M Högman1, J Hjoberg, J Almirall, G Hedenstierna. 1. Department of Medical Sciences, Clinical Physiology and Asthma Research Centre, University of Uppsala, Uppsala, Sweden. marieann.hogman@klinfys.uu.se
Abstract
BACKGROUND: Asthmatics react with bronchoconstriction upon a variety of stimuli, i.e. exercise and hypertonic aerosol challenge. We have previously shown that hyperventilation with dry gas in a rabbit model resulted in a change of the ion content of the tracheal wall. This was followed by a hyperreactive response to histamine. OBJECTIVE: We hypothesised that nebulisation with 3.6% hypertonic saline will be accompanied by a hyperreactive response to histamine in a rabbit model. METHODS: Anaesthetised rabbits were given histamine after nebulisation with hypertonic saline. In addition, repeat nebulisation with hypertonic saline was given with or without histamine between these nebulisations. RESULTS: There was a different response to histamine 10 mg x ml(-1) whether hypertonic saline had been given or not (p < 0.001). Histamine nebulisation, given after hypertonic saline, caused an increase from baseline in resistance of 65 +/- 12 cm H(2)O.litre(-1) x s (mean +/- SEM, p < 0. 001) and a decrease in compliance of 2.3 +/- 0.4 ml x cm H(2)O(-1) (p < 0.001). The corresponding values for the control animals were 10 +/- 4 cm H(2)O.litre(-1) x s (n.s.) and 1.7 +/- 0.2 ml x cm H(2)O(-1) (p < 0.001). At a second nebulisation with hypertonic saline, with a histamine challenge 30 min before, the resistance increased from baseline by 35 +/- 10 cm H(2)O x litre(-1) x s (p < 0.01). This was not observed when no histamine had been given between the hypertonic saline nebulisations. CONCLUSIONS: This study in rabbits shows that hypertonic solutions cause an increase in the responsiveness to histamine and that histamine causes an increase in responsiveness to hypertonic saline. This is similar to the response of asthmatics to hypertonic saline.
BACKGROUND: Asthmatics react with bronchoconstriction upon a variety of stimuli, i.e. exercise and hypertonic aerosol challenge. We have previously shown that hyperventilation with dry gas in a rabbit model resulted in a change of the ion content of the tracheal wall. This was followed by a hyperreactive response to histamine. OBJECTIVE: We hypothesised that nebulisation with 3.6% hypertonicsaline will be accompanied by a hyperreactive response to histamine in a rabbit model. METHODS: Anaesthetised rabbits were given histamine after nebulisation with hypertonicsaline. In addition, repeat nebulisation with hypertonicsaline was given with or without histamine between these nebulisations. RESULTS: There was a different response to histamine 10 mg x ml(-1) whether hypertonicsaline had been given or not (p < 0.001). Histamine nebulisation, given after hypertonicsaline, caused an increase from baseline in resistance of 65 +/- 12 cm H(2)O.litre(-1) x s (mean +/- SEM, p < 0. 001) and a decrease in compliance of 2.3 +/- 0.4 ml x cm H(2)O(-1) (p < 0.001). The corresponding values for the control animals were 10 +/- 4 cm H(2)O.litre(-1) x s (n.s.) and 1.7 +/- 0.2 ml x cm H(2)O(-1) (p < 0.001). At a second nebulisation with hypertonicsaline, with a histamine challenge 30 min before, the resistance increased from baseline by 35 +/- 10 cm H(2)O x litre(-1) x s (p < 0.01). This was not observed when no histamine had been given between the hypertonicsaline nebulisations. CONCLUSIONS: This study in rabbits shows that hypertonic solutions cause an increase in the responsiveness to histamine and that histamine causes an increase in responsiveness to hypertonicsaline. This is similar to the response of asthmatics to hypertonicsaline.
Authors: J A Dye; J R Lehmann; J K McGee; D W Winsett; A D Ledbetter; J I Everitt; A J Ghio; D L Costa Journal: Environ Health Perspect Date: 2001-06 Impact factor: 9.031