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Biomedical subjects

M E Broeders

Publications and source records attributed to M E Broeders.

3 recordsLinked to original sources

Resistivities of placebo and active Diskus inhalers compared.

OBJECTIVE: Verbal instruction and demonstration of inhalation technique are essential to enhance the effectiveness of inhalation therapy. Placebo devices are commonly used to instruct patients. It is not obvious that patients, who inhale with an adequate flow through an empty placebo Diskus, would also be able to do so with active inhalers containing a strip with powder. The presence of powder may result in a change in resistivity. We compared the resistivities of a placebo Diskus being empty; a powder filled Diskus inhaler and a Diskus inhaler with an empty blister. METHODS: A Diskus inhaler was placed in a box, which enabled measurement of pressure drop and flow rates. Ten placebo and ten Ventolin Diskus inhalers were measured. Twelve pressure- and flow-profiles were recorded through each device. After each simulated inhalation through a powder filled blister, a second inhalation was performed through the empty blister. The resistivity was calculated by pressure-flow equation. RESULTS: The resistivity of the empty placebo Diskus inhaler was slightly but significantly higher than both blister filled inhalers, with or without powder (0.0215 vs. 0.0211 and 0.0211 (kPa)(0.5) (l min(-1))(-1)) (P<0.001). CONCLUSION: Patients who are capable of generating sufficient flow through a placebo Diskus will surely be capable of generating equivalent flows through a Diskus inhaler containing a strip with active drug substance.

Air Pressure↗

Peak inspiratory flow rate and slope of the inhalation profiles in dry powder inhalers.

Aerosol delivery depends on device design and inhalation technique. In vitro device evaluations have shown that the emitted dose and fine particle mass of dry powder inhalers (DPIs) increase at high peak inspiratory flow rates (PIFR). Since the PIFR is mostly achieved after the release of the powder, slope of the pressure profile is also described as an important determinant. The aim of the present study was to assess whether the PIFR while using Diskus it and Turbuhaler it inhalers could be used to predict the slope of the inhalation pressure profile. In a group of 10 stable asthma patients and three groups (mild, moderate and severe) of 16 chronic obstructive pulmonary disease (COPD) patients, lung function was measured, and for each device, 18 inhalation profiles were recorded with the inhalation profile recorder during six sessions over 10 weeks. The values for the pressure slope and PIFR of both Diskus and Turbuhaler, were significantly correlated. The r-values were 0.865 and 0.882, respectively (p<0.01). Percentage explained variance was 74.8% for Diskus and 77.8% for Turbuhaler. Significant correlations were found between peak inspiratory flow rates and slopes. It has been shown for two different dry powder inhalers that peak inspiratory flow rate and slope correlate well in a wide range of patient groups.

Adult↗

Verapamil causes decreased diaphragm endurance but no decrease of nocturnal O(2) saturation in patients with chronic obstructive pulmonary disease.

OBJECTIVE: In animal studies, it has been shown that verapamil reduces strength and endurance of the diaphragm and inhibits the beneficial effects of theophylline. We examined whether the use of verapamil in patients with severe chronic obstructive pulmonary disease (COPD) who use theophylline leads to a deterioration of diaphragmatic function resulting in a decrease of nocturnal O(2) saturation. METHODS: A double-blind, placebo-controlled crossover study was designed in eight stabile severe COPD patients [forced expiratory volume in 1 s (FEV(1)) 0.9 +/- 0.1 l] taking theophylline. The doses of theophylline ranged from 600 mg daily to 1200 mg daily (7.0 mg/kg daily to 16.9 mg/kg daily). Nocturnal recordings, maximal respiratory muscle strength and endurance tests, lung function, blood pressure, electrocardiogram and arterial blood gas analysis were performed after 6 days of verapamil and after placebo. RESULTS: A significant decrease of the endurance time from 7.7 min to 6.4 min was found in the threshold loading test. However, the mean nocturnal saturation values did not change significantly: 89.8% and 89.6%, respectively. Results of pulmonary function tests, arterial blood gas analysis and routine blood samples also did not change. CONCLUSION: The decrease of the respiratory muscle endurance after the use of verapamil is in line with experiments in animal diaphragms. However, the nocturnal saturation did not change. This finding suggests that the effect found on diaphragm endurance is of no clinical significance and that verapamil can be given to COPD patients without risk of worsening nocturnal saturation. However, this must be confirmed by future larger scale studies.

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