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Oxidative stress links aging, activity, and mobility limitation

Oxidative stress links aging, activity, and mobility limitation
氧化应激与衰老、活动和活动受限有关
批准号:
8916634
负责人:
Russell S. Richardson
金额:
$0.0万
依托单位国家:
美国
项目类别:
财政年份:
2011
资助国家:
美国
项目状态:
已结题
起止时间:
2011-07-01 至 2015-06-30

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中文摘要
翻译
描述(由申请人提供): 摘要:基于美国退伍军人的人口统计学特征显示人口老龄化具有明显的流动性限制,以及氧化应激与这两个特征密切相关的前提,提出了一系列骨骼肌/血管研究。具体地说,在最近的一系列研究中,我们的团队记录了在运动期间补充抗氧化剂对血管产生的积极影响,这对年轻人产生了负面影响。更具挑衅性的发现表明,在运动训练之后,年龄较大的受试者现在也受到抗氧化剂补充的负面影响。这些发现对于理解基于运动的康复的积极作用、运动引起的氧化应激、衰老、虚弱和随后的活动限制之间的复杂平衡具有重要意义。因此,提出了四个具体目标,以解决以下问题:1)急性运动引起的肌肉或血液中的氧化应激是否随着年龄的增长而增加?2)对肌肉工作的哪种反应会随着年龄的增长而产生氧化应激?3)氧化应激的急性血管后果是什么?4)氧化应激在运动诱导的血管适应中的作用。这项拨款提案的中心假设是,氧化应激是一种关键机制,可以通过操纵来为老年人类的锻炼带来好处。
英文摘要
DESCRIPTION (provided by applicant): ABSTRACT: With the premise that U.S. Veteran demographics reveal an aging population with significant mobility limitation and oxidative stress is tightly linked to both of these characteristics, a series of skeletal muscle/vascular studies are proposed. Specifically, in a series of recent studies our group has documented positive vascular consequences of antioxidant supplementation during exercise in older subjects that negatively impacted young people. Further provocative findings revealed that following exercise training the older subjects were now also negatively impacted by the antioxidant supplementation. These findings have implications for the understanding of the complex balance between the positive effects of exercise-based rehabilitation, exercise induced oxidative stress, aging, frailty, and subsequent mobility limitation. Therefore four specific aims are proposed that will address the following: 1) Is acute exercise-induced oxidative stress greater in muscle or blood with age? 2) Which response to muscular work generates oxidative stress with age? 3) What are the acute vascular consequences of oxidative stress with age? And 4) The role of oxidative stress in the exercise-induced vascular adaptations with age. The Central Hypothesis of this grant proposal is that oxidative stress is a key mechanism that can be manipulated to contribute to the benefits of exercise in aging humans.
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