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Comparison of Mesh Nebulizer and Compressor Nebulizer With Pulmonary Function Test in Pediatric Asthma Attacks

Comparison of Mesh Nebulizer and Compressor Nebulizer on Pulmonary Function Test in Children Presenting With Asthma Attack: A Double-Blind Randomized Comparative Clinical Trial

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT06211998
Enrollment
80
Registered
2024-01-18
Start date
2022-08-01
Completion date
2023-08-01
Last updated
2024-01-18

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Asthma, Asthma in Children

Keywords

Asthma, Child, Compressor Nebulizer, Mesh Nebulizer, Pulmonary function test

Brief summary

Asthma is a worldwide health problem and is one of the most common chronic diseases of childhood in most countries. Symptoms begin before the age of 5 years in 80% of children with asthma, but the diagnosis is not always easy. The National Asthma Education and Prevention Program (NAEPP) expert panel recommends spirometry testing for children over 5 years of age. Spirometry measurements include forced vital capacity (FVC) and the forced expiratory volume in first second (FEV1). Airflow obstruction is defined as FEV1 reduced to less than 80 percent predicted and an FEV1/FVC ratio of less than 0.85 (85 percent). Reference values are based on age, height, sex, and race. Forced expiratory flow between 25 and 75 percent of vital capacity (FEF25-75) less than 65 percent correlates with reversible airflow obstruction in children with normal FEV1 and may be a useful measure in this subgroup. In the spirometry test, FEV1, FVC, FEF 25-75% values are valuable for the follow-up of asthma. While the FEV1/FVC ratio is above 80% in healthy children, it may decrease below 75% in diseases such as asthma. Likewise, FEV1 and FEF can be found to be low in 50-75% of asthma patients. In addition, these values can be used to determine the effectiveness of the inhaler given with the nebulizer given during the attack. Spirometry should be performed before and after administration of a bronchodilator to assess for reversibility (bronchodilator response \[BDR\]) even in children with a normal baseline FEV1 because many of these children will still have a BDR (both within the normal range and sometimes also supranormal) after treatment. Significant reversibility is indicated by an increase in FEV1 of ≥12 percent from baseline after administration of a short-acting bronchodilator. This definition for BDR positivity was established primarily in adults. An increase in FEV1 of ≥8 percent may be a better definition for BDR in children. Inhaled short-acting beta-2 agonists, particularly albuterol (salbutamol), are the standard emergent treatment for acute asthma exacerbations in all patients based upon adult data. It is recommended to be given every 20 minutes in case of need for repeated doses in mild and moderate asthma attacks. Different types of nebulizers can be used for inhaler therapy; they can convert drugs into vapor form with sound waves, compressed air or by using electrical energy. While compressor nebulizers convert the liquid drug into aerosol form with compressed air, mesh nebulizers convert the drug into aerosol form with the vibrations they create with the help of electrical energy. Mesh nebulizers are more effective than other types of nebulizers, and the amount left in the chamber is less than other models, and it can decompose the drug into smaller particles and reach the more extreme branches of the lung. In our study, the investigators aimed to determine which nebulizer type is more effective by comparing the effects of mesh nebulizer and compressor nebulizer on spirometry test in children presenting with asthma attack. Thus, the investigators planned to find the most comfortable and effective method for patients by determining the appropriate nebulization technique for patients.

Interventions

DEVICEGroup 1

Salbutamol inhaler, Omron® CompAIR Pro NE-C900 Compressor Nebulizer (Omron Healthcare Co., Ltd., Kyoto, Japan) was used in Group 1

DEVICEGroup 2

Salbutamol inhaler, Mesh nebulizer (Aerogen Solo®, Aerogen Ltd, Galway, Ireland) was used in Group 2

Sponsors

Berker Okay
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
QUADRUPLE (Subject, Caregiver, Investigator, Outcomes Assessor)

Eligibility

Sex/Gender
ALL
Age
7 Years to 15 Years
Healthy volunteers
No

Inclusion criteria

* Asthma attack patients who need inhaler therapy (salbutamol) * Patients aged 7-15 years and whose families gave consent for the study

Exclusion criteria

* Patients with neuromotor impairment * Patients with underlying chronic disease (neurological disease such as epilepsy or congenital heart disease) * Patients with obesity or malnutrition (to equalize drug dose efficacy) * Patients with those receiving adrenaline, budesonide or ipratropium bromide therapy * Patients who have used a long-acting bronchodilator in the last 12 hours or a short-acting bronchodilator in the last 2 hours * Patients with fever above 37.5°C * Patients with a saturation value below 92% at the time of admission * Patients with severe asthma attack * Patients with respiratory failure * Patients who had problems in performing the test (such as mental retardation, patient incompatibility) * Patients with diseases involving the chest muscles and those with chronic lung diseases (such as cystic fibrosis, bronchiectasis)

Design outcomes

Primary

MeasureTime frameDescription
Mesh nebulizer improves pulmonary function test results more effectively in children1 hourPulmonary function test results in children using mesh nebulizers may be improving more effectively. To compare mesh and compressor nebulizers, we planned to compare FEV1, FVC, FEV1/FVC, FEF 25-75 and PEF in pulmonary function testing.

Countries

Turkey (Türkiye)

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026