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Efficacy response of inhaled HFA-albuterol delivered via the breath-actuated Autohaler inhalation device is comparable to dose in patients with asthma.

Handling difficulties, such as poor coordination of actuation and inhalation, are common in patients using press and breathe (P&Bs) metered-dose inhalers to administer asthma medication. Although spacers can help overcome some difficulties, the cumbersome nature of these devices often detracts from their use for the administration of rescue medications, where portability is important. This randomized, placebo-controlled, multicenter, crossover study investigated the efficacy, dose-response and safety of HFA-albuterol delivered via a breath-actuated Autohaler inhalation device in comparison with the same medication delivered using a conventional P&B device. In total, 39 patients received six study treatments in a random sequence at clinic visits separated by 2-7 days: 2 puffs from a HFA-placebo Autohaler; 1, 2, or 4 puffs from a HFA-albuterol Autohaler; I or 2 puffs from a HFA-albuterol P&B. Both active inhalers delivered 90 microg albuterol base equivalent/actuation from the actuator. The change from baseline in forced expiratory volume in 1 s (FEV1) and the area under the FEV1 curve (FEV1 AUC) were significantly greater than placebo for all active treatment groups (p < or = 0.01) and were suggestive of a dose response for each inhaler. Examination of the pooled slope of the dose responses for the Autohaler and P&B using Finney's Parallel Line Bioassay Methodology found a highly statistically significant relationship indicating the equivalence of the two inhalers on both parameters (p < or = 0.002). The relative potency of the two inhalers was 0.8 (95% CI: 0.47, 1.46) for the mean change from baseline in FEV1 and 0.9 (95% CI, 0.56, 1.48) for the change from baseline in FEV1 AUC. There was also a trend toward an increase in the mean percentage change from baseline in FEV1 as the number of puffs increased for both inhalers. Furthermore, there were no significant differences between the treatment groups with regard to time to onset of bronchodilator effect and the duration of effect was significantly greater than placebo (p < or = 0.01) in each of the active groups. Adverse events were generally mild to moderate in nature and were of similar incidence (< or = 18% of patients) in each group. This study demonstrates a dose-response for HFA-albuterol on bronchodilation using both the Autohaler and P&B devices and illustrates that, in patients with good coordination of inhalation with actuation, the efficacy and safety of the two inhalers is similar at equivalent doses.

Administration, Inhalation↗

[An experiment study of reversed pulmonary hypertension with inhaled nitric oxide on smoke inhalation injury].

We evaluated the effect and mechanisms of reversed pulmonary hypertension with inhaled nitric oxide (NO) on smoke inhalation injury in the dog model, 21 dogs were divided into 3 groups randomly. Following smoke inhalation, the control group (n = 8) inhaled O2 (FiO2, 0.45) and the treated group (n = 9) inhaled O2 and 0.0045% (45 ppm) NO. Hemodynamics was serially measured for 12 hours. In addition, 4 dogs without smoke inhalation were used to study the normal lung histomophologic findings. The data were analyzed by ANOVA. After inhalation of NO, the mean pulmonary artery pressure (mPAP), pulmonary minute vessels pressure (Pmv), and pulmonary vascular resistance (PVR) were decreased significantly (P < 0.05), while the mean aortic pressure (mAP) and total peripheral resistance (TRP) were not remarkably changed (P > 0.05). The levels of cyclic guanosine monophosphate (cGMP) were increased significantly (P < 0.01). Inhaled NO may reverse pulmonary hypertension with smoke inhalation injury in dogs. The mechanism of selective pulmonary circulation was increased cGMP level in smooth cells. Inhaled NO may be recommended for clinical application.

Administration, Inhalation↗

Steroid inhaler laryngitis: dysphonia caused by inhaled fluticasone therapy.

OBJECTIVE: To describe a condition that is referred to as steroid inhaler laryngitis, a clinical entity that is caused by the use of inhaled fluticasone propionate and manifested by dysphonia, throat clearing, and fullness. DESIGN: Case series. SETTING: An outpatient clinic of an academic referral center. PATIENTS: The study population consisted of 20 patients with reactive airway disease and dysphonia who were receiving inhaled fluticasone therapy and who were diagnosed as having steroid inhaler laryngitis during the period from January 1998 to June 2000. INTERVENTION: Cessation of inhaled fluticasone therapy when possible, as well as treatment of other underlying causes of dysphonia, such as laryngopharyngeal reflux and infectious processes. MAIN OUTCOME MEASURE: The resolution of dysphonia with cessation of inhaled fluticasone therapy. RESULTS: Patients with steroid inhaler laryngitis were found to have laryngeal findings ranging from mucosal edema, erythema, and thickening to leukoplakia, granulation, and candidiasis. Patients with more severe mucosal findings were more likely to have laryngopharyngeal reflux as well. Resolution of dysphonia occurred only after discontinuation of the inhaled fluticasone therapy. CONCLUSIONS: Steroid inhaler laryngitis is a form of chemical laryngopharyngitis induced by topical steroid administration. Symptoms and physical findings mimic laryngopharyngeal reflux, but only respond completely to discontinuation of the inhaled steroid therapy. The otolaryngologist should be familiar with this cause of dysphonia.

Administration, Inhalation↗

Addition of inhaled long-acting beta2-agonists to inhaled steroids as first line therapy for persistent asthma in steroid-naive adults.

BACKGROUND: Consensus statements recommend the addition of long-acting inhaled beta2-agonists only in asthmatic patients who are inadequately controlled on inhaled corticosteroids. OBJECTIVES: To compare the efficacy of initiating anti-inflammatory therapy using the combination of inhaled corticosteroids and long-acting beta2-agonists (ICS+LABA) as compared to inhaled corticosteroids alone (ICS alone) in steroid-naive children and adults with persistent asthma. SEARCH STRATEGY: We identified randomised controlled trials (RCTs) through electronic database searches (Cochrane Airways Group Specialised Register, Cochrane Central Register of Controlled Trials (CENTRAL), MEDLINE, EMBASE and CINAHL) until April 2004, bibliographies of identified RCTs and correspondence with manufacturers. SELECTION CRITERIA: RCTs comparing the combination of inhaled corticosteroids and long-acting beta2-agonists (ICS + LABA) to inhaled corticosteroids (ICS) alone in steroid-naive children and adults with asthma. DATA COLLECTION AND ANALYSIS: Studies were assessed independently by each reviewer for methodological quality and data extraction. Confirmation was obtained from the trialists when possible. The primary endpoint was rate of asthma exacerbations requiring systemic corticosteroids. Secondary endpoints included pulmonary function tests (PFTs), symptoms, use of other measures of asthma control, adverse events, and withdrawal rates. MAIN RESULTS: Eighteen trials met the inclusion criteria; nine (totaling 1061 adults) contributed sufficient data to be analysed. Baseline forced expiratory volume in one minute (FEV1) was less than 80% predicted value in four trials and equal to or greater than 80% in five trials. The long-acting beta2-agonists (LABA) formoterol (N=2) or salmeterol (N=7) were added to a dose of at least 800 microg/day of beclomethasone dipropionate (BDP) equivalent of inhaled corticosteroids (ICS) in three trials and to at least 400 microg/day in the six remaining trials. Treatment with ICS plus LABA was not associated with a lower risk of exacerbations requiring oral corticosteroids than ICS alone (relative risk (RR) 1.2; 95% confidence interval (CI) 0.8 to 1.9). FEV1 improved significantly with LABA (weighted mean difference (WMD) 210 ml; 95% CI 120 to 300), as did symptom-free days (WMD 10.74%; 95% CI 1.86 to 19.62), but the change in use of rescue fast-acting beta2-agonists was not significantly different between the groups (WMD -0.4 puff/day, 95% CI -0.9 to 0.1). There was no significant group difference in adverse events (RR 1.1; 95% CI 0.8 to 1.5), withdrawals (RR 0.9; 95% CI 0.6 to 1.2), or withdrawals due to poor asthma control (RR 1.3; 95% CI 0.5 to 3.4). AUTHORS' CONCLUSIONS: In steroid-naive patients with mild to moderate airway obstruction, the initiation of inhaled corticosteroids in combination with long-acting beta2-agonists does not significantly reduce the rate of exacerbations over that achieved with inhaled corticosteroids alone; it does improve lung function and symptom-free days but does not reduce rescue beta2-agonist use as compared to inhaled steroids alone. Both options appear safe. There is insufficient evidence at present to recommend use of combination therapy rather than ICS alone as a first-line treatment.

Administration, Inhalation↗

Adrenal insufficiency in an adult on inhaled corticosteroids; recovery of adrenal function with inhaled nedocromil sodium.

BACKGROUND: Whereas oral corticosteroids and high-dose inhaled corticosteroids may be associated with suppression of the hypothalamic-pituitary-adrenal axis, medium-dose inhaled corticosteroids have not been reported to be associated with clinically significant adrenal insufficiency in the adult. OBJECTIVE: A case study of adrenal responsiveness after prolonged medium-dose inhaled corticosteroids and after replacement of steroid therapy by inhaled nedocromil sodium is described. METHODS: Standard 250-microg dose ACTH (cosyntropin) stimulation tests were followed after replacement of inhaled triamcinolone acetonide therapy by nedocromil sodium. RESULTS: A 55-year-old woman who had been on inhaled triamcinolone acetonide, 1600 microg/day for 12 years, presented with symptoms of adrenal hypofunction upon inhaled corticosteroid taper. An ACTH stimulation test confirmed adrenal insufficiency. She was switched to inhaled nedocromil sodium with improvement in her clinical syndrome and normalization of her ACTH stimulation test. CONCLUSION: Withdrawal from prolonged use of inhaled medium-dose corticosteroids may be associated with clinically significant adrenal insufficiency in adults. Steroid sparing agents may be considered for those on long-term inhaled corticosteroid therapy.

Administration, Inhalation↗

A comparison of low-dose inhaled budesonide plus theophylline and high-dose inhaled budesonide for moderate asthma.

BACKGROUND: Inhaled glucosteroids and oral theophylline are widely used to treat asthma. We compared the benefits of adding theophylline to inhaled glucosteroid with those of doubling the dose of inhaled glucosteroid in patients with persistent symptoms despite the use of inhaled glucosteroid. METHODS: In a double-blind, placebo-controlled trial, we randomly assigned 62 patients to receive either 400 microg of inhaled budesonide (low-dose budesonide) with 250 or 375 mg of theophylline (depending on body weight) or 800 microg of inhaled budesonide (high-dose budesonide). All doses were given twice daily for three months. Lung function was measured serially, and patients kept records of peak expiratory flow, symptoms, and albuterol use. The effects of treatment on endogenous cortisol levels were also assessed. RESULTS: Both treatments resulted in improvements in lung function that were sustained throughout the study. As compared with treatment with high-dose budesonide, treatment with low-dose budesonide plus theophylline resulted in greater improvements in forced vital capacity (P=0.03) and forced expiratory volume in one second (P= 0.03). There were significant and similar reductions in beta2-agonist use and the variability of peak expiratory flow, a correlate of bronchial hyperresponsiveness and the severity of asthma. Serum cortisol concentrations were significantly reduced in the group given high-dose budesonide (from a mean [+/-SE] of 18.4+/-2.4 microg per deciliter to 15.9+/-2.1 microg per deciliter, P=0.02) but were unchanged in the other group. The median serum theophylline concentration was 8.7 microg per milliliter (therapeutic range, 10 to 20) among those who received theophylline. Both treatments were well tolerated. CONCLUSIONS: For patients with moderate asthma and persistent symptoms, low-dose inhaled budesonide with theophylline and high-dose inhaled budesonide produced similar benefits. Effects were achieved at theophylline concentrations below the recommended therapeutic range. The addition of low-dose theophylline to inhaled glucosteroid may be preferable to and cheaper than increasing the dose of inhaled glucosteroid.

Administration, Inhalation↗

Combined inhaled nitric oxide and inhaled prostacyclin during experimental chronic pulmonary hypertension.

Inhaled nitric oxide (NO) and inhaled prostacyclin (PGI2) produce selective reductions in pulmonary vascular resistance (PVR) through differing mechanisms. NO decreases PVR via cGMP, and PGI2 produces pulmonary vasodilation via cAMP. As a general pharmacological principle, two drugs that produce similar effects via different mechanisms should have additive or synergistic effects when combined. We designed this study to investigate whether combined inhaled NO and PGI2 therapy results in additive effects during chronic pulmonary hypertension in the rat. Monocrotaline injected 4 wk before study produced pulmonary hypertension in all animals. Inhaled NO (20 parts/million) reversibly and selectively decreased pulmonary artery pressure (Ppa) with a mean reduction of 18%. Four concentrations of PGI2 were administered via inhalation (5, 10, 20, and 80 microg/ml), both alone and combined with inhaled NO. Inhaled PGI2 alone decreased Ppa in a dose-dependent manner with no change in mean systemic arterial pressure. Combined inhaled NO and PGI2 selectively and significantly decreased Ppa more did than either drug alone. The effects were additive at the lower concentrations of PGI2 (5, 10, and 20 microg/ml). The combination of inhaled NO and inhaled PGI2 may be useful in the management of pulmonary hypertension.

Administration, Inhalation↗

Similar efficacy following four weeks treatment of asthmatics with formoterol 12 micrograms b.d. delivered by two different dry powder inhalers: differences in inhaler handling.

This randomised, multicentre, parallel-group study compared the clinical efficacy and ease of handling of two dry powder inhalers delivering the long-acting beta 2-agonist formoterol. After run-in, 200 asthmatics on treatment with inhaled corticosteroids and still presenting with suboptimal asthma control were randomised to receive 12 micrograms formoterol twice daily via either the Aerolizer inhaler (Foradil Aerolizer) or the Turbuhaler inhaler (Oxis Turbuhaler) for four weeks. Study variables included the mean morning pre-medication peak expiratory flow (PEF) during the last seven days of treatment and the correct inhaler handling according to inhaler-specific checklists. The mean difference in the effect on morning pre-medication PEF was 13.86 l/min in favour of formoterol via the Aerolizer inhaler (90% confidence interval 2.50, 25.21) in the intent-to-treat population. Eighty-six per cent of the patients under treatment with formoterol via the Turbuhaler inhaler performed correctly all the essential inhalation manoeuvres, whereas 98% of those on the Aerolizer inhaler did so. These results strongly suggest similar clinical efficacy with twice daily treatment of formoterol 12 micrograms metered dose delivered either by the Aerolizer, or the Turbuhaler device. They also suggest that handling the Aerolizer is easier than that of the Turbuhaler.

Administration, Inhalation↗

Comparison of inhaled salmeterol and oral zafirlukast in asthmatic patients using concomitant inhaled corticosteroids.

CONTEXT: For asthmatic patients who remain symptomatic on inhaled corticosteroids, augmenting the therapy with additional long-term control medication is advocated. Long-acting beta2-adrenergic agonists and leukotriene modifiers are 2 therapeutic alternatives in the long-term controller class. OBJECTIVE: To compare the addition of a long-acting beta2-adrenergic agonist to the addition of an oral leukotriene modifier for asthma therapy in patients who remain symptomatic on inhaled corticosteroids. DESIGN: Double-blind, double-dummy, parallel-group, multicenter clinical studies. SETTING: 54 outpatient clinical centers. PATIENTS: 429 male and female patients with asthma 12 years of age and older who were symptomatic while taking inhaled corticosteroids. INTERVENTIONS: Salmeterol xinafoate 42 mcg via metered dose inhaler twice daily or oral zafirlukast 20 mg twice daily. MAIN OUTCOME MEASURES: Pulmonary function, asthma symptoms, supplemental albuterol use, asthma quality of life scores, and adverse events. RESULTS: Inhaled salmeterol provided significantly greater improvement in pulmonary function as well as significantly greater relief of both daytime and nighttime asthma symptoms compared with oral zafirlukast in patients concurrently treated with inhaled corticosteroids. The use of supplemental albuterol was reduced to a greater extent with salmeterol compared with zafirlukast. Patients treated with salmeterol showed significantly greater improvement in Asthma Quality of Life Questionnaire (AQLQ) scores and were satisfied with how fast, how long, and how well the medication worked compared with patients in the zafirlukast group. Both treatments were well tolerated and demonstrated similar safety profiles. CONCLUSIONS: In patients with moderate to severe persistent asthma not sufficiently controlled with inhaled corticosteroids alone, the combination of inhaled salmeterol and inhaled corticosteroids is superior to the combination of oral zafirlukast and inhaled corticosteroids as stepwise therapy.

Administration, Inhalation↗

Inhaled hyperosmolar agents for bronchiectasis.

BACKGROUND: Mucus retention in the lungs is a prominent feature of bronchiectasis. The stagnant mucus becomes chronically colonised with bacteria, which elicit a host neutrophilic response. This fails to eliminate the bacteria, and the large concentration of host-derived protease may contribute to the airway damage. The sensation of retained mucus is itself a cause of suffering, and the failure to maintain airway sterility probably contributes to the frequent respiratory infections experienced by many patients. Hypertonic saline inhalation is known to accelerate tracheobronchial clearance in many conditions, probably by inducing a liquid flux into the airway surface, which alters mucus rheology in a way favourable to mucociliary clearance. Inhaled dry powder mannitol has a similar effect. Such agents are an attractive approach to the problem of mucostasis, and deserve further clinical evaluation. OBJECTIVES: To determine whether inhaled hyperosmolar substances are efficacious in the treatment of bronchiectasis SEARCH STRATEGY: MEDLINE and Cochrane databases were searched, and leaders in the field contacted. SELECTION CRITERIA: Any trial using hyperosmolar inhalation in patients with bronchiectasis not caused by cystic fibrosis. DATA COLLECTION AND ANALYSIS: One reference were identified by the searches conducted. MAIN RESULTS: Only one trial was identified, a crossover study of 11 patients with bronchiectasis. The outcome measure was tracheobronchial clearance of a particulate radioaerosol after inhalation of dry mannitol on a single occasion, with appropriate controls. Airway clearance doubled in the central and intermediate regions of the lung, but not in the peripheral region, after mannitol administration. No side effects were observed, but two patients were premedicated with nedocromil to prevent bronchospasm. REVIEWER'S CONCLUSIONS: Dry powder mannitol has been shown to improve tracheobronchial clearance in bronchiectasis, as well as cystic fibrosis, asthmatics, and normal subjects. It is not yet available for clinical use. Hypertonic saline has not been specifically tested in bronchiectasis, but improve clearance in these other conditions and in chronic bronchitis. Longer term randomised controlled studies of mannitol and hypertonic saline with clinical endpoints are now needed.

Bronchiectasis↗

Evaluation of inhalation aids of metered dose inhalers in asthmatic children.

Many patients have incorrect aerosol inhalation technique with metered dose inhalers (MDI). Several inhalation aids have been developed and marketed for these patients. Even those who have correct inhalation technique may benefit from these devices. We compared bronchodilator efficacy of two puffs of albuterol aerosol administered either directly from a MDI mouthpiece, or from an inhalation aid (InspirEase, Aerochamber, Aerosol Bag) in 20 children who had previously demonstrated proper inhalation technique. The children received two puffs of aerosol from a MDI in each of two modalities tested each day on four different days (double blind). One modality contained albuterol aerosol and the other placebo. Pulmonary function was tested before and at 15, 30, 60, 120, and 180 minutes after treatment. Forced expiratory volume in 1 second (FEV1) increased similarly after all four modes of administration. Six patients who had incorrect inhalation technique benefited from the three inhalation aids. The aerosol bag and InspirEase produced slightly greater bronchodilator response than the Aerochamber. The inhalation aids are useful devices for those who have incorrect inhalation technique, but those who have correct technique do not derive any benefit from these devices.

Adolescent↗

Respimat Soft Mist inhaler versus hydrofluoroalkane metered dose inhaler: patient preference and satisfaction.

INTRODUCTION: In addition to offering favorable pharmaceutical performance, an ideal inhaler should be well accepted by patients, as this may facilitate compliance. We report a study that specifically assessed inhaler preference in patients with obstructive lung disease after treatment with ipratropium bromide/fenoterol hydrobromide (Berodual delivered via either Respimat Soft Mist Inhaler (SMI) or hydrofluoroalkane metered dose inhaler (HFA-MDI). METHODS: Patients with COPD, asthma or mixed disease were randomized to receive ipratropium bromide/fenoterol hydrobromide 20/50 microg via Respimat SMI or 40/100 microg via HFA-MDI for 7 weeks each, in a crossover design. Patients were trained in inhaler use and given < or =5 attempts to demonstrate satisfactory technique. At the end of each treatment period, patients completed a 15-item satisfaction questionnaire, and inhaler technique was re-tested. On study completion, patients were asked which inhaler they preferred and they rated their willingness to continue using each inhaler. Clinical efficacy outcomes were measured by diary card to check whether switching inhaler affected efficacy. RESULTS: In total, 245 patients were randomized and 224 used both inhalers within their respective treatment periods. Of 201 patients expressing a preference, 162 (81%) preferred Respimat SMI and 39 (19%) preferred HFA-MDI (p < 0.001). Patients would rather continue using Respimat SMI than HFA-MDI (p < 0.001). Mean scores for 13 of the 15 satisfaction questions were significantly higher for Respimat SMI than HFA-MDI (p < 0.05); in addition, the total score was also significantly higher for Respimat SMI (p < 0.001). Most patients (217/224; 97%) were judged to have good technique with Respimat SMI after 7 weeks' use. Differences in efficacy measures between the devices were not significant. CONCLUSION: These data indicated that a large majority of patients preferred Respimat SMI to HFA-MDI.

Aerosols↗

Assessment of the inhalation technique in outpatients with asthma or chronic obstructive pulmonary disease using a metered-dose inhaler or dry powder device.

Inhaled medication is commonly prescribed for the treatment of asthma and chronic obstructive pulmonary disease (COPD), but is often not properly used by patients. A total of 316 patients suffering from asthma or COPD took part in a study that evaluated how patients utilized their metered-dose inhaler (MDI) or dry powder inhaler, using a standardized inhaler checklist. Two hundred eighty-one patients (88.9%) made at least one mistake in the inhalation technique. The mistakes were classified into skill and nonskill mistakes. Two hundred patients made one or more skill mistakes and 81 patients only made one or more nonskill mistakes. The most common skill error was "not continuing to inhale slowly after activation of the canister" (69.6%). The nonskill item most patients had difficulties with was "exhale before the inhalation" (65.8%). Patients who used an MDI made significantly fewer nonskill mistakes than patients using a dry powder device. Older patients had more difficulty with the correct use of the inhaler than younger patients. There was no difference in errors between men and women. In this patient sample, most patients failed to use their inhaler correctly. Regular instructions and checkups of inhalation technique are the responsibility of the physician and should be a standard and routine procedure.

Adolescent↗

Addition of anti-leukotriene agents to inhaled corticosteroids for chronic asthma.

BACKGROUND: Anti-leukotriene (AL) agents are being considered as "add-on" therapy to inhaled corticosteroids (ICS), in chronic asthma. OBJECTIVES: To examine the safety and efficacy of daily AL plus ICS compared to ICS alone, and determine the corticosteroid-sparing effect of AL when added to ICS in chronic asthma. SEARCH STRATEGY: We searched Medline, Embase, Cinahl (all up to 2001), reference lists of review articles and trials, contacted international headquarters of AL manufacturers and ATS meeting abstracts (1998-2000). SELECTION CRITERIA: Randomised placebo-controlled trials of asthmatics aged 2 years and older lasting at least one month. DATA COLLECTION AND ANALYSIS: Two reviewers assessed quality and extracted data independently. Trials were grouped by asthma control at baseline (symptomatic or well-controlled) and dose of ICS in the control group (same or double). MAIN RESULTS: Of 336 citations, 11 trials (only adults) met inclusion criteria. Six were published in full-text, eight were high quality. Daily dose of ICS was 300-2000 mcg beclomethasone-equivalent. In symptomatic adults, AL (at 2-4 times licensed dose) combined with ICS reduced the number of patients with exacerbations that required systemic corticosteroids, compared to ICS alone [Relative Risk (RR) = 0.34; 95% Confidence Interval (CI) 0.13, 0.88]. This equates to 20 patients (95% CI 1,100 patients) treated to prevent one needing systemic corticosteroids. There was no difference in side effects. No trials tested the efficacy of licensed doses of ALs as add-on to ICS. In symptomatic adults, addition of zafirlukast to ICS did not reduce the number of exacerbations requiring systemic corticosteroids, compared to doubled dose ICS [RR= 1.39; 95% CI: 0.63, 3.08)]. There were no differences in any other measure of outcome. Higher doses of zafirlukast than currently licensed were associated with increased risk of liver enzyme elevation. In ICS-sparing trials of AL agents there was no difference in ICS dose after 12-16 weeks [Weighted Mean Difference (WMD) 1.9% change; 95% CI -3.5, 7.3], and no difference in lowest tolerated dose of ICS [WMD= 44 mcg/d; 95% CI -59, 148)]. REVIEWER'S CONCLUSIONS: Used as add-on therapy to inhaled corticosteroids, high dose anti-leukotrienes reduced exacerbations, but there is no evidence to support their use at currently licensed doses. There is insufficient evidence to indicate whether they confer benefit over doubling the dose of corticosteroids. There is no evidence that they have any significant inhaled corticosteroid-sparing effect.

Administration, Inhalation↗

Effect of inhaled nitric oxide on pulmonary vascular hyperpermeability in sheep following smoke inhalation.

Smoke inhalation increases mortality and morbidity in burn patients. We have reported that smoke inhalation increases lung lymph flow, an index of pulmonary transvascular fluid flux and decreases reflection coefficient, an index of microvascular permeability to protein. Nitric oxide has been reported to decrease microvascular permeability to protein. We hypothesize that inhaled nitric oxide decreases pulmonary microvascular hyperpermeability following smoke inhalation. Sheep were prepared for study with a chronic lung lymph fistula, Swan-Ganz, left atrial, and femoral arterial catheters. Occluders were placed on pulmonary veins to measure reflection coefficient. All animals were insufflated with 4 x 12 breaths of cotton smoke. Sheep were randomly divided into two groups: NO (injured, treated with nitric oxide (40 ppm) inhalation, n=6) and control (injured, not treated, n=6). Nitric oxide inhalation was started 22 h after the insult. Control animals showed an increase in lung lymph flow, and lung water content. These changes were associated with marked increase in pulmonary microvascular resistance, pulmonary artery pressure, and decrease in reflection coefficient. Nitric oxide inhalation ameliorated the above-mentioned pathological changes. The results suggest that nitric oxide inhalation has potential for beneficial effect in the treatment of patients suffering from smoke inhalation.

Administration, Inhalation↗

Inhaled micronized crystalline human insulin using a dry powder inhaler: dose-response and time-action profiles.

AIM: The aim of this euglycaemic glucose clamp study was to investigate the pharmacokinetics, glucodynamics, safety and tolerability of micronized crystalline human insulin inhalation powder delivered by a Spiros dry powder inhaler system in healthy volunteers. METHODS: Thirteen healthy, non-smoking, male and female volunteers [age 30 +/- 7 years; BMI 23.5 +/- 2.7 kg/m(2); (mean +/- sd)] with normal pulmonary function participated in an open-label, randomised, 6-period crossover trial. Each volunteer received four single doses of inhaled insulin (60, 90, 120, 150 U) on separate occasions. For comparison, each volunteer also received two of three possible doses of subcutaneous (s.c.) injected regular human insulin (8, 14, or 20 U). RESULTS: Serum immunoreactive insulin following inhalation of insulin peaked an average of 60 min earlier compared with s.c. injected insulin (P < 0.0001). Following inhalation, the time to maximum glucose infusion rate occurred an average of 70 min earlier than with s.c. insulin: 187, 129, 161 and 162 min vs. 227, 241 and 241 min (P < 0.0001). The dose-response relationships for serum insulin pharmacokinetics and glucodynamics were linear for both inhaled and s.c. insulin. Relative bioavailability (based on serum insulin levels) ranged from 11.5 to 12.2% for the four doses of inhaled insulin and relative biopotency (based on glucose infusion rates) was 10.0 to 16.5%, respectively. Dosing was well tolerated by all volunteers. CONCLUSION: This study demonstrates that inhalation of human insulin via a dry powder inhaler system provides a promising alternative route for administration of insulin.

Administration, Inhalation↗

The efficacy of a new salbutamol metered-dose powder inhaler in comparison with two other inhaler devices.

An open cross-over and randomized study was carried out in order to compare the efficacy and safety of inhaled salbutamol delivered from a new 50 microg dose(-1) metered-dose dry powder inhaler Taifun, and a commercially available 50 microg dose(-1) dry powder inhaler Turbuhaler, and a conventional 100 microg dose(-1) pressurized metered-dose inhaler with a spacer (pMDI+S). Twenty-one patients, aged 21-70 years, with stable asthma and with demonstrated reversibility upon inhalation of salbutamol were included in the study. On three separate study days, the patients received a total dose of 400 microg of salbutamol from the dry powder inhalers and a dose of 800 microg from the pMDI+S in a cumulative fashion: 1,1, 2 and 4 doses at 30 min intervals. The percent change in forced expiratory volume in 1 sec (FEV1), was used as the primary efficacy variable. Salbutamol inhaled via the Taifun produced greater bronchodilation than the other devices. The difference in percent change in FEV1 between the Taifun and the other devices was statistically significant at the two first dose levels, but diminished towards the higher doses when the plateau of the dose-response curve was reached. The estimated relative dose potency of the Taifun was approximately 1.9- and 2.8-fold compared to the Turbuhaler and the pMDI+S, respectively. The Taifun caused a slight, but clinically insignificant, decrease in serum potassium concentration. There were no significant changes in the other safety parameters (blood pressure, heart rate and electrocardiogram recordings) with any of the used devices. In conclusion, this study indicates that salbutamol inhaled via the Taifun is more potentthan salbutamol inhaled from the other devices tested. In practise, a smaller total dose of salbutamol from theTaifun is needed to produce a similar bronchodilatory response. All treatments were equally well tolerated.

Administration, Inhalation↗

Comparison of the aerosol velocity and spray duration of Respimat Soft Mist inhaler and pressurized metered dose inhalers.

Apart from particle size distribution, spray velocity is one of the most important aerosol characteristics that influence lung deposition of inhaled drugs. The time period over which the aerosol is released (spray duration) is also important for coordination of inhalation. Respimat Soft Mist Inhaler (SMI) is a new generation, propellant-free inhaler that delivers drug to the lung much more efficiently than pressurised metered dose inhalers (pMDIs). The objective of this study was to compare the velocity and spray duration of aerosol clouds produced by Respimat SMI with those from a variety of chlorofluorocarbon (CFC) and hydrofluoroalkane (HFA) pMDIs. All inhalers contained solutions or suspensions of bronchodilators. A videorecording method was used to determine the aerosol velocity. For spray duration, the time for generation of the Soft Mist by Respimat SMI was initially determined using three different methods (videorecording [techniques A and B], laser light diffraction and rotating disc). Videorecording was then used to compare the spray duration of Respimat SMI with those from the other inhalers. The Soft Mist produced by Respimat SMI moved much more slowly and had a more prolonged duration than aerosol clouds from pMDIs (mean velocity at a 10-cm distance from the nozzle: Respimat SMI, 0.8 m/sec; pMDIs, 2.0-8.4 m/sec; mean duration: Respimat SMI, 1.5 sec; pMDIs, 0.15-0.36 sec). These characteristics should result in improved lung and reduced oropharyngeal deposition, and are likely to simplify coordination of inhaler actuation and inhalation compared with pMDIs.

Aerosol Propellants↗