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Completed

NCT Number: NCT01097694

Effects of cKit Inhibition by Imatinib in Patients With Severe Refractory Asthma (KIA)

The purpose of this study is to see whether a new investigational drug (Imatinib) may help improve asthma in people whose symptoms are not well controlled with high dose inhaled corticosteroid treatment.

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Key information

Age range

18 year–65 year

Sex eligibility

All sexes

Study type

Interventional

Phase

Phase 2

Primary location

University of Alabama, Birmingham, Alabama, United States

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About this study

Severe asthmatics remain poorly controlled despite high doses of standard asthma therapy or even daily doses of systemic corticosteroids or their equivalent. They account for a large proportion of the morbidity and mortality associated with asthma. Features that seem to characterize many patients with this disorder include persistent inflammation, symptoms, and airway hyperresponsiveness in the face of corticosteroid therapy. Mast cells are powerful, long-lived tissue dwelling effector cells that are resistant to corticosteroid effects and have been implicated in the pathobiology of asthma. Mast cells in the airway smooth muscle have been found to be the major distinguishing difference between asthmatic and non-asthmatic eosinophil airway disease; and putative circulating mast cell progenitors are increased 5 fold in asthma. Stem cell factor (SCF) is critical to mast cell homeostasis and upregulation and has pleiotropic effects on mast cells and eosinophils . SCF levels are elevated in relation to asthma severity and SCF antibodies block hyperresponsiveness and inflammation and remodeling in murine asthma models. Imatinib, a specific tyrosine kinase inhibitor, inhibits cKit (Kit), the receptor for SCF on mast cells. Imatinib at doses equivalent to, or below, doses safely used in humans, also mimics or exceeds anti-SCF effects in the murine asthma model. Therefore we would like to know Does imatinib, an inhibitor of Kit, ameliorate severe asthma, in association with effects on lung mast cell phenotype and/or function?

Specific Aims of the study are:

Specific Aim 1: To investigate whether, in patients with persistent airway responsiveness and poor asthma control despite intensive asthma therapy, 24 weeks of imatinib therapy results in a reduction in airway responsiveness and in secondary indicators of asthma control, airway inflammation, and structural changes in the airways.

Patients will be treated with imatinib in a randomized, double-blind, placebo controlled trial. Assessments will include methacholine and AMP reactivity, airway function, symptoms, airway wall thickness by CT scan, analysis of induced sputum, non-invasive markers of airway inflammation, and bronchoscopy including endobronchial biopsy and bronchoalveolar lavage - all before and at the end of therapy.

Specific Aim 2: To investigate whether, in patients with persistent airway responsiveness and poor asthma control despite intensive asthma therapy, 24 weeks of imatinib therapy results in changes in airway mast cell population and/or phenotype.

Who can participate

Healthy volunteers accepted: No

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • Patients 18-65 years of age, diagnosed with asthma for at least 1 year;
  • Refractory asthma, defined as reporting that their asthma has not been completely controlled in the past 3 months despite continuous treatment with high-dose inhaled corticosteroids (ICS) and an additional controller medication, with or without continuous oral corticosteroids (OCS)

Exclusion criteria

  • Current smoking or smoking history of greater than 10 pack-years
  • Any other significant respiratory or cardiac disease, or the presence of clinically important comorbidities, including uncontrolled diabetes, uncontrolled coronary artery disease
  • If subject cannot undergo bronchoscopy procedure due to safety reasons
  • Previous treatment with Imatinib
  • A history of acute heart failure or chronic left sided heart failure
  • Uncontrolled systemic arterial hypertension
  • History of major bleeding or intracranial hemorrhage
  • History of immunodeficiency diseases, including HIV
  • Use of other investigational drugs at the time of enrollment, or within 30 days or 5 half-lives of enrollment, whichever is longer
  • History of malignancy of any organ system (other than localized basal cell carcinoma of the skin), treated or untreated, within the past 5 years, regardless of whether there is evidence of local recurrence or metastases.
  • Diagnosis of Hepatitis B or C.
  • History of alcohol abuse within 6 months of screening.
  • History of illicit drug abuse within 6 months of screening.
  • Regular use of anticoagulants (eg: Warfarin Sodium, Coumadin), amiodarone, carbamazepine, Cyclosporine, Rifampicin, or reverse transcriptase inhibitors

Treatment and study plan

imatinib mesylate

Drug

Imatinib will be initiated at an oral dose of 200 mg (two 100 mg film-coated tables) per day during the first two weeks of treatment. If the treatment is well tolerated, an up-titration to 400 mg daily (four 100 mg film-coated tables) will occur.

Other names: Gleevec, Zoleta, Glivec, Ziatir

Placebo

Drug

Placebo

Primary outcomes

  1. Change in Mean Methacholine Responsiveness as Assessed by the Provocation Concentration Causing a 20% Fall in Forced Expiratory Volume in One Second (FEV1) (PC20) at Month 3 and 6 Versus Baseline

    Time frame: Over 6 months from beginning of treatment

    Our primary outcome was change in airway hyperresponsiveness, as assessed by PC20, from baseline to 3 and/or 6 months of therapy in imatinib treated participants as compared with controls. Change in PC20 was assessed using log2-transformed ratios of PC20 at month 3 and /or month 6 vs PC20 at baseline. Our null hypothesis was that the mean of this ratio will be 0 after log2-transformed. We used a linear mixed-effects model for a repeated-measures analysis to compare the primary outcome between the two groups.

    PC20 is determined by the provocation concentration of methacholine causing a 20% fall in forced expiratory volume in one second (FEV1).

Secondary outcomes

  1. Serum Total Tryptase

    Time frame: 6 months after start of treatment

    Change in serum total tryptase after 24 weeks of imatinib vs placebo treatment

  2. Bronchoalveolar Lavage (BAL) Fluid Tryptase Level

    Time frame: 6 months after start of treatment

    Change in BAL fluid tryptase levels after 24 weeks of imatinib vs. placebo

  3. Change in Maximum Post-Bronchodilator (BD) Forced Expiratory Volume in One Second (FEV1) %

    Time frame: 6 months after start of treatment

  4. Number of Asthma Exacerbations

    Time frame: Up to 24 weeks

    Number of asthma exacerbations experienced from randomization to study completion.

  5. FEV1 in Liters

    Time frame: 6 months after start of treatment

    Change in FEV1 in treatment group compared to placebo group

  6. FEV1%

    Time frame: 6 months after start of treatment

    Change in FEV1% of predicted

  7. Morning Peak Flow Measurement

    Time frame: 6 months after start of treatment

    Change in patient-reported morning peak flow measurement (L/s)

  8. Evening Peak Flow

    Time frame: 6 months after start of treatment

    Change in patient-reported evening peak flow measurement (L/s)

  9. Fractional Exhaled Nitric Oxide (FeNO)

    Time frame: 6 months after start of treatment

    Change in Fractional Exhaled Nitric Oxide Measurement (ppb)

  10. Asthma Control Questionnaire (ACQ)

    Time frame: 6 months after start of treatment

    Change in patient-reported ACQ score The six-item Asthma Control Questionnaire (ACQ-6) is a scale from 0 to 6 with a lower value denoting an improvement in asthma control. The minimal important difference is 0.5.

  11. Asthma Quality of Life Questionnaire (AQLQ)

    Time frame: 6 months after start of treatment

    Change in patient-reported Asthma Quality of Life Questionnaire (AQLQ) score The asthma quality of life questionnaire (AQLQ) is a 32-item scale with a range from 1-7 with a higher value denoting improvement. The minimal important difference is 0.5.

  12. Asthma Symptom Utility Index (ASUI)

    Time frame: 6 months after start of treatment

    Change in patient reported ASUI score The asthma symptom utility index (ASUI) is a 10-item weighted scale with a range from 0.2 to 1 with a higher value indicating improvement. The minimal important difference is 0.09.

  13. BAL Neutrophil %

    Time frame: 6 months after start of treatment

    Change in BAL neutrophil percentage from baseline

  14. BAL Eosinophil %

    Time frame: 6 months after start of treatment

    Change in BAL eosinophil percentage

  15. Bronchoalveolar Lavage (BAL) PGD2

    Time frame: 6 months after start of treatment

    Change in bronchoalveolar lavage (BAL) PGD2 levels from baseline at 6 months

  16. Endobronchial Biopsy Total Tryptase-positive Mast Cells

    Time frame: 6 months after start of treatment

    Change in endobronchial biopsy total tryptase-positive mast cells from baseline at 6 months

  17. Endobronchial Biopsy Smooth Muscle Tryptase-positive Mast Cells

    Time frame: 6 months after start of treatment

    Change in the biopsy smooth muscle tryptase-positive mast cells from baseline at 6 months

  18. Blood Eosinophils

    Time frame: 6 months after start of treatment

    Change in blood eosinophil count

  19. Airway Wall Thickness

    Time frame: 6 months after start of treatment

    Change in airway wall thickness as assessed by computerized tomography (CT)

  20. Airway Wall Area

    Time frame: 6 months after start of treatment

    Change in airway wall area as assessed by computerized tomography (CT)

  21. Bronchoalveolar Lavage Histamine

    Time frame: 6 months after start of treatment

    Change in bronchoalveolar lavage histamine levels from baseline

  22. Urinary Prostaglandin D2

    Time frame: 6 months after start of treatment

    Change in urinary Prostaglandin D2 levels from baseline

  23. Bronchoalveolar Lavage Cysteinyl Leukotrienes

    Time frame: 6 months after start of treatment

    Change in bronchoalveolar lavage cysteinyl leukotrienes levels from baseline

  24. Urinary Leukotriene E4

    Time frame: 6 months after start of treatment

    Change in urinary leukotriene E4 levels from baseline

  25. Change in Sputum Supernatant Differential, Supernatant Tryptase and IL-13

    Time frame: baseline to 24 weeks

    Change in sputum eosinophil and neutrophil percentage. Change in sputum supernatant tryptase as measured by ELISA. Change in sputum IL-13 level as measured by ELISA.

  26. Change in Inflammatory Mediators in Exhaled Breath Condensate

    Time frame: baseline to week 24

    Assessment of change in eicosanoids in the exhaled breath condensate

  27. Change in Number of Self-Reported Asthma Symptom Free Days

    Time frame: baseline to week 24

Sponsors and collaborators

Lead sponsor

Brigham and Women's Hospital

Other

Collaborators

  • Baim Institute for Clinical Research
  • National Heart, Lung, and Blood Institute (NHLBI)

Registry information

Official study title

A 28 Week, Treatment Randomized, Double -Blind, Placebo-controlled Study of the Effects of cKit Inhibition by Imatinib in Patients With Severe Refractory Asthma (KIA)

Acronym: KIA

Important dates

Study start
2010
Primary completion
2015
Study completion
2016
First posted
Apr 2, 2010
Registry last updated
May 19, 2017

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

View the official ClinicalTrials.gov record (opens in a new tab)

This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

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