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临床试验/NCT03648762
NCT03648762已完成不适用

Exercise Therapy to Reduce Heart Failure Symptoms; Sorting Mechanisms of Benefit

VA Office of Research and Development2 个研究点 分布在 1 个国家目标入组 65 人开始时间: 2017年5月8日最近更新:
适应症
干预措施

试验速览

阶段
不适用
状态
已完成
入组人数
65
试验地点
2
主要终点
One Repetition Maximum- Leg Press

研究概览

简要总结

The purpose of this research study is to better understand how exercise training in older adults (≥65 years) with heart failure (HF) affects skeletal muscle both intrinsically and in respect to its impact on functional capacity. While many conceptualize HF as a pathophysiology that exclusively affects the heart, skeletal muscle atrophy and weakening are also elemental to the disease. While reduced exercise capacity is typically associated with HF, this may be related more to disease effects in skeletal muscle than the heart. This is a clinical study that focuses on exercise training which compares functional endpoints before and after training. Patients are randomized to one of three exercise training interventions (aerobic vs. aerobic and strength vs. inspiratory muscle training) for 12 weeks and are assessed pre- and post-training to determine if any differences occur in their skeletal muscle and functional capacity. Skeletal muscle biopsies before and after the exercise training intervention in order to study changes in skeletal muscle histology and biology.

Functional endpoints in this study include ventilatory gas indices from cardiopulmonary exercise testing, lower body strength testing, grip strength, sit-to-stand, six-minute-walk distance, gait speed, inspiratory muscle strength, and quality of life and physical activity-oriented questionnaires, including the Kansas City Cardiomyopathy Questionnaire, Duke Activity Status Index, and CHAMPS Physical Activity Questionnaire for Older Adults. Body composition is measured with Dual Energy X-ray (DXA) scanning. Skeletal muscle biopsies are completed in the vastus lateralis of the non-dominant leg to assess histology and biologic endpoints.

详细描述

Despite decades of research, HF remains a common disease that continues to rise in prevalence, particularly among the expanding population of older adults. By virtue of age, older adults are prone to higher incidence of HF and worse clinical consequences. Exercise intolerance and dyspnea are common symptoms that portend poor prognosis, and which erode functional independence and quality of life. Mortality and morbidity also increase significantly as functional capacity declines.

Growing evidence suggests that pathophysiology of central cardiac dysfunction is linked to skeletal muscle pathophysiology. While HF therapeutic guidelines primarily emphasize steps that improve cardiac parameters, and/or volume status, goals to modify HF skeletal muscle myopathy may constitute a vital complementary treatment target.

Ongoing analyses from our pilot VA Merit investigation provide pertinent insights and substantiation. The investigators demonstrated reduced functional capacity (both aerobic and strength) in 31 HF patients (mean age 66 years) compared to 39 age-matched healthy controls (mean age 67). The investigators also showed increased expression of genes signaling ubiquitin-mediated proteolysis in skeletal muscle in relation to decreasing aerobic and strength performance. Consistently, reduced lean muscle mass, as measured by DXA, correlated to the reduced strength indices.

This proposal constitutes a logical progression of this pilot analysis and follows the analytic path the investigators anticipated. Whereas the initial work characterized key skeletal muscle gene expression patterns in association to disease, exercise capacity, and body composition, this study compares the effects of three exercise training regimens (i.e., aerobic vs. combined aerobic and strength vs. inspiratory muscle training [IMT]) each with a unique physiological rationale. The investigators will explore differences in how each training regimen modifies clinical attributes (function/symptoms) as well as skeletal muscle biology that likely underlie these differences. These insights will help identify therapeutic strategies that better suppress injurious disease mechanisms and thereby facilitate improved clinical outcomes and quality of life.

Specific Aims:

研究设计

研究类型
Interventional
分配方式
Randomized
干预模型
Parallel
主要目的
Treatment
盲法
None

入排标准

年龄范围
50 Years 至 —(Adult, Older Adult)
性别
All
接受健康志愿者
否

入选标准

  • •Diagnosis of Heart failure
  • •Echo in two years
  • •NYHA class II or III
  • •Optimal therapy according to AHA/ACC and HFSA HF guidelines; unless documented by a provider for variation.

排除标准

  • •Major cardiovascular event or procedure within the prior 6 weeks.
  • •Severe COPD (FEV1<50%),
  • •End-stage malignancy
  • •Severe valvular heart disease that would make exercise un safe
  • •Orthopedic limitation preventing exercise
  • •Any bleeding disorder that would contraindicate safe exercise
  • •Women who are pregnant, breastfeeding, or likely to become pregnant within the next 6 months
  • •Psychiatric hospitalization within the last 3 months
  • •ICD device with heart rate limits that prohibit exercise assessments or exercise training.
  • •Referring physicians will be provided with an opportunity to reprogram devices so that patients can participate.
  • •Chronic use of oral corticosteroids or medications that affect muscle function.
  • •Notably, patients using statins will be eligible, and this will be factored into the randomization and analysis.
  • •Chronic ETOH or drug dependency shown within the last year

研究组 & 干预措施

Aerobic Exercise Intervention

Other

12 weeks of a minimum of 3 days a week for 60 minutes of aerobic exercise

干预措施: Aerobic Exercise Intervention (Behavioral)

Combined Aerobic and Strength Exercise Intervention

Other

12 weeks of a minimum of 3 days a week for 60 minutes of Combined Aerobic and Strength Exercise

干预措施: Combined Aerobic and Strength Exercise Intervention (Behavioral)

Inspiratory Muscle Training Exercise Intervention

Other

12 weeks of a minimum of 3 days a week for 60 minutes of Inspiratory Muscle Training Exercise

干预措施: Inspiratory Muscle Training Exercise Intervention (Behavioral)

结局指标

主要结局

One Repetition Maximum- Leg Press

时间窗: baseline and through study completion an average of 14 weeks

Leg press will be performed on the Keiser Leg press and measured in kilograms (kg)

Oxygen Uptake (VO2) Peak

时间窗: baseline and through study completion an average of 14 weeks

a cardiopulmonary exercise test will be performed to determined peak VO2 in ML/KG/Min

次要结局

  • Skeletal Muscle Gene Expression(baseline and through study completion an average of 14 weeks)
  • Community Healthy Activities Model Program for Seniors (CHAMPS) Physical Activity Questionnaire for Older Adults - Duration Component(baseline and through study completion an average of 12 weeks)
  • Community Healthy Activities Model Program for Seniors (CHAMPS) Physical Activity Questionnaire for Older Adults - Frequency Component(baseline and through study completion an average of 12 weeks)
  • Metabolomics(baseline and through study completion an average of 14 weeks)
  • Quality of Life and Daily Function Questionnaires(baseline and through study completion an average of 12 weeks)

研究者

申办方类型
Fed
责任方
Sponsor

研究点 (2)

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