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临床试验/NCT01970332
NCT01970332已完成不适用

Mitochondrial Dysfunction, Oxidative Damage and Inflammation in Claudication

University of Nebraska1 个研究点 分布在 1 个国家目标入组 220 人开始时间: 2010年9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
入组人数
220
试验地点
1
主要终点
Leg biomechanics

研究概览

简要总结

Intermittent claudication afflicts 5% of the US population older than 55 years of age and develops along with hardening of the arteries of the legs. Claudicating patients limp and can only walk very short distances because their legs hurt. This protocol evaluates the mechanisms that may produce the leg dysfunction of claudication and its successful completion can ultimately produce significant new diagnostic and treatment strategies for the care of claudicating patients.

详细描述

Claudication, defined as walking-induced leg discomfort and gait dysfunction relieved by rest, affects 5% of Americans over 55 years of age. Claudicating patients adopt sedentary lifestyles and cluster at the extreme low end of the physical activity spectrum, escalating risk for adverse health effects. The primary therapeutic goals for claudicating patients are restoration of leg function and prevention of disease progression. Current, rehabilitative interventions focus on inadequate blood flow as the only cause of claudication. Operative revascularization and/or exercise therapy are the principal conventional therapeutic modalities, providing only modest rehabilitative benefit. Applying biomechanical analysis to gait of claudicating patients, the investigators team has developed preliminary data indicating that blood flow is not the only mechanism producing the limb dysfunction of claudication. Several laboratories including the investigators own have demonstrated a myopathy, characterized by mitochondrial dysfunction, oxidative damage and inflammation, in leg skeletal muscle of claudicating patients. These conditions have not been quantified, comprehensively, in relation to claudication, and their association with severity of claudication is not known. The investigators hypothesis is that blood flow restriction is not a good predictor of limb dysfunction in claudication, whereas muscle mitochondrial dysfunction, oxidative damage and inflammation are strong predictors of limb dysfunction both at baseline and after conventional therapy with revascularization or supervised exercise. Under Aim #1, the investigators will acquire precise measurements of gastrocnemius mitochondrial function, oxidative damage and inflammation in claudicating patients, at the time of their initial presentation, and evaluate these measurements as predictors of objective measures of limb function and subjective measures of quality of life. Under Aims #2 and #3, the investigators will evaluate the effects of revascularization (Aim#2) and supervised exercise therapy (Aim#3) on mitochondrial dysfunction, oxidative damage and inflammation in claudicating gastrocnemius and on objective measures of limb function and subjective measures of quality of life. If the investigators hypothesis is correct, the work in Aim #2 will for the first time definitively demonstrate that blood flow restriction due to blockages in the arterial tree is not the only cause of claudication. The work under Aims #2 and #3 will determine whether revascularization or exercise therapy has a beneficial effect on the myopathy of claudicating muscle with associated improvement in limb function and quality of life. Finally, the proposed studies under Aims #1, #2 and #3 will provide quantitative modeling of a panel of mechanistic (bioenergetics, oxidative stress and inflammation) parameters as predictors of objective measurements of claudicating limb function and subjective measures of quality of life commonly used for clinical assessment. Measurements of gastrocnemius mitochondrial function, oxidative damage and inflammation may be useful tools that permit staging of disease for optimum intervention and evaluation of therapeutic interventions that specifically target these conditions, improving rehabilitative outcomes.

研究设计

研究类型
Interventional
分配方式
Non Randomized
干预模型
Single Group
主要目的
Health Services Research
盲法
None

入排标准

性别
All
接受健康志愿者
否

入选标准

  • •a positive history of chronic claudication
  • •exercise-limiting claudication established by history and direct observation during a screening walking test administered by the evaluating vascular surgeon
  • •an ankle/brachial index < 0.90 at rest

排除标准

  • •absence of Peripheral Arterial Disease (PAD)
  • •acute lower extremity ischemic event secondary to thromboembolic disease or acute trauma
  • •exercise capacity limited by conditions other than claudication including leg (joint/musculoskeletal, neurologic) and systemic (heart, lung disease) pathology

研究组 & 干预措施

No Exercise Therapy or Revascularization operation

No Intervention

The patient is evaluated but no intervention

Revascularization Surgery

Experimental

The patient undergoes surgery to revascularize the ischemic, symptomatic limb(s)

干预措施: Supervised exercise therapy (Other)

Exercise Therapy

Experimental

The patient undergoes supervised exercise therapy for 6 months

干预措施: Revascularization Surgery (Procedure)

结局指标

主要结局

Leg biomechanics

时间窗: six months

Propulsion Impulse, Ankle plantarflexor torque, Ankle plantarflexor power and maximum isometric plantarflexion force

Quality of life Questionnaires

时间窗: six months

Walking Impairment Questionnaire and the Medical Outcomes Study Short Form 36 Healthy Survey

Walking distances

时间窗: six months

Initial Claudication Distance, Absolute Claudication Distance, 6-Minute Walking Distance

Leg hemodynamics

时间窗: 6 months

Ankle Brachial Index

次要结局

  • Myofiber Oxidative Damage(6 months)
  • Myofiber Morphology(6 months)
  • Myofiber Mitochondrial Function(6 months)
  • Muscle inflammation(6 months)

研究者

申办方类型
Other
责任方
Sponsor

研究点 (1)

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