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Effect of Symbicort ® on GR in Sputum in COPD

GR Activity in Induced Sputum Macrophages, and a Change in Inflammatory Biomarkers 2-hours After a Single Dose of Either Symbicort®/Budesonide/Formoterol or in Chronic Obstructive Pulmonary Disease (COPD)

Status
Completed
Phases
Phase 4
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT01787097
Enrollment
31
Registered
2013-02-08
Start date
2013-01-31
Completion date
2015-04-30
Last updated
2020-11-23

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

Conditions

Chronic Obstructive Lung Disease

Keywords

Chronic Obstructive Lung Disease

Brief summary

The purpose of the research (or knowledge gap this research is designed to fill) is to understand the science of how the combination therapy of 2 drugs (inhaled longacting beta-agonists(LABA) and inhaled corticosteroids (ICS), which are commonly used in chronic obstructive pulmonary disease (COPD) patients, is better than each drug alone. ICS and LABA both have antiinflammatory properties; that is, they dampen the inflammation in the cells of the airways in the lungs. The combination of LABA and ICS has also been shown to improve clinical effectiveness in asthma patients. The addition of a LABA to LOW doses of ICS has been shown to be more clinically beneficial in asthma than the use of HIGH doses of ICS alone. This has allowed a reduction in the total ICS dose and minimised the adverse side effects of inhaled corticosteroids. Recent evidence suggests that the use of combination therapy of LABA and ICS may also improve clinical effectiveness in COPD patients. Investigators will address this hypothesis by examining the inflammation cells of COPD direct from the site of disease (the airways) by looking at sputum/mucus. This research will build on the existing knowledge of the science of how these drugs work in asthma and COPD and allows us to understand the molecular science, which may support new future drug targets for patients with COPD, which are greatly needed.

Detailed description

Corticosteroids exert their effects by binding to a cytoplasmic glucocorticoid receptor (GR). The inactive GR is bound to a protein complex that includes heat shock protein hsp90, acting as molecular chaperones to prevent the nuclear localisation of unoccupied GR. GR binding to the palindromic promotor induces the transcriptional induction of anti-inflammatory genes such as mitogen-activated protein kinase phosphatase-1 (MKP-1) and secretory leukocyte protease inhibitor (SLPI). GR-steroid complex also binds to negative GRE sequences, resulting in inhibition of pro-inflammatory mediators, such as IL-6. More importantly, GR binds transcription factor with recruitment of histone deacetylase (HDAC) and inhibits wide range of pro-inflammatory cytokines. By this process of transrepression, corticosteroids reduce such pro-inflammatory cytokines as tumour necrosis-alpha (TNF-alpha) and interleukin-8 (IL-8) in asthmatic patients whereas they are far less effective in chronic obstructive pulmonary disease (COPD) patients. The combination of inhaled corticosteroids (ICS) and long acting beta 2-agonists (LABAs) has been shown to improve clinical effectiveness and anti-inflammatory properties in asthma. The addition of a LABA to low dose ICS has been shown to be more clinically beneficial in asthma than the use of high dose ICS, allowing a reduction in ICS dose and minimising and adverse side effects of corticosteroids. Recent evidence suggests that this may also be the case in COPD. ICS such as budesonide, beclomethasone and fluticasone have been used in combination with LABA's such as formoterol and salmeterol. These combination treatments are established in national guidelines for treating patients with asthma and also, COPD. The combination of formoterol and budesonide (Symbicort ®, Astra Zeneca) will be studied in this project. Evidence suggests that LABAs enhance GR function in vitro. In an asthmatics study, the combination of formoterol and budesonide (Symbicort ®, Astra Zeneca) was as effective as high dose ICS on GR activation, gene transactivation and transrepression. However, the precise mechanisms for this enhanced effectiveness are unknown, although priming of the steroid receptor (GR) by LABAs may be important. Investigators have developed a novel method of measuring GR-GRE binding activity in sputum using an enzyme immunosorbent assay system. This method, together with the measurements of some functional readouts, will help us to understand some of the mechanisms of steroid and GR interactions using non-invasive methods of assessment of the airways. This may provide insight into the mechanisms of corticosteroid action and whether the addition of a LABA to ICS can alter molecular patterns, which may explain the observed beneficial action of combination therapy seen in patient studies in vivo. This may allow a scientific basis to explore future drug interactions that may be helpful in patients, particularly those patients whose disease tends to be severe and may be unresponsive to standard therapies for COPD and/or where high dose ICS have little beneficial clinical effect and have led to side-effects.

Interventions

DRUGSymbicort® total dose 400ug/12ug

Symbicort® is combination of formoterol 400ug and budesonide 12ug. Single dose

DRUGSymbicort® total dose 800ug/24ug

Symbicort® is combination of formoterol 800ug and budesonide 24ug. Single dose

DRUGFormoterol 24ug

Turbuhaler

DRUGBUD total dose 800ug

Turbuhaler

Sponsors

AstraZeneca
CollaboratorINDUSTRY
Imperial College London
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
CROSSOVER
Primary purpose
BASIC_SCIENCE
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
35 Years to 80 Years
Healthy volunteers
No

Inclusion criteria

1. Patients (n=30) with chronic obstructive pulmonary disease (COPD) with mild-to-moderate disease severity (GOLD 1 and 2 guidelines). The post-bronchodilator FEV1 will be used in the criteria to define GOLD severity (reference 7/Table 1). 2. Aged 38-80 years inclusive 3. FEV1 \<15% reversibility (not % predicted) and/or an increase of \<200 ml after inhaled β2-agonists (400 μg salbutamol) 4. Patients will be allowed to use their current short-acting β2-agonists (SABA) and long-acting β2-agonists (LABA) and short-acting muscarinic-antagonist (SAMA) and long-acting muscarinic-antagonists (LAMA). However they should refrain from short-acting β2-agonists (SABA) and short-acting muscarinic-antagonist (SAMA) for 6 hours before the study visit and for long-acting β2-agonists (LABA) and long-acting muscarinic-antagonists (LAMA) at least 12 hours before the study visit, unless needed by the patient's clinical condition. 5. Theophylline (an oral tablet bronchodilator) will be required to be stopped at least 3 days prior to start of Study Visit one, and patients will not be allowed this treatment during the study as it may affect the GR response and the bronchodilator (lung function, spirometry) responses. 6. Capable of giving informed consent.

Exclusion criteria

1. As a result of the medical interview, physical examination or screening investigations, the Physician Responsible considers the volunteer unfit for the study. 2. Patients who have a clinical diagnosis of Asthma, as decided by the Study Investigators, as this does not fulfil the diagnosis of chronic obstructive pulmonary disease (COPD). 3. Patients who have had a history of an upper or lower respiratory infection (including sinusitis) within 4 weeks prior to study entry, as this can affect the breathing response. 4. Patients who have received oral or parenteral steroids within 4 weeks prior to study entry, as this can affect the breathing response and signifies that their condition needs to be controlled better. 5. Patients who have been hospitalised for a COPD exacerbation within 1 month of study entry and/or has received antibiotics within 4 weeks of study entry, as this signifies that their condition needs to be controlled better. 6. Patients taking any regular medication that is contraindicated (as indicated in the British National Formulary) in those about to receive the study medications listed in this protocol; other than the oral contraceptive pill. 7. Any evidence of a positive pregnancy urine test for female volunteers or females who are pregnant or lactating or are likely to become pregnant during the trial. Women of child-bearing potential may be included in the study if, in the opinion of the investigator, they are taking adequate contraceptive precautions (which will be directly enquired at the screening visit). 8. Patients who have a history of drug allergy which, in the opinion of the Unit Physician, contraindicates his/her participation in the study. 9. Patients with a known or suspected allergy to corticosteroids or any component of the formulations and/or suspected hypersensitivity to inhaled corticosteroid (this will be asked directly at the screening visit). 10. Patients who regularly, or on average, drink more than 21 units of alcohol (males) and 14 units of alcohol (female) per week (this will be asked directly at the screening visit).

Design outcomes

Primary

MeasureTime frameDescription
GR-GRE Binding (Relative to Baseline)Screening visit and 2 hours post inhalation of treatmentEnzyme immunosorbent assay system

Secondary

MeasureTime frameDescription
Changes in IL-6 LevelsScreening visit and 2 hours post inhalation of treatmentChanges in IL-6 Levels in the sputum supernatant compared to screening visit
Changes in CXCL8 LevelsScreening visit and 2 hours post inhalation of treatmentChanges in CXCL8 concentrations in sputum compared to screening visit.
Changes in TNF AlphaScreening visit and 2 hours post inhalation of treatmentSputum TNF-alpha levels obtained from induced sputum compared to screening visit.
Changes in Lung Function Parameter FEV1Baseline and 2 hours post inhalationImprovement in FEV1 compared to baseline levels.

Countries

United Kingdom

Participant flow

Recruitment details

First participant was enrolled January 2013. 4 participants withdrew before randomisation.

Participants by arm

ArmCount
Symbicort®, Formoterol, Budesonide
All Patients will receive randomly one-off dose of the following treatments: 1. Formoterol (FORM) total dose 24ug: is a LABA chosen at a higher clinical dose to determine whether this treatment can achieve an effective treatment response on GR in sputum cells compare to treatments 2 and 3. 2. Symbicort® total dose 400ug/12ug: is a combination of FORM (6ug) and ICS (Budesonide, (BUD) 200ug) at a lower-dose to determine whether this combination can have an effect on GR in sputum cells compare to treatment 4, 1 and 3. 3. Symbicort® total dose 800ug/24ug: is a combination FORM (12ug) and BUD (400ug) at a higher-dose, chosen to compare the effect on GR with treatment 4 and 1 4. BUD total dose 800ug: is an intermediate dose of ICS chosen for comparison with treatments 2 and 3 on GR. Symbicort®, Formoterol, Budesonide: Formeterol is Long acting beta 2-agonist (LABA) whereas Budesonide is inhaled corticosteroids (ICS).
30
Total30

Withdrawals & dropouts

PeriodReasonFG000FG001FG002FG003
Overall StudyWithdrawal by Subject1000

Baseline characteristics

CharacteristicSymbicort®, Formoterol, Budesonide
Age, Categorical
<=18 years
0 Participants
Age, Categorical
>=65 years
0 Participants
Age, Categorical
Between 18 and 65 years
30 Participants
Age, Continuous66 years
STANDARD_DEVIATION 6.4
Pre-bronchodilator FEV1 (% pred.)62 % pred.
Pre-bronchodilator FVC (% pred.)93 % pred.
Region of Enrollment
United Kingdom
30 participants
Sex: Female, Male
Female
20 Participants
Sex: Female, Male
Male
10 Participants
Sputum CXCL82.3 ng/mL

Adverse events

Event typeEG000
affected / at risk
EG001
affected / at risk
EG002
affected / at risk
EG003
affected / at risk
deaths
Total, all-cause mortality
0 / 310 / 310 / 310 / 31
other
Total, other adverse events
0 / 310 / 310 / 310 / 31
serious
Total, serious adverse events
0 / 310 / 310 / 310 / 31

Outcome results

Primary

GR-GRE Binding (Relative to Baseline)

Enzyme immunosorbent assay system

Time frame: Screening visit and 2 hours post inhalation of treatment

Population: Low patient numbers due to the fact that only a small number of patients were able to produce sputum that was of sufficient quality to undertake analysis, furthermore, sputum production between patient visits was highly variable.

ArmMeasureValue (MEAN)Dispersion
Formoterol (FORM) Total Dose 24ugGR-GRE Binding (Relative to Baseline)1.1 Fold activationStandard Error 0.1
Symbicort® Total Dose 400ug/12ugGR-GRE Binding (Relative to Baseline)1.8 Fold activationStandard Error 0.1
Symbicort® Total Dose 800ug/24ugGR-GRE Binding (Relative to Baseline)2.3 Fold activationStandard Error 0.4
Pulmicort 800ugGR-GRE Binding (Relative to Baseline)2.1 Fold activationStandard Error 0.2
p-value: 0.003Wilcoxon (Mann-Whitney)
Secondary

Changes in CXCL8 Levels

Changes in CXCL8 concentrations in sputum compared to screening visit.

Time frame: Screening visit and 2 hours post inhalation of treatment

Population: Low patient numbers due to the fact that only a small number of patients were able to produce sputum that was of sufficient quality to undertake analysis, furthermore, sputum production between patient visits was highly variable.

ArmMeasureValue (MEAN)Dispersion
Formoterol (FORM) Total Dose 24ugChanges in CXCL8 Levels-0.04 ng/mLStandard Error 0.35
Symbicort® Total Dose 400ug/12ugChanges in CXCL8 Levels-2.1 ng/mLStandard Error 0.7
Symbicort® Total Dose 800ug/24ugChanges in CXCL8 Levels-2.2 ng/mLStandard Error 0.55
Pulmicort 800ugChanges in CXCL8 Levels-1.5 ng/mLStandard Error 0.4
Secondary

Changes in IL-6 Levels

Changes in IL-6 Levels in the sputum supernatant compared to screening visit

Time frame: Screening visit and 2 hours post inhalation of treatment

Population: Low patient numbers due to the fact that only a small number of patients were able to produce sputum that was of sufficient quality to undertake analysis, furthermore, sputum production between patient visits was highly variable.

ArmMeasureValue (MEAN)Dispersion
Formoterol (FORM) Total Dose 24ugChanges in IL-6 Levels-29 pg/mLStandard Error 25
Symbicort® Total Dose 400ug/12ugChanges in IL-6 Levels-14 pg/mLStandard Error 19
Symbicort® Total Dose 800ug/24ugChanges in IL-6 Levels-28 pg/mLStandard Error 22
Pulmicort 800ugChanges in IL-6 Levels-29 pg/mLStandard Error 22
Secondary

Changes in Lung Function Parameter FEV1

Improvement in FEV1 compared to baseline levels.

Time frame: Baseline and 2 hours post inhalation

ArmMeasureValue (MEAN)Dispersion
Formoterol (FORM) Total Dose 24ugChanges in Lung Function Parameter FEV1160 mLStandard Error 28
Symbicort® Total Dose 400ug/12ugChanges in Lung Function Parameter FEV1120 mLStandard Error 25
Symbicort® Total Dose 800ug/24ugChanges in Lung Function Parameter FEV1200 mLStandard Error 30
Pulmicort 800ugChanges in Lung Function Parameter FEV152 mLStandard Error 18
Secondary

Changes in TNF Alpha

Sputum TNF-alpha levels obtained from induced sputum compared to screening visit.

Time frame: Screening visit and 2 hours post inhalation of treatment

Population: Low patient numbers due to the fact that only a small number of patients were able to produce sputum that was of sufficient quality to undertake analysis, furthermore, sputum production between patient visits was highly variable.

ArmMeasureValue (MEAN)Dispersion
Formoterol (FORM) Total Dose 24ugChanges in TNF Alpha-4.8 pg/mLStandard Error 9
Symbicort® Total Dose 400ug/12ugChanges in TNF Alpha-5.7 pg/mLStandard Error 7.9
Symbicort® Total Dose 800ug/24ugChanges in TNF Alpha-7.8 pg/mLStandard Error 7.3
Pulmicort 800ugChanges in TNF Alpha-9.4 pg/mLStandard Error 7.4

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