PubMed HealthSearch

PubMed · 8540433

Nitric oxide in the developing lung.

Abstract

The source did not provide an abstract. Follow the original record for more information.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

P W Shaul. 1995. Nitric oxide in the developing lung.. https://pubmed.ncbi.nlm.nih.gov/8540433/

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

A comparison of the bronchodilator effect of salbutamol inhaled via Turbuhaler as two consecutive doses or as two divided doses at different time intervals.

The aim of the study was to compare the bronchodilatory effect of 2x50 microg salbutamol inhaled via Turbuhaler(R) as two consecutive doses compared with two divided doses (50+50 microg) at different time intervals. The study was of a randomized, double-blind, crossover design. The patients inhaled two doses of 50 microg salbutamol immediately after each other and with a time interval between the doses of 1.5, 3, 5, or 10 mins. Forced expiratory volume in 1 s (FEV(1)) was measured before the first inhalation and at 1, 2. 5, 4.5, 9.5, 15, 20, 30, and 60 min after the first inhalation. Seventeen asthmatic patients (8 men) with a mean age of 32 years (range: 19-49 years), mean FEV(1) of 2.9 l (range: 1.7-3.9 l) and a mean FEV(1) in percentage of predicted normal value of 77% (range: 63-91%) participated. The mean reversibility 15 min after inhaling 100 microg salbutamol from pMDI was 23% (range: 16-35%). The mean maximum increase in FEV(1) from baseline ranged between 18.6% (consecutive doses) and 21.2% (1.5 min between doses), corresponding to a difference between the treatments of 0.06 l. There were no significant differences in maximum FEV(1) or time to reach maximum FEV(1) between the treatments. We were not able to show any clinically relevant differences in maximal bronchodilating effect, assessed as FEV(1), in stable asthmatics, when therapeutic doses of salbutamol were given via Turbuhaler either as two consecutive doses or as two divided doses separated by different time intervals.

Administration, Inhalation

Inhalation of tobramycin in cystic fibrosis. Part 1: the choice of a nebulizer.

Forteen commercially available jet and ultrasonic nebulizers were investigated with the aim to select the most suitable type of apparatus for the inhalation of a 10% tobramycin solution. Two different techniques for measurement of particle size distribution were evaluated: laser diffraction and cascade impactor analysis. The final selection of the nebulizers is based on particle size distribution, output and stable performance during nebulization. All 14 nebulizers (eight jet and six ultrasonic) were filled with a solution of 10% m/v tobramycin (as sulphate) in water. The volume in the tested devices ranged from 4.5 to 10 ml (=450-1000 mg tobramycin) in accordance with the prescribed usage by the suppliers. The nebulizers were connected with a special designed adapter to a laser diffraction analyser in order to measure particle size distribution of the aerosol. Inhalation was simulated with a static flow of 40 l/min. The particle size distribution (expressed as X(10), X(50), and X(90)) was determined after 10 s, 1.5, 3, 4.5, 6, 9 and 12 min of nebulization. Furthermore, the tobramycin solutions were assayed for tobramycin content before and after nebulization. For all nebulizers, the mean particle size distribution, depicted as X(50), was within the range of 1-5 mm. There were no relevant differences between the nebulizers in concentration or particle size distribution during nebulization. The output of the nebulizers is a result of both nebulization and evaporation. The output, expressed as volume of tobramycin solution, ranged from 0.06 to 0.50 ml/min. The output of tobramycin ranged from 1.2 to 39.5 mg/min. For clinical practice 300-600 mg have to be nebulized within 20-30 min. It was concluded that only three jet nebulizers [Porta-Neb Sidestream (PNS), Porta-Neb Ventstream (PNV) and Pariboy Pari LC+ (PLC)] have a reasonable output and an acceptable particle size distribution for the administration of a 10% tobramycin solution in the therapeutic dosage range.

Administration, Inhalation

Inhalation of tobramycin in cystic fibrosis. Part 2: optimization of the tobramycin solution for a jet and an ultrasonic nebulizer.

The inhalation of tobramycin is part of current cystic fibrosis (CF) therapy. Local therapy with inhaled antibiotics has demonstrated improvements in pulmonary function. Current inhalation therapy is limited by the available drug formulations in combination with the nebulization time. The aim of this study is to develop a highly concentrated tobramycin solution for inhalation. Several tobramycin solutions, ranging from 5 to 30% (m/v), were compared after aerosolation with a jet and with an ultrasonic nebulizer. Laser diffraction and cascade impactor analysis were used for characterization of the aerosolized solutions. The output rate was determined in volume and mass output per minute. From the output rate measurements, it was concluded that a 20% tobramycin solution is the optimal and maximal concentration to be aerosolized. The jet nebulizer was most suitable. Using the jet nebulizer and the 20% solution, it is possible to administer a dosage of 1000 mg tobramycin by inhalation within 30 min.

Administration, Inhalation