Javadov Sabzali, Jang Sehwan, Rodriguez-Reyes Natividad, Rodriguez-Zayas Ana E, Soto Hernandez Jessica, Krainz Tanja, Wipf Peter, Frontera Walter
Department of Physiology, School of Medicine, University of Puerto Rico, San Juan, PR, USA.
Department of Chemistry, University of Pittsburgh, Pittsburgh, PA, USA.
Oncotarget. 2015 Nov 24;6(37):39469-81. doi: 10.18632/oncotarget.5783.
Mitochondrial dysfunction plays a central role in the pathogenesis of sarcopenia associated with a loss of mass and activity of skeletal muscle. In addition to energy deprivation, increased mitochondrial ROS damage proteins and lipids in aged skeletal muscle. Therefore, prevention of mitochondrial ROS is important for potential therapeutic strategies to delay sarcopenia. This study elucidates the pharmacological efficiency of the new developed mitochondria-targeted ROS and electron scavenger, XJB-5-131 (XJB) to restore muscle contractility and mitochondrial function in aged skeletal muscle. Male adult (5-month old) and aged (29-month old) Fischer Brown Norway (F344/BN) rats were treated with XJB for four weeks and contractile properties of single skeletal muscle fibres and activity of mitochondrial ETC complexes were determined at the end of the treatment period. XJB-treated old rats showed higher muscle contractility associated with prevention of protein oxidation in both muscle homogenate and mitochondria compared with untreated counterparts. XJB-treated animals demonstrated a high activity of the respiratory complexes I, III, and IV with no changes in citrate synthase activity. These data demonstrate that mitochondrial ROS play a causal role in muscle weakness, and that a ROS scavenger specifically targeted to mitochondria can reverse age-related alterations of mitochondrial function and improve contractile properties in skeletal muscle.
线粒体功能障碍在与骨骼肌质量和活性丧失相关的肌肉减少症发病机制中起核心作用。除能量剥夺外,线粒体活性氧增加会损害衰老骨骼肌中的蛋白质和脂质。因此,预防线粒体活性氧对于延缓肌肉减少症的潜在治疗策略很重要。本研究阐明了新开发的线粒体靶向活性氧和电子清除剂XJB-5-131(XJB)恢复衰老骨骼肌肌肉收缩力和线粒体功能的药理作用。雄性成年(5个月大)和老年(29个月大)Fischer Brown Norway(F344/BN)大鼠接受XJB治疗4周,并在治疗期结束时测定单个骨骼肌纤维的收缩特性和线粒体电子传递链复合物的活性。与未治疗的老年大鼠相比,接受XJB治疗的老年大鼠表现出更高的肌肉收缩力,同时肌肉匀浆和线粒体中的蛋白质氧化均得到预防。接受XJB治疗的动物呼吸复合物I、III和IV活性较高,柠檬酸合酶活性无变化。这些数据表明线粒体活性氧在肌肉无力中起因果作用,并且专门靶向线粒体的活性氧清除剂可以逆转与年龄相关的线粒体功能改变并改善骨骼肌的收缩特性。