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Effect of capsaicin inhalation on methacholine responsiveness in normal subjects.

It has been reported that capsaicin stimulates bronchial C-fibers to release neuropeptides and enhances bronchial responsiveness in animal studies. This study was conducted to examine the effect of inhaled capsaicin on bronchial responsiveness in humans. A provocative concentration of methacholine producing a 20% fall in forced expiratory volume in one second (PC20-FEV1) was measured before and one hour after, one minute inhalation of 15.6 microM capsaicin solution (capsaicin day) or saline (saline day) in seven normal subjects whose PC20-FEV1 values were 40 mg/ml or less. Geometric mean value of PC20-FEV1 measured one hour after saline inhalation following pretreatment methacholine challenge was 89.3 (GSEM, 1.69) mg/ml which was significantly (p = 0.018) greater than that of the pre-treatment methacholine challenge [19.1 (GSEM, 1.37) mg/ml] on a saline day. However, PC20-FEV1 was not different before and one hour after inhalation of capsaicin [18.1 (GSEM, 1.40) and 23.1 (GSEM, 1.80) mg/ml] on a capsaicin day. The PC20-FEV1 value of the post-treatment methacholine test was significantly (p = 0.0277) lower after capsaicin inhalation than after saline inhalation while the value of pre-treatment methacholine provocation was not different between capsaicin and saline days. Change of the post-treatment PC20-FEV1 from the pre-treatment value shown as doubling concentrations was 0.35 +/- 0.60 on a capsaicin day which was significantly lower than that (2.23 +/- 0.47) on a saline day. These results confirm the decreased responses to repeated inhalation of methacholine (methacholine tachyphylaxis) in normal subjects and indicate that capsaicin inhalation reduces the methacholine tachyphylaxis.

Administration, Inhalation↗

Determination of the relative bioavailability of nedocromil sodium to the lung following inhalation using urinary excretion.

OBJECTIVE: To determine the relative lung deposition of nedocromil sodium following inhalation by comparing the amounts of nedocromil sodium excreted in the urine after oral and inhaled dosing. METHODS: Ten healthy volunteers swallowed 8 mg of nedocromil and inhaled 4 x 2-mg doses on separate days. Urine was collected at 0.0, 0.5. 1.0, 2.0, 5.0, 24 h and 36 h after dosing. Urinary excretion of nedocromil was determined by high-performance liquid chromatography. RESULTS: A significantly greater amount of nedocromil was excreted following inhalation than after oral dosing. The mean with (SD) amount excreted at 0.5, 1.0 h and 24 h following inhalation of 4 x 2-mg doses was 41.0 (19.5), 93.0 (39.1) and 319.9 (138.1) microg. Corresponding values after oral administration of 8 mg of nedocromil were 2.1 (2.2), 6.3 (4.7) microg and 74.4 (58.8) microg, respectively. CONCLUSION: Nedocromil excreted in the urine at 0.5 h and 1.0 h after dosing is representative of the amount of drug delivered to the lungs. This method could be used to compare the relative bioavailability to the lungs following inhalation, and hence the performance of different inhaled products and inhalation techniques. The amount of nedocromil excreted in 24 h post-dose is representative of the emitted dose which was delivered to the body.

Administration, Inhalation↗

Effects of single and multiple inhalations of antigen on airway responsiveness in monkeys.

Airway hyperresponsiveness is an important and characteristic feature of asthma. In monkeys, we have reported that antigen (Ag) inhalation induces a prolonged airway eosinophilia, that chronic airway eosinophilia is associated with marked airway hyperresponsiveness, and that chronic Ag inhalations induce airway eosinophilia and hyperresponsiveness. In this study we have determined the effects of acute Ag inhalation(s) on airway responsiveness to obtain a protocol for the study of the mechanisms involved. Anesthetized and intubated adult male cynomolgus monkeys with a naturally occurring sensitivity to Ascaris suum extract were studied. Airway responsiveness (provocative concentration of nebulized and inhaled methacholine that induced a 100% increase in respiratory system resistance [Rrs] [PC100]; twofold decrease regarded as significant) and airway cell composition (bronchoalveolar lavage [BAL]) were determined 1 day before and 20 hours after a single inhalation of Ascaris extract, or 3 days before and 3 days after three alternate-day inhalations of Ascaris extract. The single inhalation of Ag (N = 7) caused an acute increase in Rrs (307% +/- 62%), an increase in BAL leukocytes, and a decrease in PC100 in three animals that was moderate (more than eightfold) in two animals. The mean +/- SE change in log PC100 was only -0.25 +/- 0.24. The multiple inhalations of Ag in the same animals caused acute increases in Rrs (178% +/- 48%, 380% +/- 83%, and 331% +/- 63%, respectively), an increase in BAL granulocytes, and a decrease in PC100 in six of seven animals (mean +/- SE change in log PC100 was -1.36 +/- 0.34) that was moderate in two and severe (more than 80-fold) in three animals.(ABSTRACT TRUNCATED AT 250 WORDS)

Administration, Inhalation↗

Association of ocular cataracts with inhaled and oral steroid therapy during long-term treatment of asthma.

BACKGROUND: Posterior subcapsular cataracts (PSCs) have been reported to occur in some asthmatic patients treated with inhaled steroids. METHODS: We studied the associations between the occurrence of PSCs and inhaled and oral steroid therapy in 48 adults in a cross-sectional survey by slit lamp. Accurate records of the patients' long-term usage of these drugs were available: 9.2 +/- 5.2 years for inhaled steroid and 9.1 +/- 9.3 years for prednisone (mean +/- SD). Their current inhaled steroid dosage averaged 1.46 +/- 0.85 mg/day (range, 0 to 3.2 mg/day). RESULTS: Twenty-seven percent of the group had PSCs. The occurrence of PSCs correlated with the current daily dose and duration of prednisone use (p = 0.002 and p = 0.01, respectively), but not with the dose or duration of inhaled steroid treatment. As judged by multiple logistic regression analysis, neither the particular inhaled steroid drug used, nor its daily dose or cumulative dose, nor the additional nonsteroidal risk factors for PSCs also present in some of these patients contributed significantly to their risk of developing PSCs. CONCLUSIONS: The findings do not exclude the possibility that inhaled steroid therapy might lead to PSCs if a person has an exceptionally high inherent susceptibility. However, in the asthmatic population at large, the risk appears negligible, even if high doses of inhaled steroid are administered.

Administration, Inhalation↗

Regular inhaled beta-agonist treatment in bronchial asthma.

89 subjects with stable asthma took part in a double-blind, placebo-controlled, randomized, crossover study of the effects of regular versus on-demand inhaled bronchodilator therapy. The subjects inhaled fenoterol or placebo by a dry powder delivery system for 24 weeks. Control of asthma was judged by daily morning and evening peak expiratory flow rates, symptom diaries, use of additional inhaled bronchodilator, and requirement for short courses of prednisone. Of 64 subjects who completed the trial, 57 showed a clear difference in degree of control of asthma between the fenoterol and placebo periods: in 17 (30% [95% confidence interval 18.4-43.4%]) asthma was better controlled during regular inhaled bronchodilator treatment, whereas in 40 (70% [56.6-81.6%]) control was better during placebo treatment with bronchodilator for symptom relief only. Mean airway responsiveness to methacholine increased slightly during the fenoterol period. The adverse effect of regular bronchodilator inhalation occurred not only among subjects who used a bronchodilator as sole treatment (2 were better and 10 were worse during regular bronchodilator treatment) but also among those who took inhaled corticosteroids (14 were better and 29 were worse). Thus, regular inhalation of a beta-sympathomimetic agent was associated with deterioration of asthma control in the majority of subjects. The trends to use of regular, higher doses or longer-acting inhaled beta-sympathomimetic treatment may be an important causal factor in the worldwide increase in morbidity from asthma.

Administration, Inhalation↗

Comparison of oral-steroid sparing by high-dose and low-dose inhaled steroid in maintenance treatment of severe asthma.

It is not clear whether high doses of inhaled steroids have a greater sparing effect than low doses on the requirement for systemic steroids. In a randomised, double-blind, multicentre study, we compared the effects of high-dose (1500 micrograms/day) and low-dose (300 micrograms/day) inhaled beclomethasone dipropionate (BDP) in patients with severe asthma requiring a daily oral prednisolone dose of 10-40 mg. During a 3-month run-in period, we tried to achieve optimum asthma control by means of oral steroid and inhaled BDP 300 micrograms/day. The patients were then allocated to high-dose (n = 71) or low-dose (n = 72) treatment by an independent observer who took into account various prognostic factors. BDP was administered by means of an aerosol inhaler with a spacer device. The dose of systemic steroid was reduced as much as possible during the 6-month study period while keeping the peak expiratory flow (PEF) constant and asthma clinically stable. There was no difference between the low-dose and high-dose treatment groups in the mean reduction in oral prednisolone dose achieved by the end of the study (5.2[ SD 7.9] vs 5.0 [9.4] mg/day). The maximum response to inhaled steroid was seen, however, only after several months' therapy in both groups. There were no differences between the groups in use of on-demand beta-agonist inhalations or in asthma symptoms, and PEF values were constant throughout the study. Both doses of BDP were well tolerated. High doses of inhaled steroid offer no further benefit over low doses in the maintenance treatment of severe steroid-dependent asthma when the inhaled steroid is administered with a spacer device.

Administration, Inhalation↗

The effects of an inhaled corticosteroid on oxygen radical production by bronchoalveolar cells after allergen or ozone in dogs.

Both ozone and allergen inhalation increase the capacity to produce oxygen radicals by bronchoalveolar lavage cells in dogs. The purpose of these studies was to determine whether inhaled corticosteroids inhibits these increases in oxygen radical production from bronchoalveolar lavage cells. Six random source dogs were studied after dry air or ozone inhalation (3 ppm, 30 min). Seven random source dogs were studied after diluent or allergen inhalation. The dogs inhaled budesonide (2.74 mg/day) or lactose powder, twice daily for 7 days before ozone and allergen. 90 min after ozone or dry air, and 24 h after Ascaris suum or diluent a bronchoalveolar lavage was carried out. Spontaneous luminol-enhanced chemiluminescence was measured from bronchoalveolar lavage cells (4 x 10(6) cells) for 10 min, followed by a measurement of phorbol myristate acetate (PMA 2.4 micromol/l) stimulated chemiluminescence for 10 min. Both ozone and allergen inhalation caused an increase in PMA stimulated chemiluminescence (P<0.05). Budesonide pretreatment inhibited ozone-induced (P<0.008), but not allergen-induced PMA stimulated chemiluminescence (P>0.90). Both ozone and allergen inhalation caused an increase in the bronchoalveolar lavage neutrophils. Budesonide pretreatment significantly inhibited the ozone-induced (P=0.007), but not the ascaris-induced neutrophil influx (P=0.93). These results demonstrate that ozone, but not allergen, stimulated oxygen radical release and neutrophil influx are attenuated by inhaled corticosteroids. This suggests that luminol-enhanced chemiluminescence from bronchoalveolar lavage cells measures oxygen radicals derived from neutrophils, and that ozone-and allergen-induced bronchoalveolar lavage neutrophilia are caused by different mechanisms.

Administration, Inhalation↗

Evaluation of the potassium channel activator BRL 38227 as an inhaled bronchodilator in the guinea-pig: contrast with nifedipine and salbutamol.

The potential of the potassium channel activator cromakalim and its active enantiomer BRL 38227 as inhaled bronchodilators has been evaluated in the guinea-pig, in comparison with nifedipine, salbutamol and aminophylline. Inhaled cromakalim and BRL 38227 prolonged the time before histamine-induced collapse in conscious guinea-pigs, BRL 38227 (ED50 250 to 500 micrograms/mL, roughly 10 to 20 micrograms per animal) being twice as potent as cromakalim. In anaesthetized guinea-pigs, BRL 38227 (inhaled and i.v.) and aminophylline (i.v.) caused similar percentage inhibitions of the increase in airways resistance and decrease in dynamic lung compliance elicited by histamine, whereas salbutamol (inhaled and i.v.) was more effective against resistance. Inhaled BRL 38227 and salbutamol were more potent against inhaled than against i.v. histamine. BRL 38227 inhibited the effects of i.v. and inhaled histamine by 67-78% when nebulized from solutions of 250 and 31 micrograms/mL respectively, but the lowest concentration that lowered blood pressure significantly was 500 micrograms/mL. In contrast, nifedipine had no effect on compliance and caused only a marginal (21%) inhibition of resistance at a dose (200 micrograms/kg i.v.) which lowered blood pressure by 44%. These results show that BRL 38227 is an effective bronchodilator when given by inhalation. It differs from salbutamol in its effects on airways dynamics, and its effect on lung compliance cannot be attributed to a pulmonary vasodilator effect. Furthermore, L-type calcium channels are not significantly involved in histamine-induced bronchoconstriction or therefore in the bronchodilator effect of BRL 38227.

Administration, Inhalation↗

Is inhalant use a risk factor for heroin and injection drug use among adolescents in the United States?

PURPOSE: We examined whether inhalant use was associated with heroin and injection drug use (IDU) among adolescents aged 12 to 17 in the United States. METHODS: Data were drawn from the 2002/2003 administrations of the National Survey on Drug Use and Health (NSDUH). We conducted logistic regression analyses to estimate associations of inhalant use with heroin use, heroin injection, and IDU, respectively, among adolescent drug users (N=8161). RESULTS: Approximately 30.9% of adolescents had ever used at least one illicit drug. More than one-fifth (22.2%) of adolescents were past-year or recent drug users. Among past-year adolescent drug users, 1.4% had progressed to heroin use and 1.2% reported IDU. Adolescents who had used inhalants and marijuana were 2.8 and 2.9 times as likely as adolescents who had used marijuana but not inhalants to report heroin use and any IDU, respectively. Adolescents who had used inhalants or other drugs but not marijuana were unlikely to use heroin. However, inhalant users, irrespective of their marijuana use histories, had greater odds of IDU than drug users who had not used inhalants. Adolescent drug users who were females, school dropouts, whites, or delinquents had significantly increased odds of heroin use and IDU. Cigarette smoking before the age of 15 was strongly associated with heroin use, and a history of foster care placement was associated with IDU. CONCLUSIONS: This national study of American adolescents identifies several subgroups of recent drug users, such as females, school dropouts, and youth who have used inhalants and marijuana, which have substantially increased odds of heroin use and IDU. Screening, prevention, and treatment interventions targeted to these groups might reduce medical and social complications of heroin use and IDU.

Administration, Inhalation↗

Inhaled nitric oxide attenuates apoptosis in ischemia-reperfusion injury of the rabbit lung.

BACKGROUND: Lung ischemia-reperfusion injury occurs after lung transplantation and various clinical procedures. Recently, apoptosis was reported to be induced after ischemia-reperfusion. We investigated the effects of inhaled nitric oxide (NO) on lung ischemia-reperfusion and apoptosis after ischemia-reperfusion. METHODS: As a control group, the left pulmonary hilum of Japanese white rabbits (n = 10) was occluded for 120 minutes and reperfused for 120 minutes. In the inhaled NO group (n = 10), 20 parts per million nitric oxide was inhaled during reperfusion. The sham-operated group was ligated at the right hilum and perfused by the left lung only for 120 minutes. The mean pulmonary arterial pressures and Pao2 were measured during reperfusion. The wet-to-dry weight ratio of the left lower lobe of the lung was calculated. The number of apoptotic cells was estimated using the terminal deoxynucleotidyl transferase-mediated dUTP-biotin nick-end labeling (TUNEL) technique. The TUNEL staining for a time course study was done using 15 control animals that were killed by exsanguination at 15, 30, and 60 minutes after reperfusion. RESULTS: After 120 minutes of reperfusion, the mean pulmonary arterial pressures in the control group and in the inhaled NO group were 23.0 +/- 3.2 mm Hg and 13.6 +/- 2.4 mm Hg, respectively (p < 0.01). At the same time point, the Pao2 in the control group and in the inhaled NO group were 46.1 +/- 15.9 mm Hg and 88.1 +/- 14.7 mm Hg, respectively (p < 0.01). The wet-to-dry weight ratios in the control group and in the inhaled NO group were 0.856 +/- 0.024 and 0.808 +/- 0.006, respectively (p < 0.01). Apoptotic cells appeared in the early phase of reperfusion (after 15 minutes' reperfusion). The number of apoptotic cells was significantly lower in the inhaled group than in the control group after 120 minutes' reperfusion (1.76% versus 2.87%, p < 0.01). CONCLUSIONS: Our results suggest that the inhaled NO prevents lung ischemia-reperfusion injury and attenuates apoptosis after reperfusion in the rabbit lung.

Administration, Inhalation↗

Prognostic implications of inhalation injury in burn patients in Tokyo.

Inhalation injury has recently emerged as the major cause of mortality in burn patients. However, the prognostic value of inhalation injury has not been thoroughly assessed in Japanese burn facilities. The aim of the present study was to evaluate the impact of inhalation injury on burn patients' mortality in Tokyo. Of 6416 patients admitted to 13 burn facilities of the Tokyo Burn Unit Association between 1984 and 2002; the 5560 eligible patients were included in this study (mean age, 40+/-20 years; male, 61.6%; mean partial- and full-thickness burn size, 10.7+/-13.0% and 9.6+/-20.5%). Of the 5560 patients, 1690 patients (30.4%) had experienced inhalation injury. The overall in-hospital mortality rate of the patients with inhalation injury was higher than that of those without inhalation injury (33.6% versus 8.1%, odds ratio, 5.72 [95% CI, 4.91-6.67]). The results of the multivariate analysis indicated that inhalation injury; full- and partial-thickness burn size, and age were independent predictors of outcome (relative risk, 2.58 [2.03-3.29], 1.10 [1.09-1.11], 1.06 [1.06-1.07], 1.05 [1.05-1.06], respectively). In conclusion, inhalation injury was the most important predictor of overall mortality among burned patients in Tokyo.

Adult↗

Respiratory management of inhalation injury.

Advances in the care of patients with major burns have led to a reduction in mortality and a change in the cause of their death. Burn shock, which accounted for almost 20 percent of burn deaths in the 1930s and 1940s, is now treated with early, vigorous fluid resuscitation and is only rarely a cause of death. Burn wound sepsis, which emerged as the primary cause of mortality once burn shock decreased in importance, has been brought under control with the use of topical antibiotics and aggressive surgical debridement. Inhalation injury has now become the most frequent cause of death in burn patients. Although mortality from smoke inhalation alone is low (0-11 percent), smoke inhalation in combination with cutaneous burns is fatal in 30 to 90 percent of patients. It has been recently reported that the presence of inhalation injury increases burn mortality by 20 percent and that inhalation injury predisposes to pneumonia. Pneumonia has been shown to independently increase burn mortality by 40 percent, and the combination of inhalation injury and pneumonia leads to a 60 percent increase in deaths. Children and the elderly are especially prone to pneumonia due to a limited physiologic reserve. It is imperative that a well organized, protocol driven approach to respiratory care of inhalation injury be utilized so that improvements can be made and the morbidity and mortality associated with inhalation injury be reduced.

Bronchoscopy↗

Inhalational and dermal exposures during spray application of biocides.

Data on inhalational and potential dermal exposures during spray application of liquid biocidal products were generated. On the one hand, model experiments with different spraying devices using fluorescent tracers were carried out to investigate the influence of parameters relevant to the exposure (e.g. spraying equipment, nozzle size, direction of application). On the other hand, measurements were performed at selected workplaces (during disinfection operations in food and feed areas; pest control operations for private, public and veterinary hygiene; wood protection and antifouling applications) after application of biocidal products such as Empire 20, Responsar SC, Omexan-forte, Actellic, Perma-forte; Fendona SC, Pyrethrum mist; CBM 8, Aldekol Des 03, TAD CID, Basileum, Basilit. The measurements taken in the model rooms demonstrated dependence of the inhalation exposure on the type of spraying device used, in the following order: "spraying with low pressure" < "airless spraying" < "fogging" indicating that the particle diameter of the released spray droplets is the most important parameter. In addition inhalation exposure was lowest when the spraying direction was downward. Also for the potential dermal exposure, the spraying direction was of particular importance: overhead spraying caused the highest contamination of body surfaces. The data of inhalational and potential dermal exposures gained through workplace measurements showed considerable variation. During spraying procedures with low-pressure equipments, dose rates of active substances inhaled by the operators ranged from 7 to 230 microg active substance (a.s.)/h. An increase in inhaled dose rates (6-33 mg a.s./h) was observed after use of high application volumes/time unit during wood protection applications indoors. Spraying in the veterinary sector using medium-pressure sprayers led to inhaled dose rates between 2 and 24mga.s./h. The highest inhaled dose rates were measured during fogging (114 mg a.s./h) and after-high-pressure applications in the antifouling sector (110-300 mg a.s./h). The potential dermal exposure of spray operators was lowest (dose rates from 0.2 to 7 mg a.s./h) in the areas of food and feed disinfection and private and public hygiene during spraying with low-pressure devices. During fogging, wood protection and antifouling applications, high-potential dermal exposures of the operators were determined. Dermal dose rates varied between 100 and 34,000 mg a.s./h.

Air Pollutants, Occupational↗

Emitted dose estimates from Seretide Diskus and Symbicort Turbuhaler following inhalation by severe asthmatics.

The dose emitted from dry powder inhalers may be inhalation flow-dependent. Using an ex vivo method, the Electronic Lung, we have measured the aerodynamic characteristics of the emitted dose for both active constituents from Seretide Diskus (salmeterol xinafoate 50 mcg; fluticasone propionate 500 mcg) and Symbicort Turbuhaler (formoterol 6 mcg; budesonide 200 mcg). Electronic inhalation profiles were collected from 20 severe asthmatics (mean PEFR 53% predicted) when they inhaled using a placebo Seretide Diskus and a placebo Symbicort Turbuhaler. These were replayed in the Electronic Lung with the respective active inhaler in situ. Mean(S.D.) peak inhalation flow rates (PIFR) through the Diskus and Turbuhaler were 94.7(32.9) and 76.8(26.2) l min(-1), respectively. From the Electronic Lung the Diskus inhalation profiles provided a mean(S.D.) fine particle dose (FPD) for fluticasone propionate and salmeterol of 20.4(4.8) and 18.4(4.4)% labelled dose. For Turbuhaler inhalation profiles the FPD was 23.1(12.9) and 20.7(11.1)% labelled dose for budesonide and formoterol, respectively. The linear (p < 0.001) relationships between FPD against PIFR for budesonide and formoterol were 3 (p = 0.002) and 2.8 (p = 0.007) times steeper than fluticasone propionate and salmeterol, respectively. The results highlight a more significant effect of inspiratory flow on variable dosage emission when using the Symbicort Turbuhaler compared with the Seretide Diskus.

Administration, Inhalation↗

Safety and efficacy of inhaled treprostinil as add-on therapy to bosentan in pulmonary arterial hypertension.

OBJECTIVES: This study evaluated the safety and efficacy of inhaled treprostinil as add-on therapy to oral bosentan in patients with pulmonary arterial hypertension (PAH). BACKGROUND: The addition of a long-acting prostacyclin analogue via the inhaled route might be a safe and effective strategy to optimize therapy in PAH patients on bosentan. METHODS: Twelve patients with symptomatic PAH despite bosentan received either 30 microg of inhaled treprostinil 4 times daily (n = 6) or 45 microg 4 times daily (n = 6), via an ultrasonic nebulizer. Six-min walk distance (6MWD), functional class, and hemodynamics were assessed at baseline and 12 weeks. RESULTS: One patient was excluded from analysis due to the subsequent finding of pulmonary capillary hemangiomatosis. In the remaining 11 patients, inhaled treprostinil was safe and well tolerated. Inhaled treprostinil was associated with an increase in 6MWD at 12 weeks (baseline 339 +/- 86, 12 week, 1 h post-inhalation 406 +/- 121 m, 67-m change, p = 0.01). An improvement in 6MWD of 49 m from baseline was noted during the trough period, just before inhalation of treprostinil (p = 0.009). The 6MWD improvement of at least 10% was noted in 1 of 6 patients receiving 30 microg versus 5 of 6 receiving 45 microg. Over 12 weeks, significant decreases were noted in mean pulmonary arterial pressure (-10%) and in pulmonary vascular resistance (-26%). Functional class improved from III to II in 9 of 11 patients. CONCLUSIONS: This trial suggests that inhaled treprostinil is safe, well tolerated, and associated with significant improvements in exercise capacity, functional class, and pulmonary hemodynamics in symptomatic patients with PAH on bosentan.

Administration, Inhalation↗

Improved refill persistence with fluticasone propionate and salmeterol in a single inhaler compared with other controller therapies.

BACKGROUND: Improved adherence to inhaled corticosteroids (ICSs) has also been associated with decreased asthma-associated morbidity and mortality. OBJECTIVE: The purpose of this study was to assess patient medication refill persistence with fluticasone propionate (FP) and salmeterol combination in a single inhaler (FSC), FP and salmeterol in combination from 2 separate inhalers, FP and montelukast in combination, FP as monotherapy, and montelukast as monotherapy. METHODS: We performed a retrospective, observational, 24-month (12-month baseline and 12-month follow-up) database study using medical and pharmacy claims from a large managed care organization. We identified 2511 subjects 12 years of age or older with a claim for asthma (International Classification of Diseases, Ninth Revision: 493.XX): 563 patients receiving FSC, 224 receiving FP plus salmeterol, 75 receiving FP plus montelukast, 798 receiving FP only, and 776 receiving montelukast only. Refill rates of FP, as a measure of adherence, were compared for each FP-containing cohort during the 12-month follow-up period. In addition, refill rates were compared between FSC, an inhaler, and montelukast, an oral medication. RESULTS: Twelve-month baseline asthma medication use and patient demographics were comparable among cohorts. Patients in the FSC cohort obtained significantly more refills compared with the number of FP refills in the other FP-containing cohorts (4.06 for FSC vs 2.35 for FP plus salmeterol, 1.83 for FP plus montelukast, and 2.27 for FP alone) over the 12-month follow-up period. In addition, patients taking FSC had similar refill persistence compared with patients taking the oral leukotriene modifier montelukast (4.51). CONCLUSION: FSC might increase ICS refill persistence compared with FP alone in a single inhaler, FP in combination with salmeterol from 2 separate inhalers, and FP in combination with montelukast. In addition, FSC in a dry powdered inhaler had similar refill rates compared with an oral asthma agent, montelukast. Use of a single inhaler containing both an ICS (FP) and a long-acting bronchodilator (salmeterol) might increase the likelihood that patients are getting more optimal ICS therapy, as well as the benefits from the long-acting bronchodilator, with patient adherence comparable to an oral agent.

Acetates↗

Dosimeter methacholine challenge: comparison of maximal versus submaximal inhalations.

BACKGROUND: Deep inhalation has bronchodilating and bronchoprotective effects, particularly in subjects who are normal or have mild airway hyperresponsiveness (AHR). We have anecdotally observed that the 5 breath to total lung capacity (TLC) dosimeter method reduced the response to methacholine in some subjects with mild AHR. OBJECTIVE: To compare prospectively submaximal inhalations with TLC inhalations during the dosimeter methacholine challenge. METHODS: Sixteen subjects with asthma and a methacholine PC 20 <8 mg/mL performed 2 methacholine challenges in random order; the standard dosimeter method was compared with a modified dosimeter challenge in which methacholine inhalations were performed to approximately 50% to 60% below TLC. RESULTS: The standard methacholine challenge PC 20 was almost twice that obtained with the modified submaximal inhalation method (geometric mean PC 20, 5.2 mg/mL vs 2.8 mg/mL, respectively; P = 0.0216). In the 5 subjects with the mildest AHR, there was a 2.5-fold to 14-fold difference in PC 20 between methods. The standard (full TLC) PC 20 s were falsely negative (>16 mg/mL) in these 5 subjects with current asthma, 4 of whom required inhaled corticosteroids. CONCLUSION: A submaximal inhalation dosimeter methacholine challenge results in a significantly lower PC 20 compared with the standard 5-breath dosimeter method. This effect is limited to the mildly responsive group, probably because of the bronchoprotective effect of the deep inhalation during the standard method, and results in false-negative tests in some subjects.

Administration, Inhalation↗

Use of nitrite inhalants ("poppers") among American youth.

PURPOSE: We examined the patterns and correlates of nitrite inhalant use among adolescents aged 12 to 17 years. METHODS: Study data were drawn from the 2000 and 2001 National Household Surveys on Drug Abuse. Logistic regression was used to identify the characteristics associated with nitrite inhalant use. RESULTS: Among adolescents aged 12 to 17 years, 1.5% reported any lifetime use of nitrite inhalants. The prevalence of lifetime nitrite inhalant use increased to 12% and 14% among adolescents who were dependent on alcohol and any drug in the past year, respectively. Many nitrite inhalant users used at least three other types of inhalants (68%) and also met the criteria for alcohol (33%) and drug (35%) abuse or dependence. Increased odds of nitrite inhalant use were associated with residing in nonmetropolitan areas, recent utilization of mental health services, delinquent behaviors, past year alcohol and drug abuse and dependence, and multi-drug use. CONCLUSIONS: Adolescents who had used nitrite inhalants at least once in their lifetime tend to engage in delinquent activities and report co-occurring multiple drug abuse and mental health problems in the past year.

Administration, Inhalation↗