sensory and pulmonary irritation of butylamine was investigated in CF-1 and NMRI mice according to the American standard test method (ASTM E981-84). The method is based on the reflexively induced reduction of the respiratory rate of mice, when exposed to chemical irritants. Sensory irritation was investigated in normal mice, yielding RD50 values (concentration which reduces the respiratory rate by 50%) of 121 and 246 ppm for CF-1 and NMRI mice, respectively. The concentration-effect curves were parallel, but had significantly different elevations, indicating a lower sensitivity of NMRI mice. Pulmonary irritation was investigated in mice, inhaling through a tracheal cannula, yielding RD50 values of 300 and 362 ppm for CF-1 and NMRI mice, respectively. No statistically significant difference between either the slopes or the elevations of the concentration-effect curves was found, indicating the same level of sensitivity of CF-1 and NMRI mice regarding pulmonary irritation. It can be concluded that the 2 mice stocks gave qualitatively comparable responses, but regarding sensory irritation they responded differently quantitatively. Thus for sensory irritation investigations the RD50 values obtained with NMRI mice should be multiplied by 0.49 to obtain comparable values to those, expected in the recommended stock given by E981-84.

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Year:  1989        PMID: 2724908     DOI: 10.1258/002367789780886957

Source DB:  PubMed          Journal:  Lab Anim        ISSN: 0023-6772            Impact factor:   2.471


  1 in total

1.  Substance P antagonist CP-96345 blocks lung vascular leakage and inflammation more effectively than its stereoisomer CP-96344 in a mouse model of smoke inhalation and burn injury.

Authors:  Sam Jacob; Donald J Deyo; Robert A Cox; Reuben K Jacob; David N Herndon; Daniel L Traber; Hal K Hawkins
Journal:  Toxicol Mech Methods       Date:  2010-05       Impact factor: 2.987

  1 in total

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