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临床试验/NCT02598830
NCT02598830已完成不适用

The Granheim COPD Study: Effects of Vitamin D3-supplementation on the Efficacy of Strength Training in COPD Patients and Healthy Controls - a Double-blinded RCT

Inland Norway University of Applied Sciences1 个研究点 分布在 1 个国家目标入组 97 人开始时间: 2015年11月1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
发起方
入组人数
97
试验地点
1
主要终点
Muscle phenotype

研究概览

简要总结

This study evaluates the effect of vitamin D supplementation on outcomes of 10 weeks progressive strength training in 100 ageing subjects (>45 years of age). Participants will be recruited into two similarly sized strata; one containing COPD patients and one containing healthy subjects of similar age. In each stratum, half the participants will receive vitamin D supplementation and half the participants will receive placebo

详细描述

Physical activity is a potent way of relieving some of the adverse morbidities associated with COPD, such as muscle atrophy and reduced muscle quality. It is thus problematic that 20-30% of patients fail to elicit positive adaptations to training. This oddity has been ascribed inherent muscular properties, with potential links to comorbidities such as vitamin D and testosterone deficiency and the nature of the training program. In the present project, a double-blinded RCT will be performed to disclose the functional and biological efficacy of vitamin D supplementation (with concomitant ingestion of 1000 mg Ca2+) on the outcomes of 10 wks strength training in 100 aging individuals with or without COPD. The strength training intervention will be preceded by 3 weeks of progressive introduction to training protocols.

50 COPD patients and 50 healthy subjects will be allocated into two strata and separately randomized into two equally sized supplementation groups; (1) vitamin D3 and (2) placebo. The planned 50:50 ratio between COPD patients and healthy individuals may change, depending on the access to COPD patients. All subjects will perform lower-limb strength-training protocols in a contralateral manner: (leg 1) high-resistance (10 RM) and (leg 2) low-resistance (30 RM). Such a one-limb-at-a-time protocol ensures training that is unconfined by the cardiorespiratory limitations inherent to these patients, and allow comparison of the two training modalities in a manner unconfined by individual variation in exercise adaptability. A pilot study investigating the possible central pulmonary capacity limitation to two-legged strength training exercise in COPD patients will be performed. In this pilot study, we will compare exercise performance involving large and small muscle mass. In addition, all subjects will perform a selection of bilateral upper body exercises (10 RM), ensuring adequate hormonal responses and compliance to the study. The study is likely to revitalize guidelines for rehabilitation of COPD patients, and to provide vital information regarding the role of vitamin D in adaptations to strength training.

For outcome measures specific to COPD pasients, final analyses will be performed on data from the COPD population only. For other outcome measures, final analyses will be performed on data merged from COPD patients and healthy subjects. An important rationale behind implementing healthy control subjects is to increase the statistical power of outcome measures unrelated to COPD epidemiology, which are of general relevance to physiological adaptation to strength training. In a related set of analyses, we will perform between-groups comparisons, including multivariate analyses. We will also compare the efficacy of high- and low-resistance strength training in COPD patients and healthy control subjects. The two training modalities are expected to result in similar muscular adaptations.

In general, baseline vitamin D levels in blood, measured as 25(OH)D, is anticipated to be a determinant of the efficacy of the strength training intervention. In response to vitamin D3 supplementation, individuals with low baseline levels of 25(OH)D are expected to display more pronounced changes in biological active vitamin D, leading to more pronounced changes in functional and biological outcome measures in response to strength training. In contrast, supplementation may not lead to further elevation of blood 25(OH)D levels in individuals with high baseline levels, essentially meaning that vitamin D3 ingestion will be leveled out by or exceeded by the elimination of vitamin D derivatives. In these individuals, vitamin D3 ingestion will not have an additive effect on functional and biological outcome measures in response to strength training. To assess individual variation in vitamin D responses, data on functional and biological variables will be divided into quartiles based on baseline 25(OH)D-levels, whereupon comparisons will be made between low-end and high-end quartiles. Individual variation in responses to vitamin D supplementation and strength training will also be assessed using a mixed model approach.

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
Quadruple (Participant, Care Provider, Investigator, Outcomes Assessor)

入排标准

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

入选标准

  • •Inclusion Criteria:
  • •Stable COPD at GOLD stage II or III, FEV1/FVC < 0.7 and FEV1 <80% and >30% of predicted
  • •>45 years of age

排除标准

  • •Unstable cardiovascular disease
  • •Chronic granulomatous
  • •Known active malignant disease within last 5 years
  • •Physically disabling muscloskeletal diseases
  • •Peroral use of steroids within last 2 months
  • •Serious psychiatric comorbidity
  • •Less than 4 weeks since last return t o habit ual condit ion from exacerbation
  • •Failing to understand Norwegian literary or verbally
  • •Medical record diagnosis of asthma
  • •More than one bout of strength training per week during the last 6 months leading up to the project
  • •Healthy control group
  • •Inclusion Criteria:
  • •>45 years of age
  • •Exclusion Criteria:
  • •Unstable cardiovascular disease
  • •Chronic granulomatous
  • •Known active malignant disease within last 5 years
  • •Physically disabling muscloskeletal diseases
  • •Peroral use of steroids within last 2 months
  • •Serious psychiatric comorbidity
  • •Failing to understand Norwegian literary or verbally
  • •Medical record diagnosis of asthma
  • •More than one bout of strength training per week during the last 6 months leading up to the project

研究组 & 干预措施

Placebo+str.training, COPD & Healthy

Placebo Comparator

Placebo capsules for 30 weeks (the number of capsules ingested each day match those of the vitamin D3 group)

Progressive unilateral strength training of the legs for 3+10 weeks (weeks 15-28); leg 1 = high-load training, leg 2 = low-load training, allocated to left and right foot in a randomized manner:

  • weeks 15-17, familiarization period
  • week 18, test period
  • weeks 19-28, intervention period
  • weeks 29-30, test period

干预措施: Placebo (Dietary Supplement)

Vitamin D3+str.training, COPD & Healthy

Experimental

Vitamin D3 capsules for 30 weeks:

  • weeks 1-2: 10000 IU/day (equivalent to 250 ug), accompanied by 1000 mg Ca2+
  • weeks 3-30: 2000 IU/day (equivalent to 50 ug), accompanied by 1000 mg Ca2+

Progressive unilateral strength training of the legs for 3+10 weeks (weeks 15-28); leg 1 = high-load training, leg 2 = low-load training, allocated to left and right foot in a randomized manner:

  • weeks 15-17, familiarization period
  • week 18, test period
  • weeks 19-28, intervention period
  • weeks 29-30, test period

干预措施: Vitamin D3 (Dietary Supplement)

结局指标

主要结局

Muscle phenotype

时间窗: Changes from before to after the strength training intervention (week 19 to week 28)

Muscle fiber type composition measured in biopsies from m. vastus lateralis using immunohistochemistry

Muscle size

时间窗: Changes from before to after the strength training intervention (week 19 to week 28)

Muscle cell cross-sectional area measured in biopsies from m. vastus lateralis using immunohistochemistry

次要结局

  • One-legged cycling(Changes from before to after the strength training intervention (week 19 to week 28))
  • Lung function(Changes from before to after the strength training intervention (week 19 to week 28))
  • Steroids in skeletal muscle(Changes over the course of the intervention (week 0 to 28))
  • Pasient-reported outcome measures, COPD-specific(Changes from before to after the strength training intervention (week 19 to week 28))
  • Hormones in blood(Changes over the course of the intervention (week 0 to 28))
  • Cytokines in blood(Changes over the course of the intervention (week 0 to 28))
  • Androgen-converting enzymes in skeletal muscle(Changes from before to after the strength training intervention (week 19 to week 28))
  • Protein abundances in skeletal muscle(Changes from before to after familiarization to strength training (week 15 to week 17))
  • Vitamin D in blood(Changes over the course of the intervention (week 0 to 28))
  • Step test(Changes from before to after the strength training intervention (week 19 to week 28))
  • Pasient-reported outcome measures, generic(Changes from before to after the strength training intervention (week 19 to week 28))
  • Body mass composition(Changes from before to after the strength training intervention (week 19 to week 28))
  • Grip strength(Changes from before to after the strength training intervention (week 19 to week 28))
  • Sit-to-stand test(Changes from before to after the strength training intervention (week 19 to week 28))
  • Gene expression in skeletal muscle(Changes from before to after familiarization to strength training (week 15 to week 17))
  • Bilateral upper body maximal strength(Changes from before to after the strength training intervention (week 19 to week 28))
  • Unilateral lower body maximal muscle strength(Changes from before to after the strength training intervention (week 19 to week 28))
  • Unilateral lower body muscle endurance(Changes from before to after the strength training intervention (week 19 to week 28))
  • Muscle cell biological traits(Changes from before to after the strength training intervention (week 19 to week 28))
  • Muscle mitochondrial quantities(Changes from before to after the strength training intervention (week 19 to week 28))
  • Daily life activity level(Changes from before to after the intervention (week 0 to week 28))
  • Bilateral upper body muscle endurance(Changes from before to after the strength training intervention (week 19 to week 28))
  • Unilateral lower body isokinetic muscle strength(Changes from before to after the strength training intervention (week 19 to week 28))
  • Muscle mitochondrial functions(Changes from before to after the strength training intervention (week 19 to week 28))
  • Gene expression in skeletal muscle(Changes from before to after the strength training intervention (week 19 to week 28))
  • Protein abundances in skeletal muscle(Changes from before to after the strength training intervention (week 19 to week 28))

研究者

发起方
Inland Norway University of Applied Sciences
申办方类型
Other
责任方
Sponsor

研究点 (1)

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