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A Study to Assess the Effect of CK-2127107 on Physical Function in Subjects With Chronic Obstructive Pulmonary Disease

A Phase 2a, Randomized, Double-blind, Placebo-controlled, Two Period, Crossover Study to Assess the Effect of CK-2127107 on Physical Function in Subjects With Chronic Obstructive Pulmonary Disease

Status
Completed
Phases
Phase 2
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT02662582
Enrollment
46
Registered
2016-01-25
Start date
2016-06-30
Completion date
2018-06-08
Last updated
2024-11-14

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

Conditions

Chronic Obstructive Pulmonary Disease (COPD)

Keywords

Chronic Obstructive Pulmonary Disease, CK-2127107, COPD

Brief summary

The purpose of this study was to assess the effect of CK-2127107 relative to placebo on cycle ergometer exercise tolerance, assessed as change from period baseline in constant work rate (CWR) endurance time, utilizing a breath-by-breath metabolic measurement system with integrated electrocardiogram (ECG). The time to intolerance was assessed by a stopwatch and verified from electronic recordings of the cycle ergometer. This study assessed cardiopulmonary and neuromuscular effects of CK-2127107 relative to placebo; the effect of CK-2127107 on resting spirometry relative to placebo; the safety and tolerability of CK-2127107 as well as the pharmacokinetics of CK-2127107.

Detailed description

Enrolled participants were randomly assigned to 1 of 2 treatment sequences and received both CK-2127107 and matching placebo over 2 treatment periods.

Interventions

Oral tablet

DRUGPlacebo

Oral tablet

Sponsors

Cytokinetics
CollaboratorINDUSTRY
Astellas Pharma Global Development, Inc.
Lead SponsorINDUSTRY

Study design

Allocation
RANDOMIZED
Intervention model
CROSSOVER
Primary purpose
TREATMENT
Masking
DOUBLE (Subject, Investigator)

Eligibility

Sex/Gender
ALL
Age
40 Years to 75 Years
Healthy volunteers
No

Inclusion criteria

* Subject has a body mass index (BMI) of 18-35 kg/m2 inclusive. * Subject must have all of the following: * Clinical diagnosis of moderate to severe COPD, with a postbronchodilator FEV1/FVC ratio \< 70% and 30% ≤ FEV1 \< 65% predicted at screening. The predicted values for normal spirometry will be those recommended by the American Thoracic Society (ATS) / European Respiratory Society (ERS) \[Miller et al, 2005\]. * General stable health with no change in medication (including non-COPD agents and dietary aids/food supplements) within 2 weeks prior to screening, no systemic corticosteroid administration (topical or inhaled corticosteroids are allowed) within 6 weeks prior to screening, no exacerbations or hospitalization within 6 weeks prior to screening. * Current or ex-smokers with a smoking history of at least 10 pack years. * Grade of 2 or 3 on the Modified Medical Research Council (mMRC) Dyspnea Scale at screening: 1. Grade 2: walks slower than people of the same age on the level because of breathlessness or has to stop for breath when walking at own pace on the level. 2. Grade 3: stops for breath after walking about 100 meters or after a few minutes on the level. * Subject is able to complete technically acceptable respiratory muscle strength tests, spirometry, physical performance test and exercise tests. * Female subject must either: * Be of non-child bearing potential: Postmenopausal (defined as at least 1 year without any menses) prior to screening, or documented surgically sterile. * Or, if of childbearing potential: Agree not to try to become pregnant during the study and for 28 days after the last dose, and have a negative serum pregnancy test at screening, and, if heterosexually active, agree to consistently use 2 forms of highly-effective birth control (at least 1 of which must be a barrier method) starting at screening, throughout the study, and for 28 days after the last dose. * Female subject must agree not to breastfeed starting at screening and throughout the study and for 28 days after the last dose. * Female subject must not donate ova starting at screening, throughout the study and for 28 days after the last dose. * Male subject and their female spouse/partners who are of childbearing potential must be using highly effective form of contraception consisting of 2 forms of birth control (at least 1 of which must be a barrier method) starting at screening, and continuing throughout the study and for 90 days after the last dose. * Male subject must not donate sperm starting at screening, throughout the study and for 90 days after the last dose. * Subject agrees not to participate in another interventional study from screening through the follow-up visit (FUV) of the study.

Exclusion criteria

* Subject has previously enrolled in a clinical study of CK-2127107. * Subject has any clinically significant abnormality following the investigator's review of the physical examination, ECG and protocol-defined clinical laboratory tests at screening. A significant abnormality is defined as an abnormality which, in the opinion of the investigator, may (i) put the subject at risk because of participation in the study, (ii) influence the results of the study or (iii) cause concern regarding the subject's ability to participate in the study. * Subject has any of the liver function tests (LFTs; i.e., aspartate aminotransferase \[AST\], alanine aminotransferase \[ALT\], alkaline phosphatase \[ALP\], γ-glutamyl transferase \[GGT\] and/or total bilirubin \[TBL\]) above 1.5 times the upper limit of normal (ULN) at screening. These assessments may be repeated once at the investigator's discretion (within the screening window). * Subject has an estimated glomerular filtration rate (eGFR) less than 30 mL/min/1.73 m2 by the Cockcroft-Gault equation at screening. * Subject has a serious cardiovascular disease, including a current New York Heart Association (NYHA) class III or IV congestive heart failure or clinically significant valvular disease, history of cardiac arrest, uncontrolled angina or arrhythmia, untreated serious conduction disorder (e.g., third-degree heart block), or acute myocardial ischemic condition suspected on the ECG at screening (e.g., ST-segment elevation, ST-segment depressions \> 2 mm). * Subject has had a myocardial infarction or other acute coronary syndrome, major heart surgery (i.e., valve replacement or bypass surgery), stroke, deep vein thrombosis or pulmonary embolus in the 6 months prior to screening. * Subject has known active tuberculosis. * Subject has undergone thoracotomy with pulmonary resection (except for sub-lobar resection). * Subject has resting pulse \< 40 bpm or \> 100 bpm; resting systolic blood pressure \> 160 mm Hg or \< 90 mm Hg; resting diastolic blood pressure \> 100 mm Hg at screening. These assessments may be repeated once at the investigator's discretion (within the screening window). * Subject desaturates to SpO2 \< 85% for at least 1 minute on screening IET. * Subject has a limitation of exercise performance as a result of factors other than fatigue or exertional dyspnea/shortness of breath (considered to be due to COPD), such as arthritis in the leg, angina pectoris, heart failure, claudication or morbid obesity. * Subject has a CWR cycle ergometry endurance time less than 4 or greater than 8 minutes after WR adjustment procedures. * Subject has used the following drugs within 14 days prior to day -1: * Strong cytochrome P450 (CYP)3A4 inhibitor (e.g., itraconazole, clarithromycin). * Strong CYP3A4 inducer (e.g., barbiturates, rifampin). * Subject has hemoglobin (Hb) concentration below 10.0 g/dL at screening. * Subject has a cancer requiring treatment currently or in the past 3 years (except primary nonmelanoma skin cancer, carcinoma in situ or cancers that have an excellent prognosis such as early stage breast or prostate cancer). * Subject giving a history of asthma, allergic rhinitis or atopy shall be evaluated by the investigator to determine whether the subject's predominant diagnosis is COPD rather than asthma. * Subject has neurological conditions or neuromuscular diseases that are causing impaired muscle function or mobility. * Subject has a current diagnosis of schizophrenia, other psychotic disorders or bipolar disorder. * Subject in the active phase of pulmonary rehabilitation or had completed pulmonary rehabilitation or exercise training within the 13 weeks prior to screening. * Subject has severe and/or uncontrolled medical conditions that could interfere with the study (e.g., severe neurological deficit after stroke, developed diabetic peripheral neuropathy, respiratory diseases requiring daytime supplemental oxygen, infection, gastrointestinal disorder, uncontrolled pain or any other non-stable illness) as judged by the medical investigator. * Subject has a known history of positive test for hepatitis B surface antigen (HBsAg) or hepatitis C antibody or history of a positive test for human immunodeficiency virus (HIV) infection. * Subject has a history of alcoholism or drug/chemical substance abuse within 2 years prior to screening. * Subject has used any medications known to affect physical function or muscle mass including androgen supplements, anti-androgens (such as luteinizing hormone-releasing hormone \[LHRH\] agonists), anti-estrogen (tamoxifen, etc.), recombinant human growth hormone (rhGH), insulin, oral beta adrenergic agonists, megestrol acetate, dronabinol, metformin or other drugs which, in the opinion of the investigator, might influence physical function or muscle mass within 6 weeks prior to screening. * Subject has participated in any interventional clinical study or has been treated with any investigational drugs within 28 days or 5 half-lives whichever is longer, prior to the initiation of screening. * Subject has any other condition that in the opinion of the investigator precludes the subject's participation in the trial.

Design outcomes

Primary

MeasureTime frameDescription
Change From Period Baseline at Week 2 in Constant Work Rate (CWR) Endurance Time Relative to PlaceboBaseline and week 2 of each treatment periodThe CWR defines how long it takes until the participant reaches symptom limitations while simultaneously being monitored and is called CWR time to intolerance, which determined the CWR endurance time. Positive change indicates an improvement from baseline (i.e., a favorable outcome).

Secondary

MeasureTime frameDescription
Change From Period Baseline at Week 2 in Ventilation (VE)Baseline and week 2 of each treatment periodVE was defined as volume of gas exhaled from the lungs in 1 minute, also called 'ventilation' or 'minute ventilation. VE was reported at isotime and peak exercise during CWR test.
Change From Period Baseline at Week 2 in Ventilatory Equivalent for Carbon Dioxide (VE/VCO2)Baseline and week 2 of each treatment periodVE/VCO2 was a ratio of VE to VCO2. It is a dimensionless quantity. This ratio indicates how many liters of air exhaled were breathed to eliminate 1 liter of CO2. VE/VCO2 was reported at isotime and peak exercise during CWR test.
Change From Period Baseline at Week 2 in Inspiratory Capacity (IC) Change From Peak to RestBaseline and week 2 of each treatment periodIC was defined as the volume of air that can be inspired after a normal expiration; it is the sum of the tidal volume (VT) and the IRV.
Change From Period Baseline at Week 2 in Perceived Exertion for Dyspnea and Leg Discomfort (BORG CR10)Baseline and week 2 of each treatment periodThe Borg Scale (Borg CR10) is a simple 10-item method of rating perceived exertion and collects information on perceived exertion in an individual's rating of exercise intensity. Participants were asked to use this scale to rate the intensity of their breathing and leg discomfort before, during, and after exercise. Scores range from 0 (Complete Rest) to 10 (Extremely Hard (almost maximal)). BORG CR10 was reported at isotime and peak exercise during CWR test.
Change From Period Baseline at Week 2 in Respiratory Exchange Ratio (RER)Baseline and week 2 of each treatment periodThe respiratory exchange ratio is equal to the VCO2 / VO2 \[RER = VCO2 (L/min) / VO2 (L/min)\]. RER was reported at isotime and peak exercise during CWR test.
Change From Period Baseline at Week 2 in Carbon Dioxide Output (VCO2)Baseline and week 2 of each treatment periodVCO2 was defined as volume of CO2 exhaled from the body per unit of time; also called the rate of elimination of CO2. VCO2 was reported at isotime and peak exercise during CWR test.
Change From Period Baseline at Week 2 in End-tidal PCO2 (PETCO2)Baseline and week 2 of each treatment periodPETCO2 was defined as partial pressure of carbon dioxide in the expired gas at the end of an exhalation. This represents the mean partial pressure of carbon dioxide in the pulmonary alveoli. PETCO2 was reported at isotime and peak exercise during CWR test.
Change From Period Baseline at Week 2 in End-tidal PO2 (PETO2)Baseline and week 2 of each treatment periodPETO2 was defined as Partial pressure of oxygen in the expired gas at the end of an exhalation. This represents the mean partial pressure of oxygen in the pulmonary alveoli. PETO2 was reported at isotime and peak exercise during CWR test.
Change From Period Baseline at Week 2 in Tidal Volume (VT)Baseline and week 2 of each treatment periodVT was defined as tidal volume is the volume of gas exhaled in each respiratory cycle. Tidal volume is typically measured as an average value over several respiratory cycles, and is expressed in liters. VT was reported at isotime and peak exercise during CWR test.
Change From Period Baseline at Week 2 in Breathing Frequency (Bf)Baseline and week 2 of each treatment periodBf was defined as the number of breaths (i.e., an entire inspiratory and expiratory respiratory cycle) per minute. Bf was reported at isotime and peak exercise during CWR test.
Change From Period Baseline at Week 2 in Inspiratory Capacity (IC)Baseline and week 2 of each treatment periodIC was defined as the volume of air that can be inspired after a normal expiration; it is the sum of the VT and the IRV. IC was reported at isotime and peak exercise during CWR test.
Change From Period Baseline to Week 2 in Inspiratory Reserve Volume (IRV)Baseline and week 2 of each treatment periodThe Inspiratory reserve volume was equal to VT - IC measured in liters \[IRV (L) = VT (L) - IC (L)\]. IRV was reported at isotime and peak exercise during CWR test.
Change From Period Baseline at Week 2 in Oxygen Uptake (VO2)Baseline and week 2 of each treatment periodVO2 was defined as volume of O2 extracted from inspired air in a given period of time. VO2 was reported at isotime and peak exercise during CWR test.
Change From Period Baseline at Week 2 in Heart Rate (HR)Baseline and week 2 of each treatment periodHR was reported at isotime and peak exercise during CWR test.
Change From Period Baseline at Week 2 in Systolic Blood Pressure (SBP)Baseline and week 2 of each treatment periodSBP was reported at isotime and peak exercise during CWR test.
Change From Period Baseline at Week 2 in Diastolic Blood Pressure (DBP)Baseline and week 2 of each treatment periodDBP was reported at isotime and peak exercise during CWR test.
Change From Period Baseline at Week 2 in Arterial Oxygen Saturation From Pulse Oximetry (SpO2)Baseline and week 2 of each treatment periodSPO2 was defined as the noninvasive estimation of arterial hemoglobin (Hb) oxygen saturation, using a device that utilizes the combined principles of spectrophotometry and pulse plethysmography. SPO2 was reported at isotime and peak exercise during CWR test.
Change From Period Baseline at Week 2 in Forced Vital Capacity (FVC)Baseline and week 2 of each treatment periodChange From Period Baseline in FVC was reported.
Change From Period Baseline at Week 2 in Forced Expiratory Volume 1 (FEV1)Baseline and week 2 of each treatment periodChange From Period Baseline in FEV1 was reported.
Change From Period Baseline at Week 2 in FVC/FEV1 RatioBaseline and week 2 of each treatment periodChange From Period Baseline in FVC/FEV1 Ratio was reported.
Change From Period Baseline at Week 2 in Activation of Accessory Respiratory MusclesBaseline and week 2 of each treatment periodActivation of accessory respiratory muscles was assessed by electromyogram. Data was reported at peak and isotime.
Number of Participants With Treatment Emergent Adverse EventsFrom first dose of study drug up to 14 days after last dose of study drug (8 weeks)TEAEs were defined as any AE that started or worsened in severity after the first dose of study drug up to 14 days after the last dose of study drug. An AE was defined as any untoward medical occurrence in a participant administered a study drug or who had undergone study procedures and did not necessarily have a causal relationship with this treatment. An AE could therefore be any unintended sign (including an abnormal laboratory finding), symptom or disease temporally associated with the use of a medicinal (investigational) product, whether or not related to the medicinal (investigational) product. An abnormality identified during a medical test (e.g., laboratory parameter, vital sign, ECG data, physical examination) an AE only if the abnormality meets 1 of the following criteria: Induces clinical signs or symptoms, Requires active intervention, Requires interruption or discontinuation of study drug, The abnormality or test value is clinically significant in the opinion of the inves
Plasma Concentration of CK-2127107 at Day 1 Predose, Day 14 Lowest Concentration (Ctrough), and Day 14 Concentration Predose 6 Hours (C6h)Day 1 predose, day 14 Ctrough, day 14 C6hPlasma concentration of CK-2127107 was reported.
Plasma Concentration of CK-2127106 (Metabolite of CK-2127107) at Day 1 Predose, Day 14 Ctrough, Day 14 C6hDay 1 predose, day 14 Ctrough, day 14 C6hPlasma concentration of CK-2127106 (metabolite of CK-2127107) was reported.
Change From Period Baseline at Week 2 in Ventilatory Reserve (VE/MVV)Baseline and week 2 of each treatment periodVE/MVV provides the rate of expired ventilation to the capacity. VE/MVV was reported at isotime and peak exercise during CWR test.

Countries

United States

Participant flow

Pre-assignment details

Participants with a clinical diagnosis of moderate to severe chronic obstructive pulmonary disease (COPD) between 40 to 75 years of age inclusive and met all of the inclusion and none of the exclusion criteria were enrolled in this study.

Participants by arm

ArmCount
CK-2127107 1000mg, Then Placebo
Participants received CK-2127107 500 mg, orally, twice daily for 2 weeks in treatment period 1 followed by matching placebo orally, twice daily for 2 weeks in treatment period 2. A washout period of 2 weeks will be maintained between the two treatment periods.
23
Placebo, Then CK-2127107 1000mg
Participants received matching placebo orally, twice daily for 2 weeks in treatment period 1 followed by CK-2127107 500 mg, orally, twice daily for 2 weeks in treatment period 2. A washout period of 2 weeks will be maintained between the two treatment periods.
23
Total46

Withdrawals & dropouts

PeriodReasonFG000FG001
Treatment Period 1 (14 Days)Adverse Event32
Treatment Period 1 (14 Days)Miscellaneous01
Treatment Period 1 (14 Days)Protocol Deviation10
Treatment Period 1 (14 Days)Withdrawal by Subject11

Baseline characteristics

CharacteristicCK-2127107 1000mg, Then PlaceboPlacebo, Then CK-2127107 1000mgTotal
Age, Continuous62.8 Years
STANDARD_DEVIATION 7.9
63.1 Years
STANDARD_DEVIATION 8.3
63 Years
STANDARD_DEVIATION 8
Constant work rate (CWR) Endurance Time334.5 Seconds
STANDARD_DEVIATION 80
346.4 Seconds
STANDARD_DEVIATION 89.1
340.4 Seconds
STANDARD_DEVIATION 84
Ethnicity (NIH/OMB)
Hispanic or Latino
0 Participants1 Participants1 Participants
Ethnicity (NIH/OMB)
Not Hispanic or Latino
23 Participants22 Participants45 Participants
Ethnicity (NIH/OMB)
Unknown or Not Reported
0 Participants0 Participants0 Participants
Race (NIH/OMB)
American Indian or Alaska Native
0 Participants0 Participants0 Participants
Race (NIH/OMB)
Asian
0 Participants0 Participants0 Participants
Race (NIH/OMB)
Black or African American
5 Participants8 Participants13 Participants
Race (NIH/OMB)
More than one race
0 Participants0 Participants0 Participants
Race (NIH/OMB)
Native Hawaiian or Other Pacific Islander
0 Participants0 Participants0 Participants
Race (NIH/OMB)
Unknown or Not Reported
0 Participants1 Participants1 Participants
Race (NIH/OMB)
White
18 Participants14 Participants32 Participants
Sex: Female, Male
Female
13 Participants12 Participants25 Participants
Sex: Female, Male
Male
10 Participants11 Participants21 Participants

Adverse events

Event typeEG000
affected / at risk
EG001
affected / at risk
deaths
Total, all-cause mortality
0 / 410 / 42
other
Total, other adverse events
1 / 413 / 42
serious
Total, serious adverse events
1 / 412 / 42

Outcome results

Primary

Change From Period Baseline at Week 2 in Constant Work Rate (CWR) Endurance Time Relative to Placebo

The CWR defines how long it takes until the participant reaches symptom limitations while simultaneously being monitored and is called CWR time to intolerance, which determined the CWR endurance time. Positive change indicates an improvement from baseline (i.e., a favorable outcome).

Time frame: Baseline and week 2 of each treatment period

Population: The full analysis set (FAS) consisted of all participants who were randomized and received ≥ 1 dose of study drug and had ≥ 1 baseline measurement and 1 post baseline measurement within a period. FAS population with available data at each specified time point.

ArmMeasureValue (LEAST_SQUARES_MEAN)Dispersion
PlaceboChange From Period Baseline at Week 2 in Constant Work Rate (CWR) Endurance Time Relative to Placebo-1.4 secondsStandard Error 22.2
CK-2127107Change From Period Baseline at Week 2 in Constant Work Rate (CWR) Endurance Time Relative to Placebo-13.4 secondsStandard Error 21.2
Comparison: Least square means (LSMeans), LSMean difference of CK-2127107 minus placebo, and 90% confidence intervals are based on a mixed effect model with treatment and period as fixed effects, subject as a random effect, and a compound symmetry covariance structure.p-value: 0.73490% CI: [-71.2, 47.2]Mixed Models Analysis
Secondary

Change From Period Baseline at Week 2 in Activation of Accessory Respiratory Muscles

Activation of accessory respiratory muscles was assessed by electromyogram. Data was reported at peak and isotime.

Time frame: Baseline and week 2 of each treatment period

Population: FAS population with available data at each specified time point.

ArmMeasureGroupValue (LEAST_SQUARES_MEAN)Dispersion
PlaceboChange From Period Baseline at Week 2 in Activation of Accessory Respiratory MusclesPeak4.84 percentage of activationStandard Error 4.76
PlaceboChange From Period Baseline at Week 2 in Activation of Accessory Respiratory MusclesIsotime1.04 percentage of activationStandard Error 4.39
CK-2127107Change From Period Baseline at Week 2 in Activation of Accessory Respiratory MusclesPeak6.91 percentage of activationStandard Error 4.65
CK-2127107Change From Period Baseline at Week 2 in Activation of Accessory Respiratory MusclesIsotime3.98 percentage of activationStandard Error 4.3
Comparison: Peak: LSMeans, LSMean difference of CK-2127107 minus placebo, and 90% confidence intervals are based on a mixed effect model with treatment and period as fixed effects, subject as a random effect, and a compound symmetry covariance structure.p-value: 0.76690% CI: [-9.57, 13.71]Mixed Models Analysis
Comparison: Isotime: LSMeans, LSMean difference of CK-2127107 minus placebo, and 90% confidence intervals are based on a mixed effect model with treatment and period as fixed effects, subject as a random effect, and a compound symmetry covariance structure.p-value: 0.64290% CI: [-7.66, 13.54]Mixed Models Analysis
Secondary

Change From Period Baseline at Week 2 in Arterial Oxygen Saturation From Pulse Oximetry (SpO2)

SPO2 was defined as the noninvasive estimation of arterial hemoglobin (Hb) oxygen saturation, using a device that utilizes the combined principles of spectrophotometry and pulse plethysmography. SPO2 was reported at isotime and peak exercise during CWR test.

Time frame: Baseline and week 2 of each treatment period

Population: FAS population with available data at each specified time point.

ArmMeasureGroupValue (LEAST_SQUARES_MEAN)Dispersion
PlaceboChange From Period Baseline at Week 2 in Arterial Oxygen Saturation From Pulse Oximetry (SpO2)Peak-0.4 percentage of oxygen saturationStandard Error 0.3
PlaceboChange From Period Baseline at Week 2 in Arterial Oxygen Saturation From Pulse Oximetry (SpO2)Isotime-0.3 percentage of oxygen saturationStandard Error 0.3
CK-2127107Change From Period Baseline at Week 2 in Arterial Oxygen Saturation From Pulse Oximetry (SpO2)Peak-0.2 percentage of oxygen saturationStandard Error 0.2
CK-2127107Change From Period Baseline at Week 2 in Arterial Oxygen Saturation From Pulse Oximetry (SpO2)Isotime0.0 percentage of oxygen saturationStandard Error 0.2
Comparison: Peak: LSMeans, LSMean difference of CK-2127107 minus placebo, and 90% confidence intervals are based on a mixed effect model with treatment and period as fixed effects, subject as a random effect, and a compound symmetry covariance structure.p-value: 0.5990% CI: [-0.5, 0.9]Mixed Models Analysis
Comparison: Isotime: LSMeans, LSMean difference of CK-2127107 minus placebo, and 90% confidence intervals are based on a mixed effect model with treatment and period as fixed effects, subject as a random effect, and a compound symmetry covariance structure.p-value: 0.39990% CI: [-0.3, 0.9]Mixed Models Analysis
Secondary

Change From Period Baseline at Week 2 in Breathing Frequency (Bf)

Bf was defined as the number of breaths (i.e., an entire inspiratory and expiratory respiratory cycle) per minute. Bf was reported at isotime and peak exercise during CWR test.

Time frame: Baseline and week 2 of each treatment period

Population: FAS population with available data at each specified time point.

ArmMeasureGroupValue (LEAST_SQUARES_MEAN)Dispersion
PlaceboChange From Period Baseline at Week 2 in Breathing Frequency (Bf)Peak1.6 Breaths/minStandard Error 0.6
PlaceboChange From Period Baseline at Week 2 in Breathing Frequency (Bf)Isotime1.4 Breaths/minStandard Error 0.7
CK-2127107Change From Period Baseline at Week 2 in Breathing Frequency (Bf)Peak1.2 Breaths/minStandard Error 0.6
CK-2127107Change From Period Baseline at Week 2 in Breathing Frequency (Bf)Isotime0.7 Breaths/minStandard Error 0.7
Comparison: Peak: LSMeans, LSMean difference of CK-2127107 minus placebo, and 90% confidence intervals are based on a mixed effect model with treatment and period as fixed effects, subject as a random effect, and a compound symmetry covariance structure.p-value: 0.6490% CI: [-2.1, 1.2]Mixed Models Analysis
Comparison: Isotime: LSMeans, LSMean difference of CK-2127107 minus placebo, and 90% confidence intervals are based on a mixed effect model with treatment and period as fixed effects, subject as a random effect, and a compound symmetry covariance structure.p-value: 0.48790% CI: [-2.5, 1.1]Mixed Models Analysis
Secondary

Change From Period Baseline at Week 2 in Carbon Dioxide Output (VCO2)

VCO2 was defined as volume of CO2 exhaled from the body per unit of time; also called the rate of elimination of CO2. VCO2 was reported at isotime and peak exercise during CWR test.

Time frame: Baseline and week 2 of each treatment period

Population: FAS population with available data at each specified time point.

ArmMeasureGroupValue (LEAST_SQUARES_MEAN)Dispersion
PlaceboChange From Period Baseline at Week 2 in Carbon Dioxide Output (VCO2)Peak-0.0129 L/minStandard Error 0.0231
PlaceboChange From Period Baseline at Week 2 in Carbon Dioxide Output (VCO2)Isotime-0.0115 L/minStandard Error 0.0188
CK-2127107Change From Period Baseline at Week 2 in Carbon Dioxide Output (VCO2)Isotime-0.0232 L/minStandard Error 0.0179
CK-2127107Change From Period Baseline at Week 2 in Carbon Dioxide Output (VCO2)Peak-0.0119 L/minStandard Error 0.0219
Comparison: Peak: LSMeans, LSMean difference of CK-2127107 minus placebo, and 90% confidence intervals are based on a mixed effect model with treatment and period as fixed effects, subject as a random effect, and a compound symmetry covariance structure.p-value: 0.97290% CI: [-0.0459, 0.0479]Mixed Models Analysis
Comparison: Isotime: LSMeans, LSMean difference of CK-2127107 minus placebo, and 90% confidence intervals are based on a mixed effect model with treatment and period as fixed effects, subject as a random effect, and a compound symmetry covariance structure.p-value: 0.57890% CI: [-0.0471, 0.0236]Mixed Models Analysis
Secondary

Change From Period Baseline at Week 2 in Diastolic Blood Pressure (DBP)

DBP was reported at isotime and peak exercise during CWR test.

Time frame: Baseline and week 2 of each treatment period

Population: FAS population with available data at each specified time point.

ArmMeasureGroupValue (LEAST_SQUARES_MEAN)Dispersion
PlaceboChange From Period Baseline at Week 2 in Diastolic Blood Pressure (DBP)Peak0.3 mmHgStandard Error 2.1
PlaceboChange From Period Baseline at Week 2 in Diastolic Blood Pressure (DBP)Isotime-1.0 mmHgStandard Error 2
CK-2127107Change From Period Baseline at Week 2 in Diastolic Blood Pressure (DBP)Peak-0.3 mmHgStandard Error 2
CK-2127107Change From Period Baseline at Week 2 in Diastolic Blood Pressure (DBP)Isotime-2.0 mmHgStandard Error 1.9
Comparison: Peak: LSMeans, LSMean difference of CK-2127107 minus placebo, and 90% confidence intervals are based on a mixed effect model with treatment and period as fixed effects, subject as a random effect, and a compound symmetry covariance structure.p-value: 0.84490% CI: [-6.1, 4.9]Mixed Models Analysis
Comparison: Isotime: LSMeans, LSMean difference of CK-2127107 minus placebo, and 90% confidence intervals are based on a mixed effect model with treatment and period as fixed effects, subject as a random effect, and a compound symmetry covariance structure.p-value: 0.75190% CI: [-5.8, 4]Mixed Models Analysis
Secondary

Change From Period Baseline at Week 2 in End-tidal PCO2 (PETCO2)

PETCO2 was defined as partial pressure of carbon dioxide in the expired gas at the end of an exhalation. This represents the mean partial pressure of carbon dioxide in the pulmonary alveoli. PETCO2 was reported at isotime and peak exercise during CWR test.

Time frame: Baseline and week 2 of each treatment period

Population: FAS population with available data at each specified time point.

ArmMeasureGroupValue (LEAST_SQUARES_MEAN)Dispersion
PlaceboChange From Period Baseline at Week 2 in End-tidal PCO2 (PETCO2)Peak-0.12 mmHgStandard Error 0.34
PlaceboChange From Period Baseline at Week 2 in End-tidal PCO2 (PETCO2)Isotime-0.07 mmHgStandard Error 0.33
CK-2127107Change From Period Baseline at Week 2 in End-tidal PCO2 (PETCO2)Isotime-0.64 mmHgStandard Error 0.31
CK-2127107Change From Period Baseline at Week 2 in End-tidal PCO2 (PETCO2)Peak-0.77 mmHgStandard Error 0.33
Comparison: Peak: LSMeans, LSMean difference of CK-2127107 minus placebo, and 90% confidence intervals are based on a mixed effect model with treatment and period as fixed effects, subject as a random effect, and a compound symmetry covariance structure.p-value: 0.23590% CI: [-1.55, 0.26]Mixed Models Analysis
Comparison: Isotime: LSMeans, LSMean difference of CK-2127107 minus placebo, and 90% confidence intervals are based on a mixed effect model with treatment and period as fixed effects, subject as a random effect, and a compound symmetry covariance structure.p-value: 0.21590% CI: [-1.33, 0.19]Mixed Models Analysis
Secondary

Change From Period Baseline at Week 2 in End-tidal PO2 (PETO2)

PETO2 was defined as Partial pressure of oxygen in the expired gas at the end of an exhalation. This represents the mean partial pressure of oxygen in the pulmonary alveoli. PETO2 was reported at isotime and peak exercise during CWR test.

Time frame: Baseline and week 2 of each treatment period

Population: FAS population with available data at each specified time point.

ArmMeasureGroupValue (LEAST_SQUARES_MEAN)Dispersion
PlaceboChange From Period Baseline at Week 2 in End-tidal PO2 (PETO2)Peak0.38 mmHgStandard Error 42
PlaceboChange From Period Baseline at Week 2 in End-tidal PO2 (PETO2)Isotime0.30 mmHgStandard Error 0.4
CK-2127107Change From Period Baseline at Week 2 in End-tidal PO2 (PETO2)Isotime0.75 mmHgStandard Error 0.38
CK-2127107Change From Period Baseline at Week 2 in End-tidal PO2 (PETO2)Peak1.08 mmHgStandard Error 0.4
Comparison: Peak: LSMeans, LSMean difference of CK-2127107 minus placebo, and 90% confidence intervals are based on a mixed effect model with treatment and period as fixed effects, subject as a random effect, and a compound symmetry covariance structure.p-value: 0.2890% CI: [-0.38, 1.77]Mixed Models Analysis
Comparison: Isotime: LSMeans, LSMean difference of CK-2127107 minus placebo, and 90% confidence intervals are based on a mixed effect model with treatment and period as fixed effects, subject as a random effect, and a compound symmetry covariance structure.p-value: 0.42490% CI: [-0.49, 1.4]Mixed Models Analysis
Secondary

Change From Period Baseline at Week 2 in Forced Expiratory Volume 1 (FEV1)

Change From Period Baseline in FEV1 was reported.

Time frame: Baseline and week 2 of each treatment period

Population: FAS population with available data at each specified time point.

ArmMeasureValue (LEAST_SQUARES_MEAN)Dispersion
PlaceboChange From Period Baseline at Week 2 in Forced Expiratory Volume 1 (FEV1)-0.030 LitersStandard Error 0.028
CK-2127107Change From Period Baseline at Week 2 in Forced Expiratory Volume 1 (FEV1)-0.037 LitersStandard Error 0.027
Comparison: LSMeans, LSMean difference of CK-2127107 minus placebo, and 90% confidence intervals are based on a mixed effect model with treatment and period as fixed effects, subject as a random effect, and a compound symmetry covariance structure.p-value: 0.85790% CI: [-0.07, 0.056]Mixed Models Analysis
Secondary

Change From Period Baseline at Week 2 in Forced Vital Capacity (FVC)

Change From Period Baseline in FVC was reported.

Time frame: Baseline and week 2 of each treatment period

Population: FAS population with available data at each specified time point.

ArmMeasureValue (LEAST_SQUARES_MEAN)Dispersion
PlaceboChange From Period Baseline at Week 2 in Forced Vital Capacity (FVC)0.00 LitersStandard Error 0.05
CK-2127107Change From Period Baseline at Week 2 in Forced Vital Capacity (FVC)-0.10 LitersStandard Error 0.04
Comparison: LSMeans, LSMean difference of CK-2127107 minus placebo, and 90% confidence intervals are based on a mixed effect model with treatment and period as fixed effects, subject as a random effect, and a compound symmetry covariance structure.p-value: 0.15190% CI: [-0.2, 0.01]Mixed Models Analysis
Secondary

Change From Period Baseline at Week 2 in FVC/FEV1 Ratio

Change From Period Baseline in FVC/FEV1 Ratio was reported.

Time frame: Baseline and week 2 of each treatment period

Population: FAS population with available data at each specified time point.

ArmMeasureValue (LEAST_SQUARES_MEAN)Dispersion
PlaceboChange From Period Baseline at Week 2 in FVC/FEV1 Ratio-1.10 ratioStandard Error 0.71
CK-2127107Change From Period Baseline at Week 2 in FVC/FEV1 Ratio0.47 ratioStandard Error 0.69
Comparison: LSMeans, LSMean difference of CK-2127107 minus placebo, and 90% confidence intervals are based on a mixed effect model with treatment and period as fixed effects, subject as a random effect, and a compound symmetry covariance structure.p-value: 0.1190% CI: [-0.05, 3.17]Mixed Models Analysis
Secondary

Change From Period Baseline at Week 2 in Heart Rate (HR)

HR was reported at isotime and peak exercise during CWR test.

Time frame: Baseline and week 2 of each treatment period

Population: FAS population with available data at each specified time point.

ArmMeasureGroupValue (LEAST_SQUARES_MEAN)Dispersion
PlaceboChange From Period Baseline at Week 2 in Heart Rate (HR)Peak-1.6 Beats/minStandard Error 1.5
PlaceboChange From Period Baseline at Week 2 in Heart Rate (HR)Isotime-1.5 Beats/minStandard Error 1.7
CK-2127107Change From Period Baseline at Week 2 in Heart Rate (HR)Peak-0.5 Beats/minStandard Error 1.5
CK-2127107Change From Period Baseline at Week 2 in Heart Rate (HR)Isotime0.7 Beats/minStandard Error 1.6
Comparison: Peak: LSMeans, LSMean difference of CK-2127107 minus placebo, and 90% confidence intervals are based on a mixed effect model with treatment and period as fixed effects, subject as a random effect, and a compound symmetry covariance structure.p-value: 0.54490% CI: [-1.9, 4]Mixed Models Analysis
Comparison: Isotime: LSMeans, LSMean difference of CK-2127107 minus placebo, and 90% confidence intervals are based on a mixed effect model with treatment and period as fixed effects, subject as a random effect, and a compound symmetry covariance structure.p-value: 0.21690% CI: [-0.7, 5]Mixed Models Analysis
Secondary

Change From Period Baseline at Week 2 in Inspiratory Capacity (IC)

IC was defined as the volume of air that can be inspired after a normal expiration; it is the sum of the VT and the IRV. IC was reported at isotime and peak exercise during CWR test.

Time frame: Baseline and week 2 of each treatment period

Population: FAS population with available data at each specified time point.

ArmMeasureGroupValue (LEAST_SQUARES_MEAN)Dispersion
PlaceboChange From Period Baseline at Week 2 in Inspiratory Capacity (IC)Peak-0.047 LitersStandard Error 0.048
PlaceboChange From Period Baseline at Week 2 in Inspiratory Capacity (IC)Isotime-0.09 LitersStandard Error 0.045
CK-2127107Change From Period Baseline at Week 2 in Inspiratory Capacity (IC)Peak0.048 LitersStandard Error 0.046
CK-2127107Change From Period Baseline at Week 2 in Inspiratory Capacity (IC)Isotime0.042 LitersStandard Error 0.043
Comparison: Peak: LSMeans, LSMean difference of CK-2127107 minus placebo, and 90% confidence intervals are based on a mixed effect model with treatment and period as fixed effects, subject as a random effect, and a compound symmetry covariance structure.p-value: 0.190% CI: [0, 0.189]Mixed Models Analysis
Comparison: Isotime: LSMeans, LSMean difference of CK-2127107 minus placebo, and 90% confidence intervals are based on a mixed effect model with treatment and period as fixed effects, subject as a random effect, and a compound symmetry covariance structure.p-value: 0.00890% CI: [0.053, 0.213]Mixed Models Analysis
Secondary

Change From Period Baseline at Week 2 in Inspiratory Capacity (IC) Change From Peak to Rest

IC was defined as the volume of air that can be inspired after a normal expiration; it is the sum of the tidal volume (VT) and the IRV.

Time frame: Baseline and week 2 of each treatment period

Population: FAS population with available data each specified time point.

ArmMeasureValue (LEAST_SQUARES_MEAN)Dispersion
PlaceboChange From Period Baseline at Week 2 in Inspiratory Capacity (IC) Change From Peak to Rest-0.008 LitersStandard Error 0.051
CK-2127107Change From Period Baseline at Week 2 in Inspiratory Capacity (IC) Change From Peak to Rest0.044 LitersStandard Error 0.048
Comparison: LSMeans, LSMean difference of CK-2127107 minus placebo, and 90% confidence intervals are based on a mixed effect model with treatment and period as fixed effects, subject as a random effect, and a compound symmetry covariance structure.p-value: 0.44790% CI: [-0.063, 0.167]Mixed Models Analysis
Secondary

Change From Period Baseline at Week 2 in Oxygen Uptake (VO2)

VO2 was defined as volume of O2 extracted from inspired air in a given period of time. VO2 was reported at isotime and peak exercise during CWR test.

Time frame: Baseline and week 2 of each treatment period

Population: FAS population with available data at each specified time point.

ArmMeasureGroupValue (LEAST_SQUARES_MEAN)Dispersion
PlaceboChange From Period Baseline at Week 2 in Oxygen Uptake (VO2)Peak-0.0054 Liter per minute (L/min)Standard Error 0.0193
PlaceboChange From Period Baseline at Week 2 in Oxygen Uptake (VO2)Isotime-0.0006 Liter per minute (L/min)Standard Error 0.0155
CK-2127107Change From Period Baseline at Week 2 in Oxygen Uptake (VO2)Peak-0.0273 Liter per minute (L/min)Standard Error 0.0182
CK-2127107Change From Period Baseline at Week 2 in Oxygen Uptake (VO2)Isotime-0.0330 Liter per minute (L/min)Standard Error 0.0147
Comparison: Peak: LSMeans, LSMean difference of CK-2127107 minus placebo, and 90% confidence intervals are based on a mixed effect model with treatment and period as fixed effects, subject as a random effect, and a compound symmetry covariance structure.p-value: 0.43890% CI: [-0.0694, 0.0256]Mixed Models Analysis
Comparison: Isotime: LSMeans, LSMean difference of CK-2127107 minus placebo, and 90% confidence intervals are based on a mixed effect model with treatment and period as fixed effects, subject as a random effect, and a compound symmetry covariance structure.p-value: 0.11490% CI: [-0.0663, 0.0014]Mixed Models Analysis
Secondary

Change From Period Baseline at Week 2 in Perceived Exertion for Dyspnea and Leg Discomfort (BORG CR10)

The Borg Scale (Borg CR10) is a simple 10-item method of rating perceived exertion and collects information on perceived exertion in an individual's rating of exercise intensity. Participants were asked to use this scale to rate the intensity of their breathing and leg discomfort before, during, and after exercise. Scores range from 0 (Complete Rest) to 10 (Extremely Hard (almost maximal)). BORG CR10 was reported at isotime and peak exercise during CWR test.

Time frame: Baseline and week 2 of each treatment period

Population: FAS population with available data at each specified time point.

ArmMeasureGroupValue (LEAST_SQUARES_MEAN)Dispersion
PlaceboChange From Period Baseline at Week 2 in Perceived Exertion for Dyspnea and Leg Discomfort (BORG CR10)Borg (Dyspnea) at Peak0.5 units on a scaleStandard Error 0.4
PlaceboChange From Period Baseline at Week 2 in Perceived Exertion for Dyspnea and Leg Discomfort (BORG CR10)Borg (Dyspnea) at isotime0.4 units on a scaleStandard Error 0.4
PlaceboChange From Period Baseline at Week 2 in Perceived Exertion for Dyspnea and Leg Discomfort (BORG CR10)Borg (Leg Effort) at Peak-0.1 units on a scaleStandard Error 0.3
PlaceboChange From Period Baseline at Week 2 in Perceived Exertion for Dyspnea and Leg Discomfort (BORG CR10)Borg (Leg Effort) at isotime0.1 units on a scaleStandard Error 0.3
CK-2127107Change From Period Baseline at Week 2 in Perceived Exertion for Dyspnea and Leg Discomfort (BORG CR10)Borg (Leg Effort) at isotime-0.2 units on a scaleStandard Error 0.3
CK-2127107Change From Period Baseline at Week 2 in Perceived Exertion for Dyspnea and Leg Discomfort (BORG CR10)Borg (Dyspnea) at Peak-0.3 units on a scaleStandard Error 0.3
CK-2127107Change From Period Baseline at Week 2 in Perceived Exertion for Dyspnea and Leg Discomfort (BORG CR10)Borg (Leg Effort) at Peak-0.3 units on a scaleStandard Error 0.3
CK-2127107Change From Period Baseline at Week 2 in Perceived Exertion for Dyspnea and Leg Discomfort (BORG CR10)Borg (Dyspnea) at isotime-0.1 units on a scaleStandard Error 0.3
Comparison: Borg (Dyspnea) at Peak: LSMeans, LSMean difference of CK-2127107 minus placebo, and 90% confidence intervals are based on a mixed effect model with treatment and period as fixed effects, subject as a random effect, and a compound symmetry covariance structure.p-value: 0.09990% CI: [-1.7, 0]Mixed Models Analysis
Comparison: Borg (Dyspnea) at isotime: LSMeans, LSMean difference of CK-2127107 minus placebo, and 90% confidence intervals are based on a mixed effect model with treatment and period as fixed effects, subject as a random effect, and a compound symmetry covariance structure.p-value: 0.25590% CI: [-1.3, 0.2]Mixed Models Analysis
Comparison: Borg (Leg Effort) at Peak: LSMeans, LSMean difference of CK-2127107 minus placebo, and 90% confidence intervals are based on a mixed effect model with treatment and period as fixed effects, subject as a random effect, and a compound symmetry covariance structure.p-value: 0.65190% CI: [-1.1, 0.6]Mixed Models Analysis
Comparison: Borg (Leg Effort) at isotime: LSMeans, LSMean difference of CK-2127107 minus placebo, and 90% confidence intervals are based on a mixed effect model with treatment and period as fixed effects, subject as a random effect, and a compound symmetry covariance structure.p-value: 0.59190% CI: [-1, 0.5]Mixed Models Analysis
Secondary

Change From Period Baseline at Week 2 in Respiratory Exchange Ratio (RER)

The respiratory exchange ratio is equal to the VCO2 / VO2 \[RER = VCO2 (L/min) / VO2 (L/min)\]. RER was reported at isotime and peak exercise during CWR test.

Time frame: Baseline and week 2 of each treatment period

Population: FAS population with available data at each specified time point.

ArmMeasureGroupValue (LEAST_SQUARES_MEAN)Dispersion
PlaceboChange From Period Baseline at Week 2 in Respiratory Exchange Ratio (RER)Peak-0.0036 ratioStandard Error 0.0125
PlaceboChange From Period Baseline at Week 2 in Respiratory Exchange Ratio (RER)Isotime-0.0042 ratioStandard Error 0.0102
CK-2127107Change From Period Baseline at Week 2 in Respiratory Exchange Ratio (RER)Peak0.0250 ratioStandard Error 0.0119
CK-2127107Change From Period Baseline at Week 2 in Respiratory Exchange Ratio (RER)Isotime0.0143 ratioStandard Error 0.0097
Comparison: Peak: LSMeans, LSMean difference of CK-2127107 minus placebo, and 90% confidence intervals are based on a mixed effect model with treatment and period as fixed effects, subject as a random effect, and a compound symmetry covariance structure.p-value: 0.0490% CI: [0.0061, 0.0511]Mixed Models Analysis
Comparison: Isotime: LSMeans, LSMean difference of CK-2127107 minus placebo, and 90% confidence intervals are based on a mixed effect model with treatment and period as fixed effects, subject as a random effect, and a compound symmetry covariance structure.p-value: 0.15590% CI: [-0.0031, 0.0401]Mixed Models Analysis
Secondary

Change From Period Baseline at Week 2 in Systolic Blood Pressure (SBP)

SBP was reported at isotime and peak exercise during CWR test.

Time frame: Baseline and week 2 of each treatment period

Population: FAS population with available data each specified time point.

ArmMeasureGroupValue (LEAST_SQUARES_MEAN)Dispersion
PlaceboChange From Period Baseline at Week 2 in Systolic Blood Pressure (SBP)Istotime0.2 mmHgStandard Error 4.2
PlaceboChange From Period Baseline at Week 2 in Systolic Blood Pressure (SBP)Peak3.0 mmHgStandard Error 3.5
CK-2127107Change From Period Baseline at Week 2 in Systolic Blood Pressure (SBP)Peak-4.5 mmHgStandard Error 3.3
CK-2127107Change From Period Baseline at Week 2 in Systolic Blood Pressure (SBP)Istotime0.4 mmHgStandard Error 4
Comparison: Peak: LSMeans, LSMean difference of CK-2127107 minus placebo, and 90% confidence intervals are based on a mixed effect model with treatment and period as fixed effects, subject as a random effect, and a compound symmetry covariance structure.p-value: 0.17190% CI: [-16.5, 1.6]Mixed Models Analysis
Comparison: Isotime: LSMeans, LSMean difference of CK-2127107 minus placebo, and 90% confidence intervals are based on a mixed effect model with treatment and period as fixed effects, subject as a random effect, and a compound symmetry covariance structure.p-value: 0.97690% CI: [-10.3, 10.7]Mixed Models Analysis
Secondary

Change From Period Baseline at Week 2 in Tidal Volume (VT)

VT was defined as tidal volume is the volume of gas exhaled in each respiratory cycle. Tidal volume is typically measured as an average value over several respiratory cycles, and is expressed in liters. VT was reported at isotime and peak exercise during CWR test.

Time frame: Baseline and week 2 of each treatment period

Population: FAS population with available data at each specified time point.

ArmMeasureGroupValue (LEAST_SQUARES_MEAN)Dispersion
PlaceboChange From Period Baseline at Week 2 in Tidal Volume (VT)Peak-0.0689 LitersStandard Error 0.0216
PlaceboChange From Period Baseline at Week 2 in Tidal Volume (VT)Isotime-0.0582 LitersStandard Error 0.0289
CK-2127107Change From Period Baseline at Week 2 in Tidal Volume (VT)Peak-0.0299 LitersStandard Error 0.0204
CK-2127107Change From Period Baseline at Week 2 in Tidal Volume (VT)Isotime-0.0093 LitersStandard Error 0.0273
Comparison: Peak: LSMeans, LSMean difference of CK-2127107 minus placebo, and 90% confidence intervals are based on a mixed effect model with treatment and period as fixed effects, subject as a random effect, and a compound symmetry covariance structure.p-value: 0.18790% CI: [-0.0099, 0.0879]Mixed Models Analysis
Comparison: Isotime: LSMeans, LSMean difference of CK-2127107 minus placebo, and 90% confidence intervals are based on a mixed effect model with treatment and period as fixed effects, subject as a random effect, and a compound symmetry covariance structure.p-value: 0.21390% CI: [-0.0163, 0.114]Mixed Models Analysis
Secondary

Change From Period Baseline at Week 2 in Ventilation (VE)

VE was defined as volume of gas exhaled from the lungs in 1 minute, also called 'ventilation' or 'minute ventilation. VE was reported at isotime and peak exercise during CWR test.

Time frame: Baseline and week 2 of each treatment period

Population: FAS population with available data at each specified time point.

ArmMeasureGroupValue (LEAST_SQUARES_MEAN)Dispersion
PlaceboChange From Period Baseline at Week 2 in Ventilation (VE)Isotime0.04 L/minStandard Error 0.84
PlaceboChange From Period Baseline at Week 2 in Ventilation (VE)Peak-0.17 L/minStandard Error 1.04
CK-2127107Change From Period Baseline at Week 2 in Ventilation (VE)Peak0.58 L/minStandard Error 0.98
CK-2127107Change From Period Baseline at Week 2 in Ventilation (VE)Isotime0.34 L/minStandard Error 0.8
Comparison: Peak: LSMeans, LSMean difference of CK-2127107 minus placebo, and 90% confidence intervals are based on a mixed effect model with treatment and period as fixed effects, subject as a random effect, and a compound symmetry covariance structure.p-value: 0.61290% CI: [-1.75, 3.24]Mixed Models Analysis
Comparison: Isotime: LSMeans, LSMean difference of CK-2127107 minus placebo, and 90% confidence intervals are based on a mixed effect model with treatment and period as fixed effects, subject as a random effect, and a compound symmetry covariance structure.p-value: 0.78990% CI: [-1.55, 2.14]Mixed Models Analysis
Secondary

Change From Period Baseline at Week 2 in Ventilatory Equivalent for Carbon Dioxide (VE/VCO2)

VE/VCO2 was a ratio of VE to VCO2. It is a dimensionless quantity. This ratio indicates how many liters of air exhaled were breathed to eliminate 1 liter of CO2. VE/VCO2 was reported at isotime and peak exercise during CWR test.

Time frame: Baseline and week 2 of each treatment period

Population: FAS population with available data at each specified time point.

ArmMeasureGroupValue (LEAST_SQUARES_MEAN)Dispersion
PlaceboChange From Period Baseline at Week 2 in Ventilatory Equivalent for Carbon Dioxide (VE/VCO2)Peak0.05 ratioStandard Error 0.37
PlaceboChange From Period Baseline at Week 2 in Ventilatory Equivalent for Carbon Dioxide (VE/VCO2)Isotime0.05 ratioStandard Error 0.37
CK-2127107Change From Period Baseline at Week 2 in Ventilatory Equivalent for Carbon Dioxide (VE/VCO2)Peak0.77 ratioStandard Error 0.36
CK-2127107Change From Period Baseline at Week 2 in Ventilatory Equivalent for Carbon Dioxide (VE/VCO2)Isotime0.97 ratioStandard Error 0.35
Comparison: Peak: LSMeans, LSMean difference of CK-2127107 minus placebo, and 90% confidence intervals are based on a mixed effect model with treatment and period as fixed effects, subject as a random effect, and a compound symmetry covariance structure.p-value: 0.22590% CI: [-0.26, 1.7]Mixed Models Analysis
Comparison: Isotime: LSMeans, LSMean difference of CK-2127107 minus placebo, and 90% confidence intervals are based on a mixed effect model with treatment and period as fixed effects, subject as a random effect, and a compound symmetry covariance structure.p-value: 0.06490% CI: [0.11, 1.174]Mixed Models Analysis
Secondary

Change From Period Baseline at Week 2 in Ventilatory Reserve (VE/MVV)

VE/MVV provides the rate of expired ventilation to the capacity. VE/MVV was reported at isotime and peak exercise during CWR test.

Time frame: Baseline and week 2 of each treatment period

Population: FAS population with available data at each specified time point.

ArmMeasureGroupValue (LEAST_SQUARES_MEAN)Dispersion
PlaceboChange From Period Baseline at Week 2 in Ventilatory Reserve (VE/MVV)Isotime2.67 percentage of expired ventilationStandard Error 2.34
PlaceboChange From Period Baseline at Week 2 in Ventilatory Reserve (VE/MVV)Peak2.19 percentage of expired ventilationStandard Error 2.18
CK-2127107Change From Period Baseline at Week 2 in Ventilatory Reserve (VE/MVV)Peak3.62 percentage of expired ventilationStandard Error 2.1
CK-2127107Change From Period Baseline at Week 2 in Ventilatory Reserve (VE/MVV)Isotime3.52 percentage of expired ventilationStandard Error 2.26
Comparison: Peak: LSMeans, LSMean difference of CK-2127107 minus placebo, and 90% confidence intervals are based on a mixed effect model with treatment and period as fixed effects, subject as a random effect, and a compound symmetry covariance structure.p-value: 0.64890% CI: [-3.85, 6.73]Mixed Models Analysis
Comparison: Isotime: LSMeans, LSMean difference of CK-2127107 minus placebo, and 90% confidence intervals are based on a mixed effect model with treatment and period as fixed effects, subject as a random effect, and a compound symmetry covariance structure.p-value: 0.77590% CI: [-4.12, 5.82]Mixed Models Analysis
Secondary

Change From Period Baseline to Week 2 in Inspiratory Reserve Volume (IRV)

The Inspiratory reserve volume was equal to VT - IC measured in liters \[IRV (L) = VT (L) - IC (L)\]. IRV was reported at isotime and peak exercise during CWR test.

Time frame: Baseline and week 2 of each treatment period

Population: FAS population with available data at each specified time point.

ArmMeasureGroupValue (LEAST_SQUARES_MEAN)Dispersion
PlaceboChange From Period Baseline to Week 2 in Inspiratory Reserve Volume (IRV)Peak0.026 LitersStandard Error 0.049
PlaceboChange From Period Baseline to Week 2 in Inspiratory Reserve Volume (IRV)Isotime-0.042 LitersStandard Error 0.05
CK-2127107Change From Period Baseline to Week 2 in Inspiratory Reserve Volume (IRV)Peak0.077 LitersStandard Error 0.047
CK-2127107Change From Period Baseline to Week 2 in Inspiratory Reserve Volume (IRV)Isotime0.052 LitersStandard Error 0.048
Comparison: Peak: LSMeans, LSMean difference of CK-2127107 minus placebo, and 90% confidence intervals are based on a mixed effect model with treatment and period as fixed effects, subject as a random effect, and a compound symmetry covariance structure.p-value: 0.40890% CI: [-0.052, 0.154]Mixed Models Analysis
Comparison: Isotime: LSMeans, LSMean difference of CK-2127107 minus placebo, and 90% confidence intervals are based on a mixed effect model with treatment and period as fixed effects, subject as a random effect, and a compound symmetry covariance structure.p-value: 0.05890% CI: [0.013, 0.174]Mixed Models Analysis
Secondary

Number of Participants With Treatment Emergent Adverse Events

TEAEs were defined as any AE that started or worsened in severity after the first dose of study drug up to 14 days after the last dose of study drug. An AE was defined as any untoward medical occurrence in a participant administered a study drug or who had undergone study procedures and did not necessarily have a causal relationship with this treatment. An AE could therefore be any unintended sign (including an abnormal laboratory finding), symptom or disease temporally associated with the use of a medicinal (investigational) product, whether or not related to the medicinal (investigational) product. An abnormality identified during a medical test (e.g., laboratory parameter, vital sign, ECG data, physical examination) an AE only if the abnormality meets 1 of the following criteria: Induces clinical signs or symptoms, Requires active intervention, Requires interruption or discontinuation of study drug, The abnormality or test value is clinically significant in the opinion of the inves

Time frame: From first dose of study drug up to 14 days after last dose of study drug (8 weeks)

Population: SAF population

ArmMeasureValue (NUMBER)
PlaceboNumber of Participants With Treatment Emergent Adverse Events15 Participants
CK-2127107Number of Participants With Treatment Emergent Adverse Events21 Participants
Secondary

Plasma Concentration of CK-2127106 (Metabolite of CK-2127107) at Day 1 Predose, Day 14 Ctrough, Day 14 C6h

Plasma concentration of CK-2127106 (metabolite of CK-2127107) was reported.

Time frame: Day 1 predose, day 14 Ctrough, day 14 C6h

Population: PKAS population

ArmMeasureGroupValue (MEAN)Dispersion
PlaceboPlasma Concentration of CK-2127106 (Metabolite of CK-2127107) at Day 1 Predose, Day 14 Ctrough, Day 14 C6hDay 1 predose0 ng/mLStandard Deviation 0
PlaceboPlasma Concentration of CK-2127106 (Metabolite of CK-2127107) at Day 1 Predose, Day 14 Ctrough, Day 14 C6hDay 14 Ctrough1760 ng/mLStandard Deviation 1710
PlaceboPlasma Concentration of CK-2127106 (Metabolite of CK-2127107) at Day 1 Predose, Day 14 Ctrough, Day 14 C6hDay 14 C6h1770 ng/mLStandard Deviation 1620
Secondary

Plasma Concentration of CK-2127107 at Day 1 Predose, Day 14 Lowest Concentration (Ctrough), and Day 14 Concentration Predose 6 Hours (C6h)

Plasma concentration of CK-2127107 was reported.

Time frame: Day 1 predose, day 14 Ctrough, day 14 C6h

Population: The pharmacokinetic analysis set (PKAS) consisted of the administered population for which ≥ 1 quantifiable plasma trough concentration or concentration at 6 hours was available for CK-2127107, or its metabolite CK-2127106.

ArmMeasureGroupValue (MEAN)Dispersion
PlaceboPlasma Concentration of CK-2127107 at Day 1 Predose, Day 14 Lowest Concentration (Ctrough), and Day 14 Concentration Predose 6 Hours (C6h)Day 14 C6h3290 Nanogram per milliliter (ng/mL)Standard Deviation 2000
PlaceboPlasma Concentration of CK-2127107 at Day 1 Predose, Day 14 Lowest Concentration (Ctrough), and Day 14 Concentration Predose 6 Hours (C6h)Day 1 predose0 Nanogram per milliliter (ng/mL)Standard Deviation 0
PlaceboPlasma Concentration of CK-2127107 at Day 1 Predose, Day 14 Lowest Concentration (Ctrough), and Day 14 Concentration Predose 6 Hours (C6h)Day 14 Ctrough2620 Nanogram per milliliter (ng/mL)Standard Deviation 2100

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