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首页> 外文期刊>Frontiers in Physiology >Effects of Age on Na +,K +-ATPase Expression in Human and Rodent Skeletal Muscle
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Effects of Age on Na +,K +-ATPase Expression in Human and Rodent Skeletal Muscle

机译:年龄对人和啮齿动物骨骼肌Na + ,K + -ATPase表达的影响

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The maintenance of transmembrane Na~(+)and K~(+)concentration gradients and membrane potential is vital for the production of force in skeletal muscle. In aging an inability to maintain ion regulation and membrane potential would have adverse consequences on the capacity for performing repeated muscle contractions, which are critical for everyday activities and functional independence. This short review focusses on the effects of aging on one major and vital component affecting muscle Na~(+)and K~(+)concentrations, membrane potential and excitability in skeletal muscle, the Na~(+),K~(+)-ATPase (Na~(+),K~(+)-pump, NKA) protein. The review examines the effects of age on NKA in both human and rodent models and highlights a distant lack of research in NKA with aging. In rodents, the muscle NKA measured by [~(3)H]ouabain binding site content, declines with advanced age from peak values in early life. In human skeletal muscle, however, there appears to be no age effect on [~(3)H]ouabain binding site content in physically active older adults between 55 and 76 years compared to those aged between 18 and 30 years of age. Analysis of the NKA isoforms reveal differential changes with age in fiber-types in both rat and humans. The data show considerable disparities, suggesting different regulation of NKA isoforms between rodents and humans. Finally we review the importance of physical activity on NKA content in older humans. Findings suggest that physical activity levels of an individual may have a greater effect on regulating the NKA content in skeletal muscle rather than aging per se , at least up until 80 years of age.
机译:跨膜Na〜(+)和K〜(+)浓度梯度和膜电位的维持对于骨骼肌产生力至关重要。在衰老中,无法维持离子调节和膜电位将对执行重复肌肉收缩的能力产生不利影响,这对于日常活动和功能独立性至关重要。这篇简短的评论集中于衰老对影响骨骼肌Na〜(+)和K〜(+)浓度,膜电位和兴奋性的一种主要和重要成分的影响,Na〜(+),K〜(+) -ATPase(Na〜(+),K〜(+)-pump,NKA)蛋白。这篇综述审查了人类和啮齿动物模型中年龄对NKA的影响,并强调了对NKA随着年龄增长的研究还远远缺乏。在啮齿动物中,通过[〜(3)H]哇巴因结合位点含量测量的肌肉NKA随着年龄的增长而从早期的峰值下降。然而,在人的骨骼肌中,与年龄在18至30岁之间的人相比,年龄在55至76岁之间的有身体活动的老年人对[〜(3)H]哇巴因结合位点的含量似乎没有年龄影响。对NKA同工型的分析揭示了大鼠和人类中纤维类型随年龄的变化。数据显示出相当大的差异,表明啮齿动物和人类之间的NKA同工型有不同的调控。最后,我们回顾了体育锻炼对老年人中NKA含量的重要性。研究结果表明,个体的体育活动水平可能对调节骨骼肌中的NKA含量具有更大的影响,而不是至少在80岁之前本身就不会老化。

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