骨骼肌中的ROS和RNS信号:关键信号和治疗靶点。

Luke P Michaelson, Colleen Iler, Christopher W Ward
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引用次数: 13

摘要

通过激活分子信号通路,最佳营养和活动/锻炼可以促进骨骼肌的健康。活性氧(ROS)或活性氮(RNS)已被证明可以调节许多生化过程,包括葡萄糖摄取、基因表达、钙信号传导和收缩性。在病理状态下,ROS/RNS信号传导过度或功能障碍导致骨骼肌收缩功能障碍和肌病。在这里,我们简要回顾了ROS/RNS化学,并讨论了ROS/RNS信号传导的概念及其在横纹肌生理和病理生理过程中的作用。
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ROS and RNS signaling in skeletal muscle: critical signals and therapeutic targets.

The health of skeletal muscle is promoted by optimal nutrition and activity/exercise through the activation of molecular signaling pathways. Reactive oxygen species (ROS) or reactive nitrogen species (RNS) have been shown to modulate numerous biochemical processes including glucose uptake, gene expression, calcium signaling, and contractility. In pathological conditions, ROS/RNS signaling excess or dysfunction contributes to contractile dysfunction and myopathy in skeletal muscle. Here we provide a brief review of ROS/RNS chemistry and discuss concepts of ROS/RNS signaling and its role in physiological and pathophysiological processes within striated muscle.

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来源期刊
Annual review of nursing research
Annual review of nursing research Medicine-Medicine (all)
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期刊介绍: This landmark annual review has provided nearly three decades of knowledge, insight, and research on topics critical to nurses everywhere. The purpose of this annual review is to critically examine the full gamut of literature on key topics in nursing practice, including nursing theory, care delivery, nursing education, and the professional aspects of nursing. Past volumes of ARNR have addressed critical issues such as: •Pediatric care •Complementary and alternative health •Chronic illness •Geriatrics •Alcohol abuse •Patient safety •Rural nursing •Tobacco use
期刊最新文献
Simulation in Undergraduate Education. State of Simulation Research in Advanced Practice Nursing Education. Human Simulation in Nursing Education. Hospital-Based Simulation. Interprofessional Simulation: From the Classroom to Clinical Practice.
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