跳至主要内容
临床试验/NCT07450690
NCT07450690招募中不适用

Deciphering Muscle-Nerve Communication Via Mitochondrial Myopathy Insights: Exploring the Effects of Exercise Training

University of Copenhagen1 个研究点 分布在 1 个国家目标入组 22 人开始时间: 2026年1月9日最近更新:
干预措施

试验速览

阶段
不适用
状态
招募中
入组人数
22
试验地点
1
主要终点
Muscle mitochondrial respiration

研究概览

简要总结

The goal of this observational study is to learn how exercise training affects molecular processes in skeletal muscle in adults with mitochondrial myopathy, compared with healthy adults.

The main questions it aims to answer are:

  • How does exercise training affect mitochondrial activity and energy production pathways in skeletal muscle in people with mitochondrial myopathy?
  • How does exercise training affect molecular signals related to muscle growth, stress responses, and muscle-nerve communication in people with mitochondrial myopathy?

Researchers will compare the trained leg to the untrained leg within the same participant, and also compare responses between participants with mitochondrial myopathy and healthy control participants, to see how molecular responses to exercise differ between groups.

The participants will:

  • Complete a 3-4-week supervised exercise training program using one leg.
  • Undergo muscle biopsies from both the trained and untrained leg.
  • Complete basic muscle strength and physical function tests.

详细描述

Mitochondrial dysfunction is a central contributor to skeletal muscle weakness, metabolic dysregulation, and reduced physical capacity in mitochondrial myopathies. Defects in mitochondrial oxidative phosphorylation impair energy production and trigger maladaptive cellular stress responses, contributing to progressive muscle deterioration. While structured exercise training has been shown to improve mitochondrial oxidative capacity and functional performance in individuals with mitochondrial myopathy, the cellular and molecular pathways driving these adaptations are not fully defined.

This study employs a within-subject, parallel-group, unilateral exercise training model to examine exercise-induced adaptations in skeletal muscle from adults with mitochondrial myopathy and matched healthy controls. Participants undergo a 3-4-week supervised unilateral aerobic interval training program consisting of 10 sessions, with the trained leg randomized and the contralateral leg serving as an internal untrained control. This design increases statistical power and allows direct comparison of trained versus untrained muscle within the same individual.

Comprehensive phenotyping is conducted before the intervention, including assessments of muscle strength, functional performance, body composition, physical activity, and maximal oxygen uptake. Skeletal muscle biopsies obtained from both legs following the intervention enable detailed evaluation of mitochondrial respiratory function, mitochondrial morphology, neuromuscular junction structure, protein synthesis, signaling pathways, and unbiased multi-omics analyses (proteomics, phosphoproteomics, metabolomics, lipidomics, and transcriptomics).

By integrating physiological, molecular, and structural outcomes, this study seeks to elucidate mechanisms by which exercise training may partially reverse mitochondrial and neuromuscular defects in mitochondrial myopathy and establish exercise as a targeted therapeutic strategy for mitochondrial dysfunction.

研究设计

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

入排标准

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

入选标准

  • Eligibility criteria for Mitochondrial Myopathy-group:
  • Inclusion Criteria
  • Known mtDNA or nuclear (nDNA) mutations
  • Age above or equal to 18 years

排除标准

  • Medical conditions which deem the MM patient unfit to complete the study
  • Current use of medications known to interact with outcome measures. (see below)
  • Pregnancy
  • The participant is for any other reason unlikely to complete the study
  • Inclusion Criteria for healthy controls
  • Age above or equal to 18 years
  • Exclusion Criteria:
  • Chronic medical conditions suspected to influence outcome measures
  • Frequent use of medicine
  • Pregnancy
  • The participant is for any other reason unlikely to complete the study

研究组 & 干预措施

Mitochondrial Myopathy

Experimental

Individuals with myopathy caused by mutations in nuclear or mitochondrial DNA

干预措施: Unilateral high-intensity interval training (HIIT) (Behavioral)

Healthy controls

Active Comparator

Control subjects matched for age, sex and BMI

干预措施: Unilateral high-intensity interval training (HIIT) (Behavioral)

结局指标

主要结局

Muscle mitochondrial respiration

时间窗: 24-72 hours after final training session

Mitochondrial O2 flux is measured by high-resolution respirometry in permeabilized fibers from muscle biopsy samples after either exercise or ususal physical activity

Muscle mitochondrial reactive oxygen species (ROS) production

时间窗: 24-72 hours after final training session

Mitochondrial H2O2 emission rates are measured by high-resolution fluorometry in permeabilized fibers from muscle biopsy samples after either exercise or ususal physical activity

次要结局

  • Muscle strength and endurance(At first, fifth and tenth training session)
  • Muscle structure and neuromuscular junction morphology(24-72 hours after final training session)
  • Muscle integrated stress responses, growth and metabolic signaling(24-72 hours after final training session)
  • Body and leg composition(Baseline and 24-72 hours after final training session)

研究者

申办方类型
Other
责任方
Principal Investigator
主要研究者

Lykke Sylow

PhD, group leader

University of Copenhagen

研究点 (1)

Loading locations...

相似试验