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CoQ10 and D-ribose in Patients With Diastolic Heart Failure

Reducing Symptom Burden in Patients With Heart Failure With Preserved Ejection Fraction Using Ubiquinol and/or D-ribose

Status
Completed
Phases
Phase 2
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT03133793
Enrollment
216
Registered
2017-04-28
Start date
2018-02-05
Completion date
2021-03-12
Last updated
2022-03-18

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

Conditions

Heart Failure, Diastolic

Keywords

heart failure with preserved ejection fraction

Brief summary

The purpose of this study is to compare the clinical benefits of CoQ10 and D-ribose taken by patients who have diastolic heart failure, or heart failure with preserved ejection fraction (HFpEF).

Detailed description

This study used a novel design to compare ubiquinol and/or D-ribose as supplemental treatments for HFpEF using a biobehavioral model. This was a randomized, double-blind, controlled trial with a total sample size of (N) = 216 All participants received usual care for HFpEF. Efforts were made to recruit 50% females which is the actual proportion of HFpEF patients in Kansas City area. There were 63 subjects that did not make the 7 day enrollment which dropped our participants to 153. Participants in this study were randomized into 4 study groups (total n = 153): N1 = 39 subjects: Control, receive no ubiquinol and no D-ribose; placebo capsules & powder per day. N2 = 39 subjects: Ubiquinol group, receive 600 mg of ubiquinol/day, D-ribose placebo powder per day. N3 = 37 subjects: D-ribose group, receive 15 g of D-ribose/day, placebo capsules for ubiquinol per day. N4 = 38 subjects: Ubiquinol + D-ribose group, receive 600 mg ubiquinol and 15 g D-ribose per day. The enrolled patients were randomized into four groups to receive ubiquinol (600 mg daily), D-ribose (15 g daily), ubiquinol plus D-ribose, or placebo for a period lasting 12 weeks. Both the ubiquinol and the D-ribose supplements used in the study had a certificate of analysis from the manufacturer. The Project Manager reviewed the electronic health records at the University of Kansas Health System (TUKHS) to identify subjects that met the study criteria and were approached to study inclusion. Once the subject signed the informed consent and successfully completed the 7-day run-in, they were randomly assigned to one of the four groups using a list created by a computer-based random number generator. All supplements and the placebo were indistinguishable in packaging and were distributed by the Project Manager or Research Associate independent of the PI so that the allocation of subjects to a treatment or placebo group were concealed from both subjects and key research personnel. All subjects arrived at the Clinical and Translational Science Unit (CTSU) and escorted to a private exam room. They completed the demographic form at baseline. The KCCQ and Vigor scale from the Profile of Mood States (POMS) were completed in CTSU visits at baseline, and 12 weeks along with the subject's blood pressure, heart rate, height, and weight. The patient was given privacy and asked to remove clothing above the waist. A disposable gown was provided, and the patient laid supine on the bed while an echocardiogram was completed. Approximately, 1 ml of blood was drawn to measure lactate. adenosine triphosphate (ATP), and B-type natriuretic peptide (BNP). The blood samples were measured with point-of-contact instruments within 5 minutes at the CTSU. After the echocardiogram, questionnaires, BNP, and ATP measurements, the subjects completed the six-minute walk test (6MWT) with the Borg scale. The entire data collection period was approximately 2 hours for each subject's visit to the CTSU. Follow-up calls occurred at 3, 6, and 9 weeks during the trial. Various cardiovascular risk factors were recorded such as tobacco usage, diabetes mellitus, hypercholesterolemia, hypertension, and family history of cardiovascular disease. Smoking status was recorded as either smoker or non-smoker. Diabetes mellitus was also determined by a history of the disease or use of medication for diabetes. Hypercholesterolemia was defined as a fasting total serum cholesterol level ≥ 4.9 mmol/l or use of medication. Hypertension was defined as either systolic or diastolic blood pressure ≥ 140/90 mmHg or use of hypertensive medications. Aims and Hypotheses. There were 2 aims and 6 hypotheses: AIM #1: To determine the effects of oral ubiquinol, D-ribose, or a combination of the two administered during 12 weeks on symptoms accompanying low bioenergetics in patients with HFpEF. Hypothesis #1. Ubiquinol (600 mg daily), D-ribose (15 g daily), or a combination of the two will enhance the health status of patients with HFpEF as measured by the Kansas City Cardiomyopathy Questionnaire (KCCQ). Primary outcomes of the study were patient-centered; thus the measurement of health status was a priority. Bioenergetics has both biological and behavioral components. The biological component (i.e., improved heart function) and its measurement was discussed in Aim #2. Investigators assessed patients' perceptions of their symptoms using the KCCQ, a self-administered questionnaire that measures patients' perceptions of five domains of their health status relevant to HFpEF. These domains are: (1) physical limitations, (2) symptoms, (3) self-efficacy, (4) quality of life, and (5) social interference. The KCCQ consists of 24 items to which patients respond on a scale indicating limitations due to HF. For example, for activities such as dressing, doing yard work, or climbing a flight of stairs, patients were asked to check a response that indicates the degree to which HF has limited their ability: Extremely Limited, Quite a bit Limited, Moderately Limited, Slightly Limited, Not at all Limited, or Limited for other reasons or did not do the activity. Another item is: Over the past 2 weeks, how many times has shortness of breath limited your ability to do what you wanted? Response alternatives are: All of the time, Several times, At least once a day, 3 or more times per week but not every day, 1-2 times per week, Less than once a week, and Never over the past 2 weeks. The KCCQ takes only 4 to 6 minutes to complete and has been used in more than a hundred studies. It has excellent psychometric properties and clinical usefulness including: (1) high test-retest reliability; (2) high internal consistency within each area (e.g., Cronbach's alpha ranged from 0.78 to 0.90); (3) patients' scores concerning their health status correlate well with objective measurements of their functional capacities; and (4) the scale's sensitivity for detecting clinical changes in HF patients is significantly greater than that of the Minnesota Living with Heart Failure Scale. Investigators used the KCCQ to compare the changes in health status of patients with HFpEF taking ubiquinol, D-ribose, ubiquinol + D-ribose, or placebo. Hypothesis #2. Ubiquinol (600 mg daily), D-ribose (15 g daily), or a combination of the two will increase the level of vigor in patients with HFpEF as measured by the Vigor subscale of the Profile of Mood States (POMS). Using the Vigor subscale from the POMS questionnaire, patients rated themselves on eight adjectives (lively, active, energetic, cheerful, alert, full of pep, carefree, and vigorous) on a five-point scale (0 = not at all, 1 = a little, 2 = moderately, 3 = quite a bit, and 4 = extremely). The Vigor scale has very high internal consistency (Cronbach's alpha = 0.90), and it takes only 1 minute to complete. In many studies it has been found to be effective for assessing vigor changes associated with exercise. The KCCQ and POMS Vigor scale were administered to patients after they have been sitting quietly for 10 minutes at the beginning of each visit (baseline, 12 weeks). The total time for patients to complete both questionnaires was 5 to10 minutes. AIM #2: To determine the effects of oral ubiquinol, D-ribose, or a combination of the two over 12 weeks on biological measures in patients with HFpEF. Hypothesis #3. Ubiquinol (600 mg daily), D-ribose (15 g daily), or a combination of the two will improve left ventricular diastolic function measured by advanced echocardiographic imaging in patients with HFpEF. Two-dimensional Doppler echocardiography was used for myocardial imaging to assess cardiac function in patients with HFpEF. In this study, a echocardiography technician performed the echocardiograms during each visit (baseline and 12 weeks). Dr. Hiebert (cardiologists) determine ejection fraction (EF) and the ratio of mitral peak velocity of early filling (E) to early diastolic mitral annular velocity (eꞌ) (E/eꞌ ratio) (SV, EDV, EF) from the echocardiogram. Hypothesis #4. Ubiquinol (600 mg daily), D-ribose (15 g daily), or a combination of the two will increase the distance that patients with HFpEF can walk in 6 minutes. Investigators examined the effects of ubiquinol and/or D-ribose on the 6MWT at baseline and 12 weeks. Participants were asked to wear appropriate clothes and shoes and walk the longest distance possible in 6 minutes. Prior to exercising, there was a 10-minute rest period during which heart rate and blood pressure were recorded. Subjects walked indoors on a flat, straight 30-meter path marked every 3 meters, and they were informed that they could slow down or stop at any time. A one-lap demonstration was completed before the test began. The distance walked was recorded. Following the 6MWT, a 0.5 ml blood sample was obtained for lactate measurement. Lactate provides a measure of the oxygen debt occurring during exercise and correlates directly with reported dyspnea and fatigue. The patient also recorded perceived dyspnea and fatigue at baseline and at the end of each walk by using the Borg scale, where 0 = nothing at all, 5 = severe, and 10 = very severe. Hypothesis #5. Ubiquinol (600 mg daily), D-ribose (15 g daily), or a combination of the two will decrease venous blood B-type natriuretic peptide (BNP) levels in patients with HFpEF. BNP concentration was measured using a portable i-STAT handheld analyzer. A blood sample (20 μl) was obtained from a finger stick after the subjects have completed the questionnaires at baseline and 12 weeks. Investigators measured BNP concentration at each visit. Hypothesis #6. Ubiquinol (600 mg daily), D-ribose (15 g daily), or a combination of the two will decrease the lactate/ATP ratio in patients with HFpEF. 0.1 ml blood sample obtained by finger stick was used for ATP measurements (AquaSnap Total system) after the subject had completed the questionnaires and echocardiograms. Lactate concentration was measured after the 6MWT with a portable i-STAT handheld instrument and requires 0.5 ml blood.

Interventions

OTHERPlacebo powder

Participants will mix 15 grams placebo powder, mixed with non-carbonated liquid, one time per day for up to 12 weeks.

OTHERPlacebo pills

Participants will take matched placebo pills that are 300 mg capsules, two times daily, 1 taken in the morning and 1 taken in the evening, for up to 12 weeks.

DRUGCoQ10

Participants will take 300 mg capsules two times daily, 1 taken in the morning and 1 taken in the evening, for up to 12 weeks.

DRUGD-Ribose Oral Powder

Participants will mix 15 grams D-Ribose powder, mixed with non-carbonated liquid, one time per day for up to 12 weeks.

Sponsors

National Institute on Aging (NIA)
CollaboratorNIH
University of Kansas Medical Center
Lead SponsorOTHER

Study design

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

Eligibility

Sex/Gender
ALL
Age
50 Years to No maximum
Healthy volunteers
Yes

Inclusion criteria

* Diagnosed with HFpEF within a 6-month period * New York Heart Association (NYHA) Classification II-III HF * Have left ventricular ejection fraction (EF) ≥ 50% documented by an echocardiogram * Have a telephone or reliable phone contact * Have their own means of transportation to the study site

Exclusion criteria

* Acute coronary syndrome in the past 12 weeks * Significant valvular heart disease * Severe cardiac fibrosis (galectin-3 level \> 26 ng/ml) * Constrictive pericardium * Pulmonary fibrosis * Congenital heart disease * Hypertrophic or infiltrative cardiomyopathy * Heart transplant * Left ventricular assist device * Heart failure (HF) associated hospital admission or emergency room visit within past 30 days * Recent percutaneous coronary intervention * Significant renal and/or hepatic dysfunction * Severe cognitive impairment * Consumption of any CoQ10 (ubiquinol) or D-ribose supplements

Design outcomes

Primary

MeasureTime frameDescription
Change in Health Status of Patients With HFpEFChange from Baseline to Week 12Patients' perceptions of their symptoms were measured using the Kansas City Cardiomyopathy Questionnaire (KCCQ), a self-administered questionnaire that measures patients' perceptions of five domains of their health status relevant to HFpEF. The KCCQ is a 24 item questionnaire. Scores are transformed to a range of 0-100, in which higher scores reflect better health status. All scores are represented on a 0-to-100-point scale, where lower scores represent more severe symptoms and/or limitations and scores of 100 indicate no symptoms, no limitations, and excellent quality of life.

Secondary

MeasureTime frameDescription
Change in Ejection Fraction (EF)Change from Baseline to Week 12Change was measured using the the ejection fraction using echocardiographic imaging. Ejection fraction (EF) is the percentage of blood volume ejected in each cardiac cycle and is a representation of left ventricular systolic performance.
Change in Septal E/e'Change from Baseline to Week 12Change was measured using the the Septal E/e' using advanced echocardiographic imaging. Septal E/e' is the early diastolic mitral annulus velocity (e') estimated by tissue Doppler using an echocardiogram and the ratio of the transmitral early peak velocity (E) by pulsed wave Doppler over e' (E/e'). These are the two key parameters for grading a diastolic dysfunction as they represent a reliable noninvasive surrogate for left ventricular diastolic pressures.
Change in 6 Minute Walk Test (6MWT)Change from Baseline to Week 12Change was measured using the 6-minute walking test. The 6-minute walking test (6MWT) is a simple test. Test measures the total distance in meters a person can walk in 6 minutes.
Change in VigorChange from Baseline to Week 12Change were measured using the the Vigor subscale from the Profile of Mood States (POMS) questionnaire. Patients rated themselves on eight adjectives (lively, active, energetic, cheerful, alert, full of pep, carefree, and vigorous) on a five-point scale (0 = not at all, 1 = a little, 2 = moderately, 3 = quite a bit, and 4 = extremely). Scores for the subscale range from 0-32, in which higher scores of 32 reflected more vigor and a score of 0 reflected no vigor.
Change in LactateChange from Baseline to Week 12Change was measured for lactate. Lactate is produced by anaerobic metabolism and may reflect inadequate tissue perfusion in conditions such heart failure with preserved ejection fraction.
Change in Adenosine Triphosphate (ATP)Change from Baseline to Week 12All cellular processes require ATP as a primary energy source. The heart requires ATP for the function of membrane transport systems (e.g., Na+/K+-ATPase) as well as for sarcomere contraction and relaxation.
Change in Venous Blood B-type Natriuretic Peptide (BNP) LevelsChange from Baseline to Week 12Change was measured for brain natriuretic peptide. Brain natriuretic peptide (BNP) levels are objective measures of cardiac function. BNP testing is a useful tool in predicting prognoses in patients with heart failure

Countries

United States

Participant flow

Recruitment details

Enrollment started for this clinical trial February 5, 2018 and recruitment occurred at The University of Kansas Hospital in the cardiology and heart failure clinics.

Pre-assignment details

Trial included a 7 day run-in period where the participant was asked to take placebo capsules and powder. They had to consume 80% of both placebo items to be randomized into the study. There were many subjects who signed the consent form and started on the run-in period but never returned for data collection (n=63).

Participants by arm

ArmCount
Placebo Only
Participants in this group will receive placebo pills and placebo powder. Placebo pills: Participants will take matched placebo pills that are 300 mg capsules, two times daily, 1 taken in the morning and 1 taken in the evening, for up to 12 weeks. Placebo powder: Participants will mix 15 grams placebo powder, mixed with non-carbonated liquid, one time per day for up to 12 weeks.
39
CoQ10 Only
Participants in this group will receive CoQ10 pills and placebo powder CoQ10: Participants will take 300 mg capsules two times daily, 1 taken in the morning and 1 taken in the evening, for up to 12 weeks. Placebo powder: Participants will mix 15 grams placebo powder, mixed with non-carbonated liquid, one time per day for up to 12 weeks.
39
D-ribose Only
Participants in this group will receive placebo pills and D-ribose oral powder. D-Ribose Oral Powder: Participants will mix 15 grams D-Ribose powder, mixed with non-carbonated liquid, one time per day for up to 12 weeks. Placebo pills: Participants will take matched placebo pills that are 300 mg capsules, two times daily, 1 taken in the morning and 1 taken in the evening, for up to 12 weeks.
37
CoQ10 + D-ribose
Participants in this group will receive CoQ10 pills and D-ribose oral powder. CoQ10: Participants will take 300 mg capsules two times daily, 1 taken in the morning and 1 taken in the evening, for up to 12 weeks. D-Ribose Oral Powder: Participants will mix 15 grams D-Ribose powder, mixed with non-carbonated liquid, one time per day for up to 12 weeks.
38
Total153

Withdrawals & dropouts

PeriodReasonFG000FG001FG002FG003
Overall StudyDeath0001
Overall StudyLost to Follow-up1020
Overall StudyWithdrawal by Subject0424

Baseline characteristics

CharacteristicPlacebo OnlyTotalCoQ10 + D-riboseD-ribose OnlyCoQ10 Only
6-minute walking test (6MWT)247.87 meters
STANDARD_DEVIATION 150.96
268.49 meters
STANDARD_DEVIATION 135.54
237.85 meters
STANDARD_DEVIATION 131.05
265.58 meters
STANDARD_DEVIATION 135.96
322.69 meters
STANDARD_DEVIATION 124.18
Adenosine Phosphate (ATP)3332.87 Relative Light Units (RLU)
STANDARD_DEVIATION 844.33
3312.73 Relative Light Units (RLU)
STANDARD_DEVIATION 938.695
3383.24 Relative Light Units (RLU)
STANDARD_DEVIATION 954.03
3312.18 Relative Light Units (RLU)
STANDARD_DEVIATION 915.98
3222.63 Relative Light Units (RLU)
STANDARD_DEVIATION 1040.44
Age, Categorical
<=18 years
0 Participants0 Participants0 Participants0 Participants0 Participants
Age, Categorical
>=65 years
28 Participants104 Participants26 Participants23 Participants27 Participants
Age, Categorical
Between 18 and 65 years
11 Participants49 Participants12 Participants14 Participants12 Participants
Age, Continuous69.0 years
STANDARD_DEVIATION 9.3
69 years
STANDARD_DEVIATION 10.1
69.5 years
STANDARD_DEVIATION 9.4
72.0 years
STANDARD_DEVIATION 10.6
67.0 years
STANDARD_DEVIATION 10.6
B-type natriuretic peptide (BNP) level232 pg/mL
STANDARD_DEVIATION 388.28
181.02 pg/mL
STANDARD_DEVIATION 224.08
157.09 pg/mL
STANDARD_DEVIATION 155.27
152.48 pg/mL
STANDARD_DEVIATION 141.52
182.51 pg/mL
STANDARD_DEVIATION 211.23
Ejection Fraction (EF)51.04 percentage of ejection fraction
STANDARD_DEVIATION 7.43
51.25 percentage of ejection fraction
STANDARD_DEVIATION 5.56
51.28 percentage of ejection fraction
STANDARD_DEVIATION 4.76
50.79 percentage of ejection fraction
STANDARD_DEVIATION 4.38
51.89 percentage of ejection fraction
STANDARD_DEVIATION 5.68
Kansas City Cardiomyopathy Questionnaire48.52 units on a scale
STANDARD_DEVIATION 24.23
47.52 units on a scale
STANDARD_DEVIATION 22.03
45.63 units on a scale
STANDARD_DEVIATION 21.6
44.05 units on a scale
STANDARD_DEVIATION 19.11
51.88 units on a scale
STANDARD_DEVIATION 23.17
lactate2.45 mmol/L
STANDARD_DEVIATION 1.13
2.52 mmol/L
STANDARD_DEVIATION 1.22
2.72 mmol/L
STANDARD_DEVIATION 1.59
2.34 mmol/L
STANDARD_DEVIATION 1.12
2.58 mmol/L
STANDARD_DEVIATION 1.04
Race/Ethnicity, Customized
Ethnicity : Hispanic or Latino
1 Participants9 Participants4 Participants1 Participants3 Participants
Race/Ethnicity, Customized
Ethnicity : Non-Hispanic
37 Participants143 Participants34 Participants36 Participants36 Participants
Race/Ethnicity, Customized
Ethnicity : Unknown
1 Participants1 Participants0 Participants0 Participants0 Participants
Race/Ethnicity, Customized
Not Reported
0 Participants1 Participants1 Participants0 Participants0 Participants
Race/Ethnicity, Customized
Other
0 Participants4 Participants1 Participants1 Participants2 Participants
Race/Ethnicity, Customized
Race : African American
7 Participants26 Participants6 Participants6 Participants7 Participants
Race/Ethnicity, Customized
Race: American Indian or Alaska Native
0 Participants3 Participants2 Participants1 Participants0 Participants
Race/Ethnicity, Customized
Race: Asian
0 Participants1 Participants1 Participants0 Participants0 Participants
Race/Ethnicity, Customized
White
32 Participants118 Participants27 Participants29 Participants30 Participants
Region of Enrollment
United States
39 participants153 participants38 participants37 participants39 participants
Septal E/e'9.41 ratio
STANDARD_DEVIATION 5.54
9.94 ratio
STANDARD_DEVIATION 5.05
9.35 ratio
STANDARD_DEVIATION 4.24
11.2 ratio
STANDARD_DEVIATION 5.97
9.8 ratio
STANDARD_DEVIATION 4.27
Sex: Female, Male
Female
23 Participants86 Participants20 Participants22 Participants21 Participants
Sex: Female, Male
Male
16 Participants67 Participants18 Participants15 Participants18 Participants
Vigor Scale13.79 units on a scale
STANDARD_DEVIATION 5.7
13.24 units on a scale
STANDARD_DEVIATION 5.97
12.21 units on a scale
STANDARD_DEVIATION 5.57
13.94 units on a scale
STANDARD_DEVIATION 7.11
13 units on a scale
STANDARD_DEVIATION 5.49

Adverse events

Event typeEG000
affected / at risk
EG001
affected / at risk
EG002
affected / at risk
EG003
affected / at risk
deaths
Total, all-cause mortality
0 / 380 / 350 / 331 / 33
other
Total, other adverse events
2 / 381 / 351 / 332 / 33
serious
Total, serious adverse events
8 / 3810 / 355 / 337 / 33

Outcome results

Primary

Change in Health Status of Patients With HFpEF

Patients' perceptions of their symptoms were measured using the Kansas City Cardiomyopathy Questionnaire (KCCQ), a self-administered questionnaire that measures patients' perceptions of five domains of their health status relevant to HFpEF. The KCCQ is a 24 item questionnaire. Scores are transformed to a range of 0-100, in which higher scores reflect better health status. All scores are represented on a 0-to-100-point scale, where lower scores represent more severe symptoms and/or limitations and scores of 100 indicate no symptoms, no limitations, and excellent quality of life.

Time frame: Change from Baseline to Week 12

Population: A few of the subjects refused to complete the questionnaire or drop out of the study due to COVID-19.

ArmMeasureValue (MEAN)Dispersion
Placebo OnlyChange in Health Status of Patients With HFpEF4.15 Scores on a scaleStandard Deviation 24.04
CoQ10 OnlyChange in Health Status of Patients With HFpEF26.56 Scores on a scaleStandard Deviation 18.61
D-ribose OnlyChange in Health Status of Patients With HFpEF29.97 Scores on a scaleStandard Deviation 21.95
CoQ10 + D-riboseChange in Health Status of Patients With HFpEF33 Scores on a scaleStandard Deviation 21.45
Secondary

Change in 6 Minute Walk Test (6MWT)

Change was measured using the 6-minute walking test. The 6-minute walking test (6MWT) is a simple test. Test measures the total distance in meters a person can walk in 6 minutes.

Time frame: Change from Baseline to Week 12

Population: A few of the subjects were refused to walk due to an injury or drop out of the study due to COVID-19.

ArmMeasureValue (MEAN)Dispersion
Placebo OnlyChange in 6 Minute Walk Test (6MWT)19.62 metersStandard Deviation 76.27
CoQ10 OnlyChange in 6 Minute Walk Test (6MWT)21.21 metersStandard Deviation 36.73
D-ribose OnlyChange in 6 Minute Walk Test (6MWT)29.42 metersStandard Deviation 52.92
CoQ10 + D-riboseChange in 6 Minute Walk Test (6MWT)36.21 metersStandard Deviation 42.28
Secondary

Change in Adenosine Triphosphate (ATP)

All cellular processes require ATP as a primary energy source. The heart requires ATP for the function of membrane transport systems (e.g., Na+/K+-ATPase) as well as for sarcomere contraction and relaxation.

Time frame: Change from Baseline to Week 12

Population: The number analyzed in one or more rows differs because we had either an instrument error or we were unable to obtain an adequate blood sample.

ArmMeasureValue (MEAN)Dispersion
Placebo OnlyChange in Adenosine Triphosphate (ATP)-189.08 relative light units (RLU)Standard Deviation 828.43
CoQ10 OnlyChange in Adenosine Triphosphate (ATP)1133.5 relative light units (RLU)Standard Deviation 997.89
D-ribose OnlyChange in Adenosine Triphosphate (ATP)907.44 relative light units (RLU)Standard Deviation 1006.78
CoQ10 + D-riboseChange in Adenosine Triphosphate (ATP)686.19 relative light units (RLU)Standard Deviation 1018.41
Secondary

Change in Ejection Fraction (EF)

Change was measured using the the ejection fraction using echocardiographic imaging. Ejection fraction (EF) is the percentage of blood volume ejected in each cardiac cycle and is a representation of left ventricular systolic performance.

Time frame: Change from Baseline to Week 12

Population: Some of the patients were morbidly obese and we were unable to obtain accurate ejection fraction measurements.

ArmMeasureValue (MEAN)Dispersion
Placebo OnlyChange in Ejection Fraction (EF)-2.39 percentage of ejection fractionStandard Deviation 6.96
CoQ10 OnlyChange in Ejection Fraction (EF)4.69 percentage of ejection fractionStandard Deviation 7.72
D-ribose OnlyChange in Ejection Fraction (EF)5.64 percentage of ejection fractionStandard Deviation 6.67
CoQ10 + D-riboseChange in Ejection Fraction (EF)5.07 percentage of ejection fractionStandard Deviation 7.14
Secondary

Change in Lactate

Change was measured for lactate. Lactate is produced by anaerobic metabolism and may reflect inadequate tissue perfusion in conditions such heart failure with preserved ejection fraction.

Time frame: Change from Baseline to Week 12

Population: The number analyzed in one or more rows differs because we had either an instrument error or we were unable to obtain an adequate blood sample.

ArmMeasureValue (MEAN)Dispersion
Placebo OnlyChange in Lactate0.33 mmol/LStandard Deviation 1.26
CoQ10 OnlyChange in Lactate0 mmol/LStandard Deviation 0.79
D-ribose OnlyChange in Lactate-0.35 mmol/LStandard Deviation 0.7
CoQ10 + D-riboseChange in Lactate-0.24 mmol/LStandard Deviation 0.88
Secondary

Change in Septal E/e'

Change was measured using the the Septal E/e' using advanced echocardiographic imaging. Septal E/e' is the early diastolic mitral annulus velocity (e') estimated by tissue Doppler using an echocardiogram and the ratio of the transmitral early peak velocity (E) by pulsed wave Doppler over e' (E/e'). These are the two key parameters for grading a diastolic dysfunction as they represent a reliable noninvasive surrogate for left ventricular diastolic pressures.

Time frame: Change from Baseline to Week 12

Population: Some of the participants were morbidly obese and we were unable to obtain accurate images.

ArmMeasureValue (MEAN)Dispersion
Placebo OnlyChange in Septal E/e'1.39 ratioStandard Deviation 7.74
CoQ10 OnlyChange in Septal E/e'-1.27 ratioStandard Deviation 4.17
D-ribose OnlyChange in Septal E/e'-0.65 ratioStandard Deviation 6.48
CoQ10 + D-riboseChange in Septal E/e'-0.47 ratioStandard Deviation 4.4
Secondary

Change in Venous Blood B-type Natriuretic Peptide (BNP) Levels

Change was measured for brain natriuretic peptide. Brain natriuretic peptide (BNP) levels are objective measures of cardiac function. BNP testing is a useful tool in predicting prognoses in patients with heart failure

Time frame: Change from Baseline to Week 12

Population: We were unable to obtain blood on a few subjects or they drop out of the study due to COVID-19.

ArmMeasureValue (MEAN)Dispersion
Placebo OnlyChange in Venous Blood B-type Natriuretic Peptide (BNP) Levels-18.43 pg/mLStandard Deviation 80.37
CoQ10 OnlyChange in Venous Blood B-type Natriuretic Peptide (BNP) Levels-29.56 pg/mLStandard Deviation 67.43
D-ribose OnlyChange in Venous Blood B-type Natriuretic Peptide (BNP) Levels-42.94 pg/mLStandard Deviation 72.47
CoQ10 + D-riboseChange in Venous Blood B-type Natriuretic Peptide (BNP) Levels29.08 pg/mLStandard Deviation 68.08
Secondary

Change in Vigor

Change were measured using the the Vigor subscale from the Profile of Mood States (POMS) questionnaire. Patients rated themselves on eight adjectives (lively, active, energetic, cheerful, alert, full of pep, carefree, and vigorous) on a five-point scale (0 = not at all, 1 = a little, 2 = moderately, 3 = quite a bit, and 4 = extremely). Scores for the subscale range from 0-32, in which higher scores of 32 reflected more vigor and a score of 0 reflected no vigor.

Time frame: Change from Baseline to Week 12

Population: A few of the subjects refused to complete the questionnaire or drop out of the study due to COVID-19.

ArmMeasureValue (MEAN)Dispersion
Placebo OnlyChange in Vigor-0.54 Scores on a scaleStandard Deviation 7.32
CoQ10 OnlyChange in Vigor7.11 Scores on a scaleStandard Deviation 5.1
D-ribose OnlyChange in Vigor7.3 Scores on a scaleStandard Deviation 6.79
CoQ10 + D-riboseChange in Vigor7.61 Scores on a scaleStandard Deviation 5.9

Source: ClinicalTrials.gov · Data processed: Feb 24, 2026