Atrial Fibrillation, Sleep Apnea
Conditions
Brief summary
The Elucidation of the Influence of Sleep Apnea on Risk of Atrial Fibrillation study. The study involves a case control design to investigate the extent to which there is an independent relationship of sleep disordered breathing (SDB) and paroxysmal atrial fibrillation (PAF). Cases will be defined as clinically identified patients with PAF and controls as those without AF. In order to rigorously address important biologic confounding influences, the cases and controls will be individually matched based upon age, gender, race, and body mass index. Those participants with both PAF and SDB (Apnea Hypopnea Index, AHI\>=15) will be asked to return for a follow up exam after 3 months of SDB treatment in the Clinical Research Unit (CRU) for collection of the same measures collected at the baseline exam to observe for any significant changes with the purpose of collecting effect size data to inform future clinical trials. The total duration of the study is 4 years. The duration for any individual participant is up to from one to 13 weeks months, including a 3-month treatment period for those with moderate to severe SDB, i.e. AHI\>15.
Detailed description
Sleep-disordered breathing (SDB) is common in patients with cardiovascular disease and its attendant hypoxemia and autonomic dysfunction create a milieu that is likely to enhance AF propensity. Thus, SDB may represent a novel target for AF prevention and treatment strategies. Although our prior cross-sectional work has shown a 2-4 fold higher odds of AF related to SDB, these and other reports have not included cardiac structural data or autonomic/biochemical measures, and have addressed only arrhythmic events occurring during an overnight sleep study. In this proposal, we will examine paroxysmal AF (PAF), an early stage risk factor for persistent AF, and relevant to this proposal because it occurs prior to extensive cardiac electrical remodeling/fibrosis. OUTLINE OF STUDY VISITS Baseline Visit (SA 1 and 2). After informed consent, eligible participants will be scheduled to arrive for an overnight visit in the CRU. During the evening, participants will undergo questionnaire administration, blood pressure measurements, and anthropometry. They will be provided dinner and undergo polysomnography (PSG). In the morning, participants will undergo fasting venipuncture, overnight urine collection, ECHO, 6 minute walk test, vascular measures and blood pressure measurements. For those with PAF (cases), hook-up for continuous ECG monitoring will be performed along with education regarding how to handle the device and bathing instructions, etc. All measurements in the DCRU/CRU will be performed blinded to PAF status. The only unblinded staff will be a dedicated research assistant who will perform the ECG monitoring hook-up. Blinded staff will collect and process data and perform data entry. After the baseline visit, participants with PAF (n=150) will undergo hook-up of the ECG monitor and an activity monitor at the baseline visit to wear for a 7-21 day period. Follow-Up Visit (SA3). Those with SDB (AHI\>=15) without evidence of central apnea (central apnea index\>5) or Cheyne Stokes Respirations via baseline visit PSG and who have PAF will undergo the following. A 5-7 day home-based auto-titration (APAP, Respironics Autopap System One with humidifier) to identify the optimal positive airway pressure (PAP) setting will be performed (with settings 4-20cm H2O). At the end of the 5-7 day titration, the goal will be to identify the pressure that results in an AHI\<5 events/hour (optimally). The research assistant will re-set the device to deliver this optimal fixed pressure identified by the PI through the secure wireless web-site. An overnight DCRUCRU visit will be scheduled after 3 months of wearing CPAP during which the same measures performed at the baseline visit will be collected. STUDY PROCEDURES 2-DIMENSIONAL DOPPLER ECHOCARDIOGRAPHY. Parasternal, apical and subcostal 2-D views and apical 3D views will be obtained with transducer orientation and gain settings adjusted to optimally define endocardial surface of each cardiac chamber. POLYSOMNOGRAPHY (PSG). Procedure for PSG: Research PSG will be performed using the Compumedics E-series system (Abbottsford, AU) which will include 3 cortical encephalograms, bilateral electro-oculograms, a bipolar submental electromyogram, thoracic and abdominal respiratory inductance plethysmography, airflow (by nasal-oral thermocouple and nasal cannula pressure recording), oximetry (using highly sensitive finger pulse oximeter, sampling frequency 25Hz), electrocardiogram (ECG) at 250Hz (used to derive HRV measures of autonomic function); body position (mercury switch sensor), bilateral leg movements. EEGs are recorded at 125Hz. 3) 7-21 Day CONTINUOUS ECG MONITORING. Procedure: A 3-lead (2 channel), wireless, lightweight ECG monitoring device will be used to collect the ECG data over a 7-21 day period in those with PAF after the baseline and follow-up CRU visits. ACTIVITY MONITORING. Procedure: An accelerometer (GT3X+, Actigraph Co., Ft Walton Bch, Fl) will be used for 7-21 days, coincident with the time of continuous ECG monitoring. FASTING VENIPUNCTURE (52cc). Procedure: Phlebotomy will be performed the morning of the baseline and follow-up visits using standard techniques by trained research staff following written procedures. 6) DNA collection. Blood will be collected to extract RNA, which will be stored to test future hypotheses regarding genetic determinants of treatment response. OVERNIGHT URINE. Procedure: Overnight urine collection will be performed. ANTHROPOMETRY. Height (inches, cm), neck circumference (cm), waist circumference (cm), hip circumference (cm) will be obtained. Skinfolds are measured with calibrated metal calipers from 7 sites (chest, calf, thigh, calf, subscapular, midaxillary, suprailiac, abdominal). RESTING BLOOD PRESSURE (BP). BP will be measured after the participant has been sitting quietly for at least 5 minutes following standardized guidelines using a calibrated sphygmomanometer. Measurements will be repeated three times and recorded. QUESTIONNAIRES. The following will be collected: a) The Berlin Sleep Questionnaire, b) Epworth Sleepiness Scale, c) The Sleep Habits and Medical Condition Questionnaire d) The Medical Outcomes Survey-SF 36 (MOS-SF) e) Patient Health Questionnaire-9 (PHQ-9) f) Daily ECG/Activity Log g) Atrial Fibrillation Effect on Quality-of-life, a 20-item questionnaire that assesses the impact of atrial fibrillation on quality of life. 6 Minute Walk Test. Baseline oxygen saturation and heart rate will be recorded. If oxygen saturation \>90%, then proceed with protocol. Using the BORG Scale record rate the symptoms of breathlessness and leg fatigue after a 6 minute walk at usual pace. Arterial Applanation Tonometry: Radial artery measurements will be performed after sphygmomanometric pressure is obtained with use of an applanation tonometry probe with a minimum of two consecutive measurements to obtain pulse wave analysis results. For pulse wave velocity, lead II ECG will be performed along with cardotid and femoral applanation tomometry.
Interventions
For cases, those found to have moderate sleep apnea (AHI \>=15) will be place on CPAP therapy.
Sponsors
Study design
Eligibility
Inclusion criteria
Inclusion Criteria for Cases: PAF defined by recurrent episodes of AF, which self-terminate within a 7-day period (based upon AHA consensus statement 77) Age 18-80 years Individuals able to participate in \> 2 overnight/daytime sleep and physiologic assessments over a 3 month period. Inclusion Criteria for Controls: Age 18 to 80 years Individuals in normal sinus rhythm (NSR) with no current AF or history of AF Individuals able to participate in an overnight/daytime sleep and physiologic assessment.
Design outcomes
Primary
| Measure | Time frame | Description |
|---|---|---|
| Number of Participants With Paroxymal Atrial Fibrillation (PAF) | Baseline | Patients with diagnosis of PAF were defined as cases. PAF is the primary outcome of baseline analysis, which aimed to quantify the association of sleep apnea and PAF. |
Secondary
| Measure | Time frame | Description |
|---|---|---|
| Echocardiographic Measures- LA Volume Index | Baseline and 12 week follow up | Increased left atrial volume and strain are known risk factors of AF and PAF. Left atrial volume index (LAVI) is left atrial size indexed to Body surface area (BSA). The reference range of LAVI is 16-28 mL/m\^2. Mildly abnormal: 29-33 mL/m\^2; Moderately abnormal: 34-39 mL/m\^2; Severely abnormal: greater than or equal to 40 mL/m\^2. Echocardiography measurements were not available for some subjects due to image quality. |
| Echocardiographic Measures- LA Systolic Strain by A4C View | Baseline and 12 week follow up | Left atrial systolic strain, a measure of left atrial remodeling which is inversely related to fibrosis in PAF, is measured by 2-dimensional echocardiography. Apical four-chamber (A4C) and two-chamber (A2C) views are the most commonly used approaches to measure the strain rate (%) of left atrial. |
| Echocardiography Measures- Left Atrial Volume | Baseline and 12 week follow up | Increased left atrial volume and strain are known risk factors of AF and PAF. Echocardiography measurements were not available for some subjects due to image quality. |
| Vascular Measures- Pulse Wave Velocity | Baseline and 12 week follow up | Radial measurements were performed on the same arm using the SphygmoCor device after sphygmomanometric pressure was obtained with use of an applanation tonometry probe containing a solid state high fidelity Millar transducer over the radial artery with a minimum of two consecutive measurements to obtain pulse wave analysis results. For pulse wave velocity, lead II ECG (LL, LA, RA) was performed along with cardotid and femoral applanation tomometry. Orientation and pressure applied to the transducer were adjusted to optimize applanation of the artery between the transducer and the underlying tissue. Waveforms were processed using the SphygmoCor software (model EM3, version CvMS 9.0, Atcor Medical Pty, West Ryde, Australia).) |
| Vascular Measures- Augmentation Index | Baseline and 12 week follow up | Augmentation Index (Alx) is an indication of systemic arterial stiffness and measures the contributions of wave reflection to central systolic pressure. Scores vary based on age and gender and in a normal, healthy population research has shown can range from -10% or less up to 50%. A negative augmentation index suggests low artery stiffness (late arriving wave reflections) and a positive index is a reflection of increase artery stiffness (reflective wave arriving early in the cardiac cycle). Waveforms will be processed using the SphygmoCor software (model EM3, version CvMS 9.0, Atcor Medical Pty, West Ryde, Australia) for this measurement. It is calculated at the onset of reflected wave, Alx = AP/PP x 100. Alx = Augmentation Index, the percentage of the pulse pressure due to the AP; PP = Pulse Pressure; AP = Augmentation Pressure, the contribution of the reflected wave to the pulse pressure. |
| Echocardiographic Measures- LA Systolic Strain by A2C View | Baseline and 12 week follow up | Left atrial systolic strain, a measure of left atrial remodeling which is inversely related to fibrosis in PAF, is measured by 2-dimensional echocardiography. Apical four-chamber (A4C) and two-chamber (A2C) views are the most commonly used approaches to measure the strain rate (%) of left atrial. |
Countries
United States
Participant flow
Participants by arm
| Arm | Count |
|---|---|
| Case (Diagnosed With PAF) Cases. Patients with Paroxysmal Atrial Fibrillation who present to Electrophysiology Clinic at UHCMC and the Cleveland Clinic Foundation will be approached for recruitment in the study.
Cases completed baseline and having matched controls were included in baseline data analysis. | 150 |
| Controls Controls. Patients without AF will be recruited from General Cardiology and Internal Medicine clinics (geographically similar to controls). Selection bias will be minimized as there are a broad range of reasons for patients to present to these clinics.
Controls completed baseline and having matched cases were included in baseline data analysis. | 150 |
| Total | 300 |
Withdrawals & dropouts
| Period | Reason | FG000 | FG001 |
|---|---|---|---|
| Baseline | Equipment failure | 0 | 1 |
| Follow up Period (Case Only) | Controls not eligible for followup | 0 | 155 |
| Follow up Period (Case Only) | Not selected for follow up (AHI<15) | 92 | 0 |
| Follow up Period (Case Only) | Withdrawal by Subject | 25 | 0 |
Baseline characteristics
| Characteristic | Controls | Case (Diagnosed With PAF) | Total |
|---|---|---|---|
| Age, Continuous | 62 years STANDARD_DEVIATION 12 | 61 years STANDARD_DEVIATION 12 | 61 years STANDARD_DEVIATION 12 |
| Any use of antihypertension medications | 69 Participants | 121 Participants | 190 Participants |
| Apnea Hypopnea Index (AHI) | 13 apneas plus hypopneas per hour | 11 apneas plus hypopneas per hour | 12 apneas plus hypopneas per hour |
| Arousal Index | 19 Arousals per hour | 18 Arousals per hour | 19 Arousals per hour |
| Body Mass Index | 32 kg/m^2 STANDARD_DEVIATION 7 | 31 kg/m^2 STANDARD_DEVIATION 7 | 31 kg/m^2 STANDARD_DEVIATION 7 |
| Central Apnea Index | 0 Central apneas per hour | 0 Central apneas per hour | 0 Central apneas per hour |
| Depression | 35 Participants | 22 Participants | 57 Participants |
| Diabetes | 23 Participants | 19 Participants | 42 Participants |
| Ethnicity (NIH/OMB) Hispanic or Latino | 1 Participants | 1 Participants | 2 Participants |
| Ethnicity (NIH/OMB) Not Hispanic or Latino | 149 Participants | 149 Participants | 298 Participants |
| Ethnicity (NIH/OMB) Unknown or Not Reported | 0 Participants | 0 Participants | 0 Participants |
| High Blood cholesterol | 91 Participants | 86 Participants | 177 Participants |
| High Blood Pressure or Hypertension | 79 Participants | 87 Participants | 166 Participants |
| History of heart attack | 16 Participants | 9 Participants | 25 Participants |
| Left Atrial Systolic Strain by apical four-chamber (A4C) view | 33 percent of left atrial volume | 34 percent of left atrial volume | 33 percent of left atrial volume |
| Left Atrial Systolic Strain by apical two-chamber (A2C) view | 35 percent of left atrial volume | 34 percent of left atrial volume | 35 percent of left atrial volume |
| Left Atrial Volume | 51 mL | 63 mL | 60 mL |
| Left Atrial Volume Index | 28 mL/m^2 | 30 mL/m^2 | 29 mL/m^2 |
| Percent sleep time with oxygen saturation<90% | 0.4 percent of sleep time | 0.4 percent of sleep time | 0.4 percent of sleep time |
| Race (NIH/OMB) American Indian or Alaska Native | 0 Participants | 0 Participants | 0 Participants |
| Race (NIH/OMB) Asian | 2 Participants | 2 Participants | 4 Participants |
| Race (NIH/OMB) Black or African American | 22 Participants | 22 Participants | 44 Participants |
| Race (NIH/OMB) More than one race | 1 Participants | 1 Participants | 2 Participants |
| Race (NIH/OMB) Native Hawaiian or Other Pacific Islander | 0 Participants | 0 Participants | 0 Participants |
| Race (NIH/OMB) Unknown or Not Reported | 0 Participants | 0 Participants | 0 Participants |
| Race (NIH/OMB) White | 125 Participants | 125 Participants | 250 Participants |
| Region of Enrollment United States | 150 participants | 150 participants | 300 participants |
| Sex: Female, Male Female | 55 Participants | 55 Participants | 110 Participants |
| Sex: Female, Male Male | 95 Participants | 95 Participants | 190 Participants |
| Use of beta blocker | 35 Participants | 85 Participants | 120 Participants |
| Use of Calcium blocker | 8 Participants | 20 Participants | 28 Participants |
Adverse events
| Event type | EG000 affected / at risk | EG001 affected / at risk |
|---|---|---|
| deaths Total, all-cause mortality | 0 / 161 | 0 / 155 |
| other Total, other adverse events | 22 / 161 | 0 / 155 |
| serious Total, serious adverse events | 7 / 161 | 0 / 155 |
Outcome results
Number of Participants With Paroxymal Atrial Fibrillation (PAF)
Patients with diagnosis of PAF were defined as cases. PAF is the primary outcome of baseline analysis, which aimed to quantify the association of sleep apnea and PAF.
Time frame: Baseline
Population: Cases and controls who had matched control/case were included in baseline analysis. Only 150 cases were one-to-one matched with controls.
| Arm | Measure | Value (COUNT_OF_PARTICIPANTS) |
|---|---|---|
| Case (Diagnosed With PAF) | Number of Participants With Paroxymal Atrial Fibrillation (PAF) | 150 Participants |
| Controls | Number of Participants With Paroxymal Atrial Fibrillation (PAF) | 0 Participants |
Echocardiographic Measures- LA Systolic Strain by A2C View
Left atrial systolic strain, a measure of left atrial remodeling which is inversely related to fibrosis in PAF, is measured by 2-dimensional echocardiography. Apical four-chamber (A4C) and two-chamber (A2C) views are the most commonly used approaches to measure the strain rate (%) of left atrial.
Time frame: Baseline and 12 week follow up
| Arm | Measure | Value (MEDIAN) |
|---|---|---|
| Case (Diagnosed With PAF) | Echocardiographic Measures- LA Systolic Strain by A2C View | 36 percentage of left atrial volume |
| Controls | Echocardiographic Measures- LA Systolic Strain by A2C View | 37 percentage of left atrial volume |
Echocardiographic Measures- LA Systolic Strain by A4C View
Left atrial systolic strain, a measure of left atrial remodeling which is inversely related to fibrosis in PAF, is measured by 2-dimensional echocardiography. Apical four-chamber (A4C) and two-chamber (A2C) views are the most commonly used approaches to measure the strain rate (%) of left atrial.
Time frame: Baseline and 12 week follow up
| Arm | Measure | Value (MEDIAN) |
|---|---|---|
| Case (Diagnosed With PAF) | Echocardiographic Measures- LA Systolic Strain by A4C View | 36 percentage of left atrial volume |
| Controls | Echocardiographic Measures- LA Systolic Strain by A4C View | 29 percentage of left atrial volume |
Echocardiographic Measures- LA Volume Index
Increased left atrial volume and strain are known risk factors of AF and PAF. Left atrial volume index (LAVI) is left atrial size indexed to Body surface area (BSA). The reference range of LAVI is 16-28 mL/m\^2. Mildly abnormal: 29-33 mL/m\^2; Moderately abnormal: 34-39 mL/m\^2; Severely abnormal: greater than or equal to 40 mL/m\^2. Echocardiography measurements were not available for some subjects due to image quality.
Time frame: Baseline and 12 week follow up
| Arm | Measure | Value (MEDIAN) |
|---|---|---|
| Case (Diagnosed With PAF) | Echocardiographic Measures- LA Volume Index | 31 mL/m^2 |
| Controls | Echocardiographic Measures- LA Volume Index | 30 mL/m^2 |
Echocardiography Measures- Left Atrial Volume
Increased left atrial volume and strain are known risk factors of AF and PAF. Echocardiography measurements were not available for some subjects due to image quality.
Time frame: Baseline and 12 week follow up
Population: Cases found to have an apnea hypopnea index \>=15 were asked to continue in the study for 3 months wearing a Continuous Positive Airway Pressure (CPAP) machine.
| Arm | Measure | Value (MEDIAN) |
|---|---|---|
| Case (Diagnosed With PAF) | Echocardiography Measures- Left Atrial Volume | 67 mL |
| Controls | Echocardiography Measures- Left Atrial Volume | 72 mL |
Vascular Measures- Augmentation Index
Augmentation Index (Alx) is an indication of systemic arterial stiffness and measures the contributions of wave reflection to central systolic pressure. Scores vary based on age and gender and in a normal, healthy population research has shown can range from -10% or less up to 50%. A negative augmentation index suggests low artery stiffness (late arriving wave reflections) and a positive index is a reflection of increase artery stiffness (reflective wave arriving early in the cardiac cycle). Waveforms will be processed using the SphygmoCor software (model EM3, version CvMS 9.0, Atcor Medical Pty, West Ryde, Australia) for this measurement. It is calculated at the onset of reflected wave, Alx = AP/PP x 100. Alx = Augmentation Index, the percentage of the pulse pressure due to the AP; PP = Pulse Pressure; AP = Augmentation Pressure, the contribution of the reflected wave to the pulse pressure.
Time frame: Baseline and 12 week follow up
Population: Cases selected for follow-up and having available SphygmoCor measurements
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| Case (Diagnosed With PAF) | Vascular Measures- Augmentation Index | 28.6 percentage of augmentation pressure | Standard Deviation 13.2 |
| Controls | Vascular Measures- Augmentation Index | 26.9 percentage of augmentation pressure | Standard Deviation 11.6 |
Vascular Measures- Pulse Wave Velocity
Radial measurements were performed on the same arm using the SphygmoCor device after sphygmomanometric pressure was obtained with use of an applanation tonometry probe containing a solid state high fidelity Millar transducer over the radial artery with a minimum of two consecutive measurements to obtain pulse wave analysis results. For pulse wave velocity, lead II ECG (LL, LA, RA) was performed along with cardotid and femoral applanation tomometry. Orientation and pressure applied to the transducer were adjusted to optimize applanation of the artery between the transducer and the underlying tissue. Waveforms were processed using the SphygmoCor software (model EM3, version CvMS 9.0, Atcor Medical Pty, West Ryde, Australia).)
Time frame: Baseline and 12 week follow up
Population: Cases selected for follow-up and having available SphygmoCor measurements
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| Case (Diagnosed With PAF) | Vascular Measures- Pulse Wave Velocity | 9.5 m/s | Standard Deviation 2.7 |
| Controls | Vascular Measures- Pulse Wave Velocity | 10.5 m/s | Standard Deviation 3.8 |