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Biomedical subjects

K Philipson

Publications and source records attributed to K Philipson.

At least 55 records · Page 3Linked to original sources

Tracheobronchial clearance and beta-adrenoceptor stimulation in patients with chronic bronchitis.

The effect of a beta-adrenoceptor stimulating agent, terbutaline, on mucociliary transport in the lungs was studied in 10 patients with chronic bronchitis. Mucociliary transport was studied by having the patients inhale 6mum teflon particles tagged with 99mTc and by external measurement of the radioactivity in the lungs in the supine position. Terbutaline 0.25 mg and vehicle respectively were given subcutaneously in a cross-over double-blind study. On the average, clearance was slow in the examinations where the patients were given vehicle. Terbutaline produced a marked increase in mucociliary transport in four patients, a smaller increase in one and no effect in the others. Three out of the four patients who showed a marked inrease in clearance had less ventilatory impairment than the other seven patients. This may indicate that the mucociliary transport mechanism is less severely damaged in relatively early stages of the disease than in later stages. On the average FEV1.0 deteriorated significantly during the clearance measurements when vehicle was given, but did not change significantly when terbutaline was given.

Adult↗

Tracheobronchial clearance in bronchial asthma: response to beta-adrenoceptor stimulation.

Tracheobronchial clearance was studied in 12 patients with bronchial asthma. They inhaled a test aerosol of 6 mum teflon particles tagged with 99mTc, after which external measurement of the radioactivity in the lungs was made for 2 h in the supine position. Clearance was determined after subcutaneous administration of 0.25 mg of the beta-adrenoceptor stimulating compound terbutaline and vehicle, respectively, in a crossover, double-blind study. The average clearance in the asthmatics did not differ significantly from that of healthy non-smokers. Terbutaline significantly enhanced clearance in the asthmatics, though considerably less than reported for healthy subjects. Alternative explanations for this weak effect of terbutaline in the asthmatics might be that the mucociliary transport system was affected by the asthma disease, or that earlier treatment with beta-adrenoceptor stimulating compounds or other drugs had produced increased tolerance and/or carry-over effects. Ventilatory function measured as FEV1.0 deteriorated significantly during the clearance measurement when vehicle was given, but not when terbutaline was given. Terbutaline thus counteracted the unfavourable effect of the supine position on ventilation.

Adult↗