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Impulse Oscillometry Measurements in Severe Eosinophilic Asthmatics Before and After Anti-IL-5 Factor Initiation

How Much Severe is the Severe Asthma of Patients Who Will be Medicated With Mepolizumab? Μeasurement of Respiratory Mechanics by Means of Impulse Oscillometry in Severe Eosinophilic Asthmatics Before and After Mepolizumab Initiation

Status
Completed
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT05147155
Acronym
IMPOSE
Enrollment
130
Registered
2021-12-07
Start date
2021-04-19
Completion date
2023-10-23
Last updated
2025-02-24

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

Conditions

Severe Asthma

Brief summary

Eosinophilic inflammation in the small airways of patients with severe asthma is considered to be an important marker of disease severity. In clinical trials, treatment with mepolizumab reduces exacerbation rates by almost a half along with modest improvements in symptom scores and forced expiratory volume in 1 s (FEV1) early after the first month of commencing mepolizumab treatment. However, there is an apparent discrepancy between major patient-reported outcomes and lung function that should be explored. It has recently been reported that mepolizumab improves small airway function in severe eosinophilic asthma as detected by multiple-breath nitrogen washout test. The improvement in small airway function was seen rapidly after the first mepolizumab injection and was associated with a sustained response in the majority of patients. However, gaps in knowledge about the choice of device, gas, and standardization across systems are key issues leading the committee to conclude that multiple-breath nitrogen washout test is not ready for use as a clinical trial endpoint in asthmatics. The investigators hypothesize that early improvement in small airway function may be a significant contributor to the therapeutic response of anti-IL-5 monoclonal antibody therapy in patients with severe uncontrolled eosinophilic asthma. The investigators speculate that SAD could be effectively evaluated using IOS. Consequently, this study could lead to novel SAD subtypes with possible clinical relevance in the context of treatment with anti-IL-5 factor. The investigators hypothesize that healthy individuals and patients with severe controlled asthma would disclose a lesser extent of SAD than patients with severe uncontrolled eosinophilic asthma with or without fixed airway obstruction.

Detailed description

Asthma is an inflammatory condition impacting the entire bronchial tree, with small airways playing a crucial role. Small airways, defined as those less than 2 mm in diameter, are significantly involved in all stages of asthma, particularly severe cases. This region, known as the silent zone, is often linked with poor asthma control, increased severity, and a higher risk of exacerbations. Structural changes at the peribronchiolar level, such as increased stiffness due to remodeling, contribute to the disease's pathogenesis. These changes are associated with more frequent exacerbations and poorer quality of life. Small airways account for a significant portion of airway resistance, particularly in obstructive diseases like asthma. For example, resistance in small airways can constitute up to 51% of total airway resistance in severe asthma cases. Despite their importance, measuring small airway inflammation and dysfunction remains challenging. Various tests, including spirometry and impulse oscillometry (IOS), are used, but each has limitations in detecting and evaluating small airway disease (SAD). Methods More refined techniques like IOS are employed to better understand and treat SAD. IOS measures airway resistance and reactance during breathing without patient effort, offering a detailed analysis more sensitive to small airway changes than traditional spirometry. This technique is crucial for identifying different subtypes of SAD and is associated with asthma severity stages and control. In clinical practice, forced oscillation technique (FOT) devices, including newer models that utilize multiple sound frequencies, are becoming popular for assessing respiratory impedance in diseases like asthma. These devices, particularly IOS, help differentiate between small and large airway obstructions and are easier to use in diverse patient groups, including the elderly and children. Research Focus Recent studies have highlighted the effectiveness of new treatments like mepolizumab in improving small airway function in severe eosinophilic asthma. This improvement, detectable through methods like the multiple-breath nitrogen washout test, occurs quickly after treatment begins and is sustained over time. However, gaps in standardization and device choice remain challenges. Study Objectives and Design The upcoming study will investigate early changes in respiratory mechanics using IOS in patients with severe eosinophilic asthma starting on mepolizumab. This 2-year prospective cohort study will involve 40 patients with severe asthma, matched controls for age and gender, and will assess various respiratory parameters and asthma control metrics. Measurements will be taken at multiple points to gauge the treatment's effectiveness and its impact on lung function. Ethical Considerations The study will adhere to ethical standards, with informed consent obtained from all participants and approval from relevant ethical bodies. The goal is to enroll patients efficiently and effectively, leveraging networks of healthcare providers and educational programs to support patient recruitment and data collection. Conclusion This research aims to enhance our understanding of SAD in severe asthma and improve treatment outcomes through innovative diagnostic techniques and targeted therapies. By focusing on the small airways, which play a significant role in asthma pathology but are challenging to study, this work could lead to more effective management strategies for those most affected by this condition.

Interventions

BIOLOGICALMepolizumab

This will be a 2-year prospective study. Patients with uncontrolled severe asthma will receive mepolizumab according to standard of care and best clinical practice, which will be administered as a 100-mg subcutaneous dose every four weeks.

Sponsors

University of Thessaly
Lead SponsorOTHER

Study design

Observational model
COHORT
Time perspective
PROSPECTIVE

Eligibility

Sex/Gender
ALL
Age
18 Years to 82 Years
Healthy volunteers
Yes

Inclusion criteria

* Written informed consent * Male or female outpatient aged 18 to 82 years inclusive * History of bronchial asthma for at least six months as defined by ATS criteria. * The patients will be required to have one or more of the following objective physiological criteria: positive results on methacholine or mannitol challenge during the previous year, bronchodilator reversibility to 400 mg of inhaled Salbutamol of FEV1 ≥12% and 200ml or peak flow variability of ≥20% over two weeks. * Diagnosis of severe asthma, defined as asthma that requires treatment with high dose inhaled corticosteroids plus a second controller and/or systemic corticosteroids to prevent it from becoming uncontrolled or that remains uncontrolled despite this therapy. * All patients will be medicated with at least 880 μg of fluticasone propionate or the equivalent by inhalation per day and at least three months of treatment with an additional controller. Patients will be allowed to continue their anti-asthma therapy throughout the study. * Patients should have uncontrolled asthma commencing mepolizumab treatment, based on investigator assessment, including one or both of the following: * Poor symptom control (frequent symptoms or reliever use, activity limited by asthma, night waking due to asthma), defined as ACQ consistently ⩾1.5 or ACT\<20. * Frequent exacerbations (≥2/year) requiring oral corticosteroids, or severe exacerbations (≥1/year) requiring hospitalization or burst of systemic corticosteroids (≥3 days). * All patients will have an eosinophil count of at least 150 cells per microliter in the peripheral blood at screening or at least 300 cells per microliter at some time during the previous year.

Exclusion criteria

Principal

Design outcomes

Primary

MeasureTime frameDescription
Airway Resistance at 5 Hz (R5) at Baseline (Pre-mepolizumab Initiation)0 monthsMeasurements of R5 at baseline (pre-mepolizumab initiation). R5 was assessed using impulse oscillometry. The values are reported in kPa/L/s and were analyzed following the guidelines of the European Respiratory Society
Airway Resistance at 20 Hz (R20) at Baseline0 monthsMeasurement of R20 at baseline - mepolizumab initiation. R20 was measured using impulse oscillometry, representing airway resistance at 20 Hz. Values are reported in kPa/L/s, and assessments were conducted according to the standards outlined by the European Respiratory Society.
Difference Between Airway Resistance at 5 Hz (R5) and 20 Hz (R20) at Baseline / (R5-R20) at Baseline0 monthsMeasurement of R5-R20 at baseline. R5-R20 represents the difference between airway resistance at 5 Hz (R5) and 20 Hz (R20), measured using impulse oscillometry. This measure reflects peripheral airway resistance. Assessments were conducted at baseline, and values are reported in kPa/L/s following guidelines from the European Respiratory Society
Reactance Area (AX) at Baseline0 monthsMeasurement of AX at baseline. AX, the area of reactance derived from impulse oscillometry, represents the elastic and inertial properties of the lungs. Measurements were taken at baseline using standard protocols. Values are reported in kPa/L and analyzed following guidelines from the European Respiratory Society.
Resonant Frequency (Fres) at Baseline0 monthsMeasurement of Fres at Baseline. Fres, the resonant frequency, is the point where the reactance of the respiratory system equals zero, indicating the balance between elastic and inertial forces in the lungs. Measurements were taken at baseline using impulse oscillometry. Values are reported in Hz and analyzed following guidelines from the European Respiratory Society
Respiratory Reactance at 5 Hz (X5) at Baseline0 monthsMeasurement of X5 at Baseline. X5, the respiratory reactance at 5 Hz, is a measure of the elastic properties of the lungs and the peripheral airways. It indicates how easily the lungs expand and contract during breathing. Measurements were taken at baseline using impulse oscillometry, with values expressed in kPa/L. Assessments followed European Respiratory Society guidelines. X5 is negative because the lungs store energy due to their elasticity, which results in a delayed response of airflow relative to pressure changes. This behavior is characteristic of a capacitive system, where elastic forces dominate at low frequencies. A less negative X5 means that the lung's elastic recoil is reduced, leading to decreased resistance to expansion.
Airway Resistance at 5 Hz (R5) at Week 4.4 weeksEstimate the airway resistance measured at the 5 Hz frequency (R5) after four weeks from mepolizumab initiation (only severe uncontrolled asthma patients received mepolizumab). R5 was assessed using impulse oscillometry. The values are reported in kPa/L/s and were analyzed following the guidelines of the European Respiratory Society.
Airway Resistance at 20 Hz (R20) at Week 4.4 weeksEstimate the airway resistance measured at the 20 Hz frequency (R20) after four weeks from mepolizumab initiation. R20 was measured using impulse oscillometry, representing airway resistance at 20 Hz. Values are reported in kPa/L/s, and assessments were conducted according to the standards outlined by the European Respiratory Society
Difference Between Airway Resistance at 5 Hz (R5) and 20 Hz (R20) at Week 4/ R5-R20 at Week 4.4 weeksAfter four weeks of mepolizumab initiation, estimate the small airway resistance (R5- R20). R5-R20 represents the difference between airway resistance at 5 Hz (R5) and 20 Hz (R20), measured using impulse oscillometry. This measure reflects peripheral airway resistance. Assessments were conducted after 4 weeks from mepolizumab initiation, and values are reported in kPa/L/s following guidelines from the European Respiratory Society
Reactance Area (AX) at Week 44 weeksEstimate the AX after four weeks from mepolizumab initiation. AX, the area of reactance derived from impulse oscillometry, represents the elastic and inertial properties of the lungs. Measurements were taken at Week 4 using standard protocols. Values are reported in kPa/L and analyzed following guidelines from the European Respiratory Society.
Resonant Frequency (Fres) at Week 4.4 weeksEstimate Fres after four weeks from mepolizumab initiation. Fres, the resonant frequency, is the point at which the reactance of the respiratory system equals zero, reflecting the balance between the elastic and inertial forces of the lungs. Measurements were taken at Week 4 using impulse oscillometry. Values are expressed in Hz and analyzed in accordance with European Respiratory Society guidelines.
Respiratory Reactance at 5 Hz (X5) at Week 4.4 weeksEstimate X5 after four weeks from mepolizumab initiation. X5, the respiratory reactance at 5 Hz, is a measure of the elastic properties of the lungs and peripheral airways, reflecting the ability of the respiratory system to expand and contract. Measurements were taken at Week 4 using impulse oscillometry. Values are reported in kPa/L and were analyzed according to European Respiratory Society guidelines. X5 is negative because the lungs store energy due to their elasticity, which results in a delayed response of airflow relative to pressure changes. This behavior is characteristic of a capacitive system, where elastic forces dominate at low frequencies. A less negative X5 means that the lung's elastic recoil is reduced, leading to decreased resistance to expansion.
Airway Resistance at 5 Hz (R5) at Week 1212 weeksEstimate the airway resistance measured at the 5 Hz frequency (R5) after 12 weeks from the mepolizumab initiation. R5 was assessed using spirometry with impulse oscillometry. The values are reported in kPa/L/s and were analyzed following the guidelines of the European Respiratory Society.
Airway Resistance at 20 Hz (R20) at Week 1212 weeksEstimate the airway resistance measured at the 20 Hz frequency (R20) after 12 weeks from mepolizumab initiation. R20 was measured using impulse oscillometry, representing airway resistance at 20 Hz. Values are reported in kPa/L/s, and assessments were conducted according to the standards outlined by the European Respiratory Society.
Difference Between Airway Resistance at 5 Hz (R5) and 20 Hz (R20) at Week 12 / R5-R20 at Week 1212 weeksEstimate small airway resistance (R5-R20) after 12 weeks from mepolizumab initiation. R5-R20 represents the difference between airway resistance at 5 Hz (R5) and 20 Hz (R20), measured using impulse oscillometry. This measure reflects peripheral airway resistance. Assessments were conducted at week 12 after mepolizuamb initiation, and values are reported in kPa/L/s following guidelines from the European Respiratory Society.
Reactance Area (AX) at Week 1212 weeksEstimate the AX after 12 weeks from mepolizumab initiation. AX, the area of reactance derived from impulse oscillometry, represents the elastic and inertial properties of the lungs. Measurements were taken at Week 12 using standard protocols. Values are reported in kPa/L and analyzed following guidelines from the European Respiratory Society.
Resonant Frequency (Fres) at Week 1212 weeksEstimate Fres after12 weeks from mepolizumab initiation. Fres, the resonant frequency, is the point at which the reactance of the respiratory system equals zero, reflecting the balance between the elastic and inertial forces of the lungs. Measurements were taken at Week 4 using impulse oscillometry. Values are expressed in Hz and analyzed in accordance with European Respiratory Society guidelines.
Respiratory Reactance at 5 Hz (X5) at Week 1212 weeksEstimate X5 after 12 weeks from mepolizumab initiation. X5, the respiratory reactance at 5 Hz, measures the elastic properties of the lungs and peripheral airways, reflecting the ability of the respiratory system to expand and contract. Measurements were taken at Week 12 using impulse oscillometry. Values are reported in kPa/L and analyzed according to European Respiratory Society guidelines. X5 is negative because the lungs store energy due to their elasticity, which results in a delayed response of airflow relative to pressure changes. This behavior is characteristic of a capacitive system, where elastic forces dominate at low frequencies. A less negative X5 means that the lung's elastic recoil is reduced, leading to decreased resistance to expansion.
Airway Resistance at 5 Hz (R5) at Week 26.26 weeksEstimate the airway resistance measured at the 5 Hz frequency (R5) after 26 weeks from the initiation of mepolizumab. R5 was assessed using spirometry with impulse oscillometry. The values are reported in kPa/L/s and were analyzed following the guidelines of the European Respiratory Society.
Airway Resistance at 20 Hz (R20) at Week 26.26 weeksEstimate the airway resistance measured at the 20 Hz frequency (R20) after 26 weeks from mepolizumab initiation. R20 was measured using impulse oscillometry, representing airway resistance at 20 Hz. Values are reported in kPa/L/s, and assessments were conducted according to the standards outlined by the European Respiratory Society.
Difference Between Airway Resistance at 5 Hz (R5) and 20 Hz (R20) at Week 26 / R5-R20 at Week 26.26 weeksEstimate the small airway resistance (R5-R20) after 26 weeks from mepolizumab initiation. R5-R20 represents the difference between airway resistance at 5 Hz (R5) and 20 Hz (R20), measured using impulse oscillometry. This measure reflects peripheral airway resistance. Assessments were conducted at Week 26 after mepolizumab initiation, and values are reported in kPa/L/s following guidelines from the European Respiratory Society
Reactance Area (AX) at Week 26.26 weeksEstimate AX after 26 weeks from mepolizumab initiation. AX, the area of reactance derived from impulse oscillometry, represents the elastic and inertial properties of the lungs. Measurements were taken at Week 26 using standard protocols. Values are reported in kPa/L and analyzed following guidelines from the European Respiratory Society.
Resonant Frequency (Fres) at Week 26.26 weeksEstimate Fres after 26 weeks from mepolizumab initiation. Fres, the resonant frequency, is the point at which the reactance of the respiratory system equals zero, reflecting the balance between the elastic and inertial forces of the lungs. Measurements were taken at Week 26 using impulse oscillometry. Values are expressed in Hz and analyzed in accordance with European Respiratory Society guidelines.
Respiratory Reactance at 5 Hz (X5) at Week 26.26 weeksEstimate X5 after 26 weeks from mepolizumab initiation. X5, the respiratory reactance at 5 Hz, reflects the elastic properties of the lungs and peripheral airways, indicating the ability of the respiratory system to expand and contract. Measurements were taken at Week 26 using impulse oscillometry. Values are reported in kPa/L and were analyzed following European Respiratory Society guidelines. X5 is negative because the lungs store energy due to their elasticity, which results in a delayed response of airflow relative to pressure changes. This behavior is characteristic of a capacitive system, where elastic forces dominate at low frequencies. A less negative X5 means that the lung's elastic recoil is reduced, leading to decreased resistance to expansion.

Countries

Greece

Participant flow

Participants by arm

ArmCount
Severe Asthma Patients
The sample will consist of 40 patients between 18 and 82 years of age with uncontrolled severe eosinophilic asthma despite receiving high dose ICS/LABA combination therapy who will receive mepolizumab, which will be administered as a 100-mg subcutaneous dose every four weeks Mepolizumab: This will be a 2-year prospective study. Patients with uncontrolled severe asthma will receive mepolizumab according to standard of care and best clinical practice, which will be administered as a 100-mg subcutaneous dose every four weeks.
40
Control Group 1
Control group 1 will be a set of 50 healthy individuals matched for age and gender
50
Control Group 2
Control group 2 will be a set of 40 patients with severe well-controlled asthma requiring high dose ICS/LABA combination therapy from becoming uncontrolled, as previously defined, matched for age and gender.
40
Total130

Baseline characteristics

CharacteristicSevere Asthma PatientsControl Group 1Control Group 2Total
Age, Categorical
<=18 years
0 Participants0 Participants0 Participants0 Participants
Age, Categorical
>=65 years
10 Participants10 Participants10 Participants30 Participants
Age, Categorical
Between 18 and 65 years
30 Participants40 Participants30 Participants100 Participants
Age, Continuous60 years
STANDARD_DEVIATION 12
58 years
STANDARD_DEVIATION 11
56 years
STANDARD_DEVIATION 14
58 years
STANDARD_DEVIATION 13
Early-onset asthma7 Participants0 Participants1 Participants8 Participants
Ethnicity (NIH/OMB)
Hispanic or Latino
0 Participants0 Participants0 Participants0 Participants
Ethnicity (NIH/OMB)
Not Hispanic or Latino
40 Participants50 Participants40 Participants130 Participants
Ethnicity (NIH/OMB)
Unknown or Not Reported
0 Participants0 Participants0 Participants0 Participants
Race and Ethnicity Not Collected0 Participants
Race (NIH/OMB)
American Indian or Alaska Native
0 Participants0 Participants0 Participants0 Participants
Race (NIH/OMB)
Asian
0 Participants0 Participants0 Participants0 Participants
Race (NIH/OMB)
Black or African American
0 Participants0 Participants0 Participants0 Participants
Race (NIH/OMB)
More than one race
0 Participants0 Participants0 Participants0 Participants
Race (NIH/OMB)
Native Hawaiian or Other Pacific Islander
0 Participants0 Participants0 Participants0 Participants
Race (NIH/OMB)
Unknown or Not Reported
0 Participants0 Participants0 Participants0 Participants
Race (NIH/OMB)
White
40 Participants50 Participants40 Participants130 Participants
Region of Enrollment
Greece
40 participants50 participants40 participants130 participants
Sex: Female, Male
Female
27 Participants35 Participants24 Participants86 Participants
Sex: Female, Male
Male
13 Participants15 Participants16 Participants44 Participants

Adverse events

Event typeEG000
affected / at risk
EG001
affected / at risk
EG002
affected / at risk
deaths
Total, all-cause mortality
0 / 400 / 500 / 40
other
Total, other adverse events
0 / 400 / 500 / 40
serious
Total, serious adverse events
0 / 400 / 500 / 40

Outcome results

Primary

Airway Resistance at 20 Hz (R20) at Baseline

Measurement of R20 at baseline - mepolizumab initiation. R20 was measured using impulse oscillometry, representing airway resistance at 20 Hz. Values are reported in kPa/L/s, and assessments were conducted according to the standards outlined by the European Respiratory Society.

Time frame: 0 months

ArmMeasureValue (MEAN)Dispersion
Severe Asthma PatientsAirway Resistance at 20 Hz (R20) at Baseline0.4 kPa/L/sStandard Deviation 0.1
Control Group 1Airway Resistance at 20 Hz (R20) at Baseline0.3 kPa/L/sStandard Deviation 0.07
Control Group 2Airway Resistance at 20 Hz (R20) at Baseline0.3 kPa/L/sStandard Deviation 0.09
Primary

Airway Resistance at 20 Hz (R20) at Week 12

Estimate the airway resistance measured at the 20 Hz frequency (R20) after 12 weeks from mepolizumab initiation. R20 was measured using impulse oscillometry, representing airway resistance at 20 Hz. Values are reported in kPa/L/s, and assessments were conducted according to the standards outlined by the European Respiratory Society.

Time frame: 12 weeks

ArmMeasureValue (MEAN)Dispersion
Severe Asthma PatientsAirway Resistance at 20 Hz (R20) at Week 120.4 kPa/L/sStandard Deviation 0.1
Control Group 1Airway Resistance at 20 Hz (R20) at Week 120.3 kPa/L/sStandard Deviation 0.09
Control Group 2Airway Resistance at 20 Hz (R20) at Week 120.3 kPa/L/sStandard Deviation 0.07
Primary

Airway Resistance at 20 Hz (R20) at Week 26.

Estimate the airway resistance measured at the 20 Hz frequency (R20) after 26 weeks from mepolizumab initiation. R20 was measured using impulse oscillometry, representing airway resistance at 20 Hz. Values are reported in kPa/L/s, and assessments were conducted according to the standards outlined by the European Respiratory Society.

Time frame: 26 weeks

ArmMeasureValue (MEAN)Dispersion
Severe Asthma PatientsAirway Resistance at 20 Hz (R20) at Week 26.0.4 kPa/L/sStandard Deviation 0.1
Control Group 1Airway Resistance at 20 Hz (R20) at Week 26.0.3 kPa/L/sStandard Deviation 0.09
Control Group 2Airway Resistance at 20 Hz (R20) at Week 26.0.3 kPa/L/sStandard Deviation 0.07
Primary

Airway Resistance at 20 Hz (R20) at Week 4.

Estimate the airway resistance measured at the 20 Hz frequency (R20) after four weeks from mepolizumab initiation. R20 was measured using impulse oscillometry, representing airway resistance at 20 Hz. Values are reported in kPa/L/s, and assessments were conducted according to the standards outlined by the European Respiratory Society

Time frame: 4 weeks

ArmMeasureValue (MEAN)Dispersion
Severe Asthma PatientsAirway Resistance at 20 Hz (R20) at Week 4.0.4 kPa/L/sStandard Deviation 0.09
Control Group 1Airway Resistance at 20 Hz (R20) at Week 4.0.3 kPa/L/sStandard Deviation 0.09
Control Group 2Airway Resistance at 20 Hz (R20) at Week 4.0.3 kPa/L/sStandard Deviation 0.07
Primary

Airway Resistance at 5 Hz (R5) at Baseline (Pre-mepolizumab Initiation)

Measurements of R5 at baseline (pre-mepolizumab initiation). R5 was assessed using impulse oscillometry. The values are reported in kPa/L/s and were analyzed following the guidelines of the European Respiratory Society

Time frame: 0 months

ArmMeasureValue (MEAN)Dispersion
Severe Asthma PatientsAirway Resistance at 5 Hz (R5) at Baseline (Pre-mepolizumab Initiation)0.51 kPa/L/sStandard Deviation 0.25
Control Group 1Airway Resistance at 5 Hz (R5) at Baseline (Pre-mepolizumab Initiation)0.39 kPa/L/sStandard Deviation 0.12
Control Group 2Airway Resistance at 5 Hz (R5) at Baseline (Pre-mepolizumab Initiation)0.43 kPa/L/sStandard Deviation 0.16
Primary

Airway Resistance at 5 Hz (R5) at Week 12

Estimate the airway resistance measured at the 5 Hz frequency (R5) after 12 weeks from the mepolizumab initiation. R5 was assessed using spirometry with impulse oscillometry. The values are reported in kPa/L/s and were analyzed following the guidelines of the European Respiratory Society.

Time frame: 12 weeks

ArmMeasureValue (MEAN)Dispersion
Severe Asthma PatientsAirway Resistance at 5 Hz (R5) at Week 120.51 kPa/L/sStandard Deviation 0.25
Control Group 1Airway Resistance at 5 Hz (R5) at Week 120.3 kPa/L/sStandard Deviation 0.1
Control Group 2Airway Resistance at 5 Hz (R5) at Week 120.43 kPa/L/sStandard Deviation 0.16
Primary

Airway Resistance at 5 Hz (R5) at Week 26.

Estimate the airway resistance measured at the 5 Hz frequency (R5) after 26 weeks from the initiation of mepolizumab. R5 was assessed using spirometry with impulse oscillometry. The values are reported in kPa/L/s and were analyzed following the guidelines of the European Respiratory Society.

Time frame: 26 weeks

ArmMeasureValue (MEAN)Dispersion
Severe Asthma PatientsAirway Resistance at 5 Hz (R5) at Week 26.0.41 kPa/L/sStandard Deviation 0.1
Control Group 1Airway Resistance at 5 Hz (R5) at Week 26.0.3 kPa/L/sStandard Deviation 0.1
Control Group 2Airway Resistance at 5 Hz (R5) at Week 26.0.43 kPa/L/sStandard Deviation 0.16
Primary

Airway Resistance at 5 Hz (R5) at Week 4.

Estimate the airway resistance measured at the 5 Hz frequency (R5) after four weeks from mepolizumab initiation (only severe uncontrolled asthma patients received mepolizumab). R5 was assessed using impulse oscillometry. The values are reported in kPa/L/s and were analyzed following the guidelines of the European Respiratory Society.

Time frame: 4 weeks

ArmMeasureValue (MEAN)Dispersion
Severe Asthma PatientsAirway Resistance at 5 Hz (R5) at Week 4.0.49 kPa/L/sStandard Deviation 0.3
Control Group 1Airway Resistance at 5 Hz (R5) at Week 4.0.3 kPa/L/sStandard Deviation 0.1
Control Group 2Airway Resistance at 5 Hz (R5) at Week 4.0.43 kPa/L/sStandard Deviation 0.16
Primary

Difference Between Airway Resistance at 5 Hz (R5) and 20 Hz (R20) at Baseline / (R5-R20) at Baseline

Measurement of R5-R20 at baseline. R5-R20 represents the difference between airway resistance at 5 Hz (R5) and 20 Hz (R20), measured using impulse oscillometry. This measure reflects peripheral airway resistance. Assessments were conducted at baseline, and values are reported in kPa/L/s following guidelines from the European Respiratory Society

Time frame: 0 months

ArmMeasureValue (MEAN)Dispersion
Severe Asthma PatientsDifference Between Airway Resistance at 5 Hz (R5) and 20 Hz (R20) at Baseline / (R5-R20) at Baseline0.12 kPa/L/sStandard Deviation 0.1
Control Group 1Difference Between Airway Resistance at 5 Hz (R5) and 20 Hz (R20) at Baseline / (R5-R20) at Baseline0.05 kPa/L/sStandard Deviation 0.04
Control Group 2Difference Between Airway Resistance at 5 Hz (R5) and 20 Hz (R20) at Baseline / (R5-R20) at Baseline0.09 kPa/L/sStandard Deviation 0.08
Primary

Difference Between Airway Resistance at 5 Hz (R5) and 20 Hz (R20) at Week 12 / R5-R20 at Week 12

Estimate small airway resistance (R5-R20) after 12 weeks from mepolizumab initiation. R5-R20 represents the difference between airway resistance at 5 Hz (R5) and 20 Hz (R20), measured using impulse oscillometry. This measure reflects peripheral airway resistance. Assessments were conducted at week 12 after mepolizuamb initiation, and values are reported in kPa/L/s following guidelines from the European Respiratory Society.

Time frame: 12 weeks

ArmMeasureValue (MEAN)Dispersion
Severe Asthma PatientsDifference Between Airway Resistance at 5 Hz (R5) and 20 Hz (R20) at Week 12 / R5-R20 at Week 120.13 kPa/L/sStandard Deviation 0.03
Control Group 1Difference Between Airway Resistance at 5 Hz (R5) and 20 Hz (R20) at Week 12 / R5-R20 at Week 120.04 kPa/L/sStandard Deviation 0.03
Control Group 2Difference Between Airway Resistance at 5 Hz (R5) and 20 Hz (R20) at Week 12 / R5-R20 at Week 120.09 kPa/L/sStandard Deviation 0.08
Primary

Difference Between Airway Resistance at 5 Hz (R5) and 20 Hz (R20) at Week 26 / R5-R20 at Week 26.

Estimate the small airway resistance (R5-R20) after 26 weeks from mepolizumab initiation. R5-R20 represents the difference between airway resistance at 5 Hz (R5) and 20 Hz (R20), measured using impulse oscillometry. This measure reflects peripheral airway resistance. Assessments were conducted at Week 26 after mepolizumab initiation, and values are reported in kPa/L/s following guidelines from the European Respiratory Society

Time frame: 26 weeks

ArmMeasureValue (MEAN)Dispersion
Severe Asthma PatientsDifference Between Airway Resistance at 5 Hz (R5) and 20 Hz (R20) at Week 26 / R5-R20 at Week 26.0.03 kPa/L/sStandard Deviation 0.03
Control Group 1Difference Between Airway Resistance at 5 Hz (R5) and 20 Hz (R20) at Week 26 / R5-R20 at Week 26.0.04 kPa/L/sStandard Deviation 0.03
Control Group 2Difference Between Airway Resistance at 5 Hz (R5) and 20 Hz (R20) at Week 26 / R5-R20 at Week 26.0.09 kPa/L/sStandard Deviation 0.08
Primary

Difference Between Airway Resistance at 5 Hz (R5) and 20 Hz (R20) at Week 4/ R5-R20 at Week 4.

After four weeks of mepolizumab initiation, estimate the small airway resistance (R5- R20). R5-R20 represents the difference between airway resistance at 5 Hz (R5) and 20 Hz (R20), measured using impulse oscillometry. This measure reflects peripheral airway resistance. Assessments were conducted after 4 weeks from mepolizumab initiation, and values are reported in kPa/L/s following guidelines from the European Respiratory Society

Time frame: 4 weeks

ArmMeasureValue (MEAN)Dispersion
Severe Asthma PatientsDifference Between Airway Resistance at 5 Hz (R5) and 20 Hz (R20) at Week 4/ R5-R20 at Week 4.0.10 kPa/L/sStandard Deviation 0.03
Control Group 1Difference Between Airway Resistance at 5 Hz (R5) and 20 Hz (R20) at Week 4/ R5-R20 at Week 4.0.04 kPa/L/sStandard Deviation 0.03
Control Group 2Difference Between Airway Resistance at 5 Hz (R5) and 20 Hz (R20) at Week 4/ R5-R20 at Week 4.0.09 kPa/L/sStandard Deviation 0.08
Primary

Reactance Area (AX) at Baseline

Measurement of AX at baseline. AX, the area of reactance derived from impulse oscillometry, represents the elastic and inertial properties of the lungs. Measurements were taken at baseline using standard protocols. Values are reported in kPa/L and analyzed following guidelines from the European Respiratory Society.

Time frame: 0 months

ArmMeasureValue (MEAN)Dispersion
Severe Asthma PatientsReactance Area (AX) at Baseline1.2 kPa/LStandard Deviation 0.8
Control Group 1Reactance Area (AX) at Baseline0.5 kPa/LStandard Deviation 0.5
Control Group 2Reactance Area (AX) at Baseline0.7 kPa/LStandard Deviation 0.6
Primary

Reactance Area (AX) at Week 12

Estimate the AX after 12 weeks from mepolizumab initiation. AX, the area of reactance derived from impulse oscillometry, represents the elastic and inertial properties of the lungs. Measurements were taken at Week 12 using standard protocols. Values are reported in kPa/L and analyzed following guidelines from the European Respiratory Society.

Time frame: 12 weeks

ArmMeasureValue (MEAN)Dispersion
Severe Asthma PatientsReactance Area (AX) at Week 120.7 kPa/LStandard Deviation 0.5
Control Group 1Reactance Area (AX) at Week 120.5 kPa/LStandard Deviation 0.5
Control Group 2Reactance Area (AX) at Week 120.7 kPa/LStandard Deviation 0.6
Primary

Reactance Area (AX) at Week 26.

Estimate AX after 26 weeks from mepolizumab initiation. AX, the area of reactance derived from impulse oscillometry, represents the elastic and inertial properties of the lungs. Measurements were taken at Week 26 using standard protocols. Values are reported in kPa/L and analyzed following guidelines from the European Respiratory Society.

Time frame: 26 weeks

ArmMeasureValue (MEAN)Dispersion
Severe Asthma PatientsReactance Area (AX) at Week 26.0.6 kPa/LStandard Deviation 0.5
Control Group 1Reactance Area (AX) at Week 26.0.5 kPa/LStandard Deviation 0.5
Control Group 2Reactance Area (AX) at Week 26.0.7 kPa/LStandard Deviation 0.6
Primary

Reactance Area (AX) at Week 4

Estimate the AX after four weeks from mepolizumab initiation. AX, the area of reactance derived from impulse oscillometry, represents the elastic and inertial properties of the lungs. Measurements were taken at Week 4 using standard protocols. Values are reported in kPa/L and analyzed following guidelines from the European Respiratory Society.

Time frame: 4 weeks

ArmMeasureValue (MEAN)Dispersion
Severe Asthma PatientsReactance Area (AX) at Week 40.7 kPa/LStandard Error 0.6
Control Group 1Reactance Area (AX) at Week 40.5 kPa/LStandard Error 0.5
Control Group 2Reactance Area (AX) at Week 40.7 kPa/LStandard Error 0.6
Primary

Resonant Frequency (Fres) at Baseline

Measurement of Fres at Baseline. Fres, the resonant frequency, is the point where the reactance of the respiratory system equals zero, indicating the balance between elastic and inertial forces in the lungs. Measurements were taken at baseline using impulse oscillometry. Values are reported in Hz and analyzed following guidelines from the European Respiratory Society

Time frame: 0 months

ArmMeasureValue (MEAN)Dispersion
Severe Asthma PatientsResonant Frequency (Fres) at Baseline35 HzStandard Deviation 17
Control Group 1Resonant Frequency (Fres) at Baseline9 HzStandard Deviation 5
Control Group 2Resonant Frequency (Fres) at Baseline16 HzStandard Deviation 7
Primary

Resonant Frequency (Fres) at Week 12

Estimate Fres after12 weeks from mepolizumab initiation. Fres, the resonant frequency, is the point at which the reactance of the respiratory system equals zero, reflecting the balance between the elastic and inertial forces of the lungs. Measurements were taken at Week 4 using impulse oscillometry. Values are expressed in Hz and analyzed in accordance with European Respiratory Society guidelines.

Time frame: 12 weeks

ArmMeasureValue (MEAN)Dispersion
Severe Asthma PatientsResonant Frequency (Fres) at Week 1217 HzStandard Deviation 6
Control Group 1Resonant Frequency (Fres) at Week 1210 HzStandard Deviation 5
Control Group 2Resonant Frequency (Fres) at Week 1216 HzStandard Deviation 7
Primary

Resonant Frequency (Fres) at Week 26.

Estimate Fres after 26 weeks from mepolizumab initiation. Fres, the resonant frequency, is the point at which the reactance of the respiratory system equals zero, reflecting the balance between the elastic and inertial forces of the lungs. Measurements were taken at Week 26 using impulse oscillometry. Values are expressed in Hz and analyzed in accordance with European Respiratory Society guidelines.

Time frame: 26 weeks

ArmMeasureValue (MEAN)Dispersion
Severe Asthma PatientsResonant Frequency (Fres) at Week 26.17 HzStandard Deviation 6
Control Group 1Resonant Frequency (Fres) at Week 26.10 HzStandard Deviation 5
Control Group 2Resonant Frequency (Fres) at Week 26.16 HzStandard Deviation 7
Primary

Resonant Frequency (Fres) at Week 4.

Estimate Fres after four weeks from mepolizumab initiation. Fres, the resonant frequency, is the point at which the reactance of the respiratory system equals zero, reflecting the balance between the elastic and inertial forces of the lungs. Measurements were taken at Week 4 using impulse oscillometry. Values are expressed in Hz and analyzed in accordance with European Respiratory Society guidelines.

Time frame: 4 weeks

ArmMeasureValue (MEAN)Dispersion
Severe Asthma PatientsResonant Frequency (Fres) at Week 4.17 HzStandard Deviation 5
Control Group 1Resonant Frequency (Fres) at Week 4.10 HzStandard Deviation 5
Control Group 2Resonant Frequency (Fres) at Week 4.16 HzStandard Deviation 7
Primary

Respiratory Reactance at 5 Hz (X5) at Baseline

Measurement of X5 at Baseline. X5, the respiratory reactance at 5 Hz, is a measure of the elastic properties of the lungs and the peripheral airways. It indicates how easily the lungs expand and contract during breathing. Measurements were taken at baseline using impulse oscillometry, with values expressed in kPa/L. Assessments followed European Respiratory Society guidelines. X5 is negative because the lungs store energy due to their elasticity, which results in a delayed response of airflow relative to pressure changes. This behavior is characteristic of a capacitive system, where elastic forces dominate at low frequencies. A less negative X5 means that the lung's elastic recoil is reduced, leading to decreased resistance to expansion.

Time frame: 0 months

ArmMeasureValue (MEAN)Dispersion
Severe Asthma PatientsRespiratory Reactance at 5 Hz (X5) at Baseline-0.1 kPa/LStandard Deviation 0.33
Control Group 1Respiratory Reactance at 5 Hz (X5) at Baseline-0.08 kPa/LStandard Deviation 0.02
Control Group 2Respiratory Reactance at 5 Hz (X5) at Baseline-0.09 kPa/LStandard Deviation 0.04
Primary

Respiratory Reactance at 5 Hz (X5) at Week 12

Estimate X5 after 12 weeks from mepolizumab initiation. X5, the respiratory reactance at 5 Hz, measures the elastic properties of the lungs and peripheral airways, reflecting the ability of the respiratory system to expand and contract. Measurements were taken at Week 12 using impulse oscillometry. Values are reported in kPa/L and analyzed according to European Respiratory Society guidelines. X5 is negative because the lungs store energy due to their elasticity, which results in a delayed response of airflow relative to pressure changes. This behavior is characteristic of a capacitive system, where elastic forces dominate at low frequencies. A less negative X5 means that the lung's elastic recoil is reduced, leading to decreased resistance to expansion.

Time frame: 12 weeks

ArmMeasureValue (MEAN)Dispersion
Severe Asthma PatientsRespiratory Reactance at 5 Hz (X5) at Week 12-0.1 kPa/LStandard Deviation 0.1
Control Group 1Respiratory Reactance at 5 Hz (X5) at Week 12-0.08 kPa/LStandard Deviation 0.04
Control Group 2Respiratory Reactance at 5 Hz (X5) at Week 12-0.09 kPa/LStandard Deviation 0.04
Primary

Respiratory Reactance at 5 Hz (X5) at Week 26.

Estimate X5 after 26 weeks from mepolizumab initiation. X5, the respiratory reactance at 5 Hz, reflects the elastic properties of the lungs and peripheral airways, indicating the ability of the respiratory system to expand and contract. Measurements were taken at Week 26 using impulse oscillometry. Values are reported in kPa/L and were analyzed following European Respiratory Society guidelines. X5 is negative because the lungs store energy due to their elasticity, which results in a delayed response of airflow relative to pressure changes. This behavior is characteristic of a capacitive system, where elastic forces dominate at low frequencies. A less negative X5 means that the lung's elastic recoil is reduced, leading to decreased resistance to expansion.

Time frame: 26 weeks

ArmMeasureValue (MEAN)Dispersion
Severe Asthma PatientsRespiratory Reactance at 5 Hz (X5) at Week 26.-0.08 kPa/LStandard Deviation 0.1
Control Group 1Respiratory Reactance at 5 Hz (X5) at Week 26.-0.08 kPa/LStandard Deviation 0.04
Control Group 2Respiratory Reactance at 5 Hz (X5) at Week 26.-0.09 kPa/LStandard Deviation 0.04
Primary

Respiratory Reactance at 5 Hz (X5) at Week 4.

Estimate X5 after four weeks from mepolizumab initiation. X5, the respiratory reactance at 5 Hz, is a measure of the elastic properties of the lungs and peripheral airways, reflecting the ability of the respiratory system to expand and contract. Measurements were taken at Week 4 using impulse oscillometry. Values are reported in kPa/L and were analyzed according to European Respiratory Society guidelines. X5 is negative because the lungs store energy due to their elasticity, which results in a delayed response of airflow relative to pressure changes. This behavior is characteristic of a capacitive system, where elastic forces dominate at low frequencies. A less negative X5 means that the lung's elastic recoil is reduced, leading to decreased resistance to expansion.

Time frame: 4 weeks

ArmMeasureValue (MEAN)Dispersion
Severe Asthma PatientsRespiratory Reactance at 5 Hz (X5) at Week 4.-0.1 kPa/LStandard Deviation 0.1
Control Group 1Respiratory Reactance at 5 Hz (X5) at Week 4.-0.08 kPa/LStandard Deviation 0.04
Control Group 2Respiratory Reactance at 5 Hz (X5) at Week 4.-0.09 kPa/LStandard Deviation 0.04

Source: ClinicalTrials.gov · Data processed: Feb 5, 2026