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The Impact of Zinc Supplementation on Left Ventricular Function in Nonischemic Cardiomyopathy

Pilot Study to Assess the Impact of Zinc Supplementation on Left Ventricular Remodeling, Function, and Oxidative Stress in Nonischemic Cardiomyopathy

Status
Completed
Phases
Phase 1
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT00696410
Enrollment
48
Registered
2008-06-12
Start date
2008-06-30
Completion date
2011-06-30
Last updated
2017-11-06

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

Conditions

Cardiomyopathies, Heart Failure

Keywords

Heart Failure, Cardiomyopathy, Remodeling, Antioxidant, Zinc, Copper

Brief summary

Heart failure affects over 5.3 million Americans and, while other cardiovascular diseases have enjoyed a reduction in mortality rates over the last decade, the mortality from heart failure continues to rise\[1\]. Thus, identifying novel therapies that can reduce heart failure development and/or progression are warranted. Unifying to most cardiomyopathic processes is an impaired handling of reactive oxygen species (ROS)\[2-4\]. Reactive oxygen species are generated as byproducts of inflammation and oxidative stress that occur in the setting of normal myocardial aerobic metabolism. Metallothionein, glutathione reductase, and superoxide dismutase are major antioxidants in the myocardium that help combat oxidative stress and prevent myocardial damage. In certain clinical settings, including cardiac ischemia, diabetes, and heavy metal excess (copper, iron), myocardial oxidative stress levels are greatly increased. When pro-oxidant levels exceed myocardial antioxidant capabilities, ROS-induced membrane, protein, and DNA inactivation can lead to the development of cardiac dysfunction. One means of preventing the development or progression of cardiomyopathy is to reduce oxidative stress through up-regulation of intramyocardial antioxidants. Murine studies of cardiomyopathy have shown that oral administration of zinc acetate may succeed as an indirect myocardial anti-oxidant because zinc sufficiently up-regulates the intramyocardial production of superoxide dismutase (a zinc-dependant anti-oxidant enzyme) and metallothionein (a super antioxidant) \[5-8\]. Zinc also directly reduces prooxidant Cu levels by reducing gastrointestinal zinc absorption. However, to date, no studies have examined the impact of zinc acetate supplementation in subjects with cardiomyopathy and systolic failure on antioxidant capacity and remodeling. The hypothesis of this pilot study is that administration of oral zinc acetate to humans with cardiomyopathy will lead to an up-regulation of myocardial anti-oxidant capabilities,leading to a favorable reduction in oxidative stress. This study will provide preliminary data to support a randomized, placebo-controlled trial of zinc therapy in heart failure as a means of improving or preventing the progression of systolic dysfunction in subjects with mild-moderate heart failure.

Detailed description

Altered regulation of the transition-metal copper (Cu) may lead to an overproduction of reactive oxygen species (ROS) with subsequent development of a nonischemic cardiomyopathy (NISCM). Myocardial Cu levels are elevated in NISCM, and Cu levels are highest in the diabetic cardiomyopathy. In humans, zinc (Zn) is an essential component of proteins critical for regulating myocardial cytoskeleton turnover and cellular proliferation. Zn also serves as an antioxidant and indirect regulator of redox-active Cu. By upregulating the chelator metallothionein, Zn reduces the levels of free Cu implicated in oxidative myocardial damage. Transgenic over-expression of the antioxidant metallothionein has been shown to reduce ROS-induced myocardial damage. In diabetic cardiomyopathy, Cu chelation improves left ventricular (LV) diastolic relaxation abnormalities. However, it is unknown if Zn supplementation could alter the progression of LV systolic dysfunction through Cu depletion and ROS reduction. The aim of this pilot study is to assess the impact of a novel intervention, Zn supplementation, on myocardial remodeling by examining changes in serum levels of the types I (PINP) and III (PIIINP) collagen N-terminal propeptides. The primary study hypothesis is that Zn supplementation will have a favorable impact on the pathophysiology of NISCM by either repleting a Zn deficiency/insufficiency or by reducing myocardial damage and adverse remodeling in the setting of redox-active Cu excess. Stable outpatients (n=40) with chronic NISCM (ejection fraction ≤40%) will receive daily oral Zn-acetate (50 mg po tid) for 10 months. Serum PINP, PIIINP, and markers of inflammation (CRP, sedimentation rate, myeloperoxidase) and oxidative stress (8-isoprostane, superoxide dismutase) will be obtained at baseline and following 10 months of Zn supplementation. Changes in collagen turnover will then be correlated with changes noted in LV systolic and diastolic function by echocardiography. Finally, we will examine for a differential treatment effect of Zn therapy in a diabetic subset (n=20) with NISCM compared with the nondiabetics.

Interventions

Zinc acetate 50 mg po TID for 10 months. Dose will be titrated to achieve ceruloplasmin levels \ 10-12.

Sponsors

National Institutes of Health (NIH)
CollaboratorNIH
University of Michigan
Lead SponsorOTHER

Study design

Allocation
NON_RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
21 Years to No maximum
Healthy volunteers
No

Inclusion criteria

* Subjects (n=40) ≥21 years of age with chronic (≥1 year duration) nonischemic cardiomyopathy (NISCM), New York Heart Association (NYHA) functional class II-III symptoms on stable medical therapy (≥3 months of stable doses of β-blocker, angiotensin inhibitor or receptor blocker, and aldosterone inhibitor \[if appropriate\] therapies) with a documented left ventricular (LV) ejection fraction ≤40% and evidence of LV dilation will be eligible for study participation. * The diagnosis of a nonischemic etiology for the cardiomyopathy must be supported by coronary angiography, stress echocardiography, or nuclear scintigraphy. * To allow for a comparison of treatment effect in diabetic versus nondiabetic NISCM, half (n=20) of the subjects enrolled will be diabetic

Exclusion criteria

* Subjects with HF that is deemed to be ischemic, congenital, valvular, or infiltrative in etiology, or chemotherapy/toxin-induced will not be eligible for enrollment. * Other

Design outcomes

Primary

MeasureTime frameDescription
Change From Baseline in Markers of Cardiac Collagen Turnover (PINP) in Patients With Systolic Heart Failure and Compared With Healthy Controls.Baseline (time 0) and after 10 months of Zinc Acetate.The intervention group (patients with systolic heart failure) was given Zinc Acetate 50 mg po three times daily for 10 months. The change from baseline in markers of cardiac collagen turnover (PINP) in patients with systolic heart failure after 10 months of zinc acetate was measured and compared with a single measure from healthy controls.

Secondary

MeasureTime frameDescription
Change From Baseline in Serum Isoprostane in Patients With Systolic Heart FailureBaseline (time 0) and 10 monthsChange from baseline in serum isoprostane 10 months after Zn Acetate in patients with systolic heart failure and compared with a single measure in healthy subjects

Other

MeasureTime frameDescription
Change in PIIINP From Baseline After 10 Months of Zinc Acetate in Systolic Heart Failure and Compared With a Single Measure in Healthy ControlsBaseline (time 0) and 10 monthsChange in PIIINP from baseline after 10 months of Zinc Acetate in patients with systolic heart failure and compared with a single measure in healthy controls
Change From Baseline in Serum Superoxide DismutaseBaseline (time 0) and 10 monthsChange from baseline in serum superoxide dismutase after 10 months of zinc acetate in patients with systolic heart failure and compared with a single measure in healthy controls
Change From Baseline in Serum Measures of of Myeloperoxidase (MPO) After 10 Months of Zinc Acetate TreatmentBaseline (time 0) and 10 monthsChange from baseline in serum myeloperoxidase (MPO) after 10 months of zinc acetate treatment in patients with systolic heart failure and compared with a single measure from healthy controls

Countries

United States

Participant flow

Recruitment details

Patient were mainly recruited from the University of Michigan outpatient Cardiovascular clinic. 10 healthy controls (to quantify normal values and QA laboratory results for novel measures) were recruited from the community via advertisement.

Pre-assignment details

The study was intended to run for 6 months. After further discussion with experts in zinc therapy, we opted to extend the study to 10 months.

Participants by arm

ArmCount
Zinc Acetate
The intervention group consisted of patients with heart failure. Patients were given Zinc Acetate 50 mg po three times a day for 10 months. The intended intervention group was n=40, of which n=38 were enrolled. Of these 38, n=25 completed 10 mo of follow-up.
38
Controls
The control group consistent of 10 persons without any known health conditions who provided laboratory samples at a single encounter to quantify normal values for the novel labs measured. No intervention was provided to the healthy controls.
10
Total48

Withdrawals & dropouts

PeriodReasonFG000FG001
Overall StudyLost to Follow-up20
Overall StudyPhysician Decision30
Overall StudyWithdrawal by Subject80

Baseline characteristics

CharacteristicZinc AcetateControlsTotal
Age, Continuous56 years
STANDARD_DEVIATION 11
52 years
STANDARD_DEVIATION 8
55 years
STANDARD_DEVIATION 11
Age, Customized
<=18 years
0 participants0 participants0 participants
Age, Customized
>=65 years
9 participants0 participants9 participants
Age, Customized
Between 18 and 64 years
29 participants10 participants39 participants
Region of Enrollment
United States
38 participants10 participants48 participants
Sex/Gender, Customized
Female
10 participants6 participants16 participants
Sex/Gender, Customized
Male
18 participants4 participants22 participants

Adverse events

Event typeEG000
affected / at risk
EG001
affected / at risk
deaths
Total, all-cause mortality
0 / 380 / 10
other
Total, other adverse events
6 / 380 / 10
serious
Total, serious adverse events
3 / 380 / 10

Outcome results

Primary

Change From Baseline in Markers of Cardiac Collagen Turnover (PINP) in Patients With Systolic Heart Failure and Compared With Healthy Controls.

The intervention group (patients with systolic heart failure) was given Zinc Acetate 50 mg po three times daily for 10 months. The change from baseline in markers of cardiac collagen turnover (PINP) in patients with systolic heart failure after 10 months of zinc acetate was measured and compared with a single measure from healthy controls.

Time frame: Baseline (time 0) and after 10 months of Zinc Acetate.

Population: Power was determined using prior studies examining the change in PINP and (separately) PIIINP in heart failure following administration of aldactone. Results below are PINP. For Controls, a single measure was obtained without further followup.

ArmMeasureGroupValue (MEDIAN)
CHF Patients With Zinc AcetateChange From Baseline in Markers of Cardiac Collagen Turnover (PINP) in Patients With Systolic Heart Failure and Compared With Healthy Controls.PINP baseline (time 0)48.1 ng/ml
CHF Patients With Zinc AcetateChange From Baseline in Markers of Cardiac Collagen Turnover (PINP) in Patients With Systolic Heart Failure and Compared With Healthy Controls.PINP after 10 mo therapy39 ng/ml
Healthy ControlsChange From Baseline in Markers of Cardiac Collagen Turnover (PINP) in Patients With Systolic Heart Failure and Compared With Healthy Controls.PINP baseline (time 0)48.1 ng/ml
Comparison: p value represents test of paired (within patient) differencep-value: 0.068Wilcoxon (Mann-Whitney)
Comparison: p value tests difference between the marker in CHF patients at time 0 and Health Controls (between group)p-value: 0.022Wilcoxon (Mann-Whitney)
Secondary

Change From Baseline in Serum Isoprostane in Patients With Systolic Heart Failure

Change from baseline in serum isoprostane 10 months after Zn Acetate in patients with systolic heart failure and compared with a single measure in healthy subjects

Time frame: Baseline (time 0) and 10 months

Population: power calculation using prior studies of the above laboratories. For Controls, a single measure was obtained without further followup.

ArmMeasureGroupValue (MEDIAN)
CHF Patients With Zinc AcetateChange From Baseline in Serum Isoprostane in Patients With Systolic Heart FailureIsoprostane baseline4.4 pg/ml
CHF Patients With Zinc AcetateChange From Baseline in Serum Isoprostane in Patients With Systolic Heart FailureIsoprostane 10 mo4.4 pg/ml
Healthy ControlsChange From Baseline in Serum Isoprostane in Patients With Systolic Heart FailureIsoprostane baseline3.8 pg/ml
Comparison: p value represents test of paired (within patient) differencep-value: 0.71Sign test
Comparison: p value tests difference between the marker in CHF patients at time 0 and Health Controls (between group)p-value: 0.33Wilcoxon (Mann-Whitney)
Other Pre-specified

Change From Baseline in Serum Measures of of Myeloperoxidase (MPO) After 10 Months of Zinc Acetate Treatment

Change from baseline in serum myeloperoxidase (MPO) after 10 months of zinc acetate treatment in patients with systolic heart failure and compared with a single measure from healthy controls

Time frame: Baseline (time 0) and 10 months

Population: Healthy controls only analyzed at one time point

ArmMeasureGroupValue (MEDIAN)
CHF Patients With Zinc AcetateChange From Baseline in Serum Measures of of Myeloperoxidase (MPO) After 10 Months of Zinc Acetate TreatmentMPO baseline (time 0)455 units per L
CHF Patients With Zinc AcetateChange From Baseline in Serum Measures of of Myeloperoxidase (MPO) After 10 Months of Zinc Acetate TreatmentMPO at 10 months816 units per L
Healthy ControlsChange From Baseline in Serum Measures of of Myeloperoxidase (MPO) After 10 Months of Zinc Acetate TreatmentMPO baseline (time 0)295 units per L
Comparison: p value represents test of paired (within patient) differencep-value: 0.92Sign test
Comparison: p value tests difference between the marker in CHF patients at time 0 and Health Controls (between group)p-value: 0.22Wilcoxon (Mann-Whitney)
Other Pre-specified

Change From Baseline in Serum Superoxide Dismutase

Change from baseline in serum superoxide dismutase after 10 months of zinc acetate in patients with systolic heart failure and compared with a single measure in healthy controls

Time frame: Baseline (time 0) and 10 months

Population: Specimens from healthy controls were only analyzed at one time frame.

ArmMeasureGroupValue (MEDIAN)
CHF Patients With Zinc AcetateChange From Baseline in Serum Superoxide DismutaseSOD at Baseline160 units per microL
CHF Patients With Zinc AcetateChange From Baseline in Serum Superoxide DismutaseSOD at 10 months151 units per microL
Healthy ControlsChange From Baseline in Serum Superoxide DismutaseSOD at Baseline117 units per microL
Comparison: p value represents test of paired (within patient) differencep-value: 0.48Sign test
Comparison: p value tests difference between the marker in CHF patients at time 0 and Health Controls (between group)p-value: 0.39Wilcoxon (Mann-Whitney)
Other Pre-specified

Change in PIIINP From Baseline After 10 Months of Zinc Acetate in Systolic Heart Failure and Compared With a Single Measure in Healthy Controls

Change in PIIINP from baseline after 10 months of Zinc Acetate in patients with systolic heart failure and compared with a single measure in healthy controls

Time frame: Baseline (time 0) and 10 months

Population: Specimens from healthy controls were only analyzed at one time frame.

ArmMeasureGroupValue (MEDIAN)
CHF Patients With Zinc AcetateChange in PIIINP From Baseline After 10 Months of Zinc Acetate in Systolic Heart Failure and Compared With a Single Measure in Healthy ControlsPIIINP baseline5.3 ng/ml
CHF Patients With Zinc AcetateChange in PIIINP From Baseline After 10 Months of Zinc Acetate in Systolic Heart Failure and Compared With a Single Measure in Healthy ControlsPIIINP 10 months5.3 ng/ml
Healthy ControlsChange in PIIINP From Baseline After 10 Months of Zinc Acetate in Systolic Heart Failure and Compared With a Single Measure in Healthy ControlsPIIINP baseline4.1 ng/ml
Comparison: p value represents test of paired (within patient) differencep-value: 0.69Sign test
Comparison: p value tests difference between the marker in CHF patients at time 0 and Health Controls (between group)p-value: 0.004Wilcoxon (Mann-Whitney)

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