Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0016382 (flushing)
6,387 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Platelet activating factor, a potent mediator of inflammation, causes a sustained increase in airway responsiveness to methacholine in man and has been implicated in asthma. The effect of the beta 2 agonist salbutamol (200 micrograms by inhalation) on platelet activating factor induced bronchoconstriction and airway hyperresponsiveness was studied in seven normal subjects in a double blind, crossover study. Salbutamol only partially inhibited the platelet activating factor induced fall in partial flow at 30% of vital capacity (Vp30) (mean percentage fall 47.6 (SEM 7.9); p less than 0.001), whereas it completely blocked a similar degree of bronchoconstriction induced by methacholine. Salbutamol did not prevent the accompanying transient flushing and chest irritation and did not affect the transient neutropenia (mean % fall 69.5 (13.6); p less than 0.01) or the rebound neutrophilia (mean % increase 84.7 (24.7); p less than 0.05) that followed platelet activating factor. There was an increase in the airway responsiveness to methacholine following inhalation of platelet activating factor, the maximum mean change being a three fold increase in PC40 (the provocative concentration of methacholine causing a 40% fall in Vp30) on day 3 (p less than 0.01). Salbutamol caused a significant attenuation of this response on day 3 (p less than 0.02) but had no significant effect on days 1 and 7. Thus a therapeutic dose of salbutamol caused partial inhibition of platelet activating factor induced bronchoconstriction and had a minimal effect on the increased bronchial responsiveness following platelet activating factor.
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PMID:Effects of salbutamol on bronchoconstriction, bronchial hyperresponsiveness, and leucocyte responses induced by platelet activating factor in man. 264 45

This paper reviews the published toxicology of salbutamol. Salbutamol is a relatively selective beta 2-adrenoreceptor stimulant with rapid, potent bronchodilator activity and only minor inotropic or chronotropic effects. It was not found to be mutagenic. LD50 values and other acute studies indicated low toxicity. Findings published for repeat dose studies were mainly uneventful. Tachycardia and flushing of the skin were observed in dogs. There were several findings peculiar to the rat--growth of the salivary gland, enlargement of the Harderian gland, an increase in colloid in the pituitary, and mesovarian leiomyomas. Increases in heart weights associated with inflammation, hypertrophy of muscle fibres, focal myocardial necrosis and fibrosis were seen in rats. Malformation, in the form of cleft palate, was reported in mice but not in rats or rabbits. These treatment related effects reported for salbutamol are not compound-related but rather are class-related. They are an expression of pharmacological activity brought about by the excessive beta stimulant action of high dosage with the drug.
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PMID:A review of the toxicology of salbutamol (albuterol). 806 92

Salbutamol inhibits neutropenia, increased airway resistance, and gas exchange abnormalities provoked by platelet-activating factor (PAF) challenge in normal persons. To further explore the intriguing dissociation between spirometric abnormalities and gas exchange defects shown in patients with asthma, we investigated whether the salbutamol-induced improvement in gas exchange disturbances after PAF is the result of bronchodilation by comparing this effect with that of ipratropium bromide. We hypothesized that ipratropium bromide, an anticholinergic agent without vascular effects, should block PAF-induced bronchoconstriction but not interfere with its systemic, neutropenic, and gas exchange effects. We studied eight nonsmokers with mild asthma (26 +/- 2.0 SE yr of age) who, prior to PAF challenge (18 micrograms), inhaled either ipratropium bromide (80 micrograms) or salbutamol (300 micrograms) in a randomized, double-blind, crossover fashion 1 wk apart. Peripheral blood neutrophils, respiratory system resistance (Rrs), arterial blood gases and ventilation-perfusion (VA/Q) inequalities were measured 5, 15, and 45 min after PAF. Compared with pretreatment with salbutamol, ipratropium bromide also blocked the increase of respiratory system resistance (Rrs) but did not prevent facial flushing and neutropenia (p < 0.03) at 5 min nor the decrease of PaO2 (p = 0.08 and 0.05), the increase of AaPO2 (p < 0.02 each), and the deterioration of VA/Q relationships (p < 0.05 each) at 5 and 15 min, respectively. This functional pattern was similar to that observed previously in normal subjects and in nonpremedicated asthmatic patients after PAF, with return to baseline values at 45 min. By contrast, salbutamol blocked PAF-induced increased Rrs, in addition to all the other PAF-induced abnormalities. These findings indicate that, in patients with mild asthma, salbutamol inhibits PAF-induced neutropenia and gas exchange abnormalities by mechanisms involving other than airway smooth muscle narrowing, possibly by acting on both the bronchial and pulmonary circulations.
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PMID:Inhibition of PAF-induced gas exchange defects by beta-adrenergic agonists in mild asthma is not due to bronchodilation. 923 Jul 20