MitoVasc Institut, UMR CNRS 6015-INSERM 1083, University of Angers, 49100 Angers, France.
Department of Anesthesia and Critical Care, University Hospital of Angers, 49100 Angers, France.
Nutrients. 2021 Mar 24;13(4):1056. doi: 10.3390/nu13041056.
Iron deficiency (ID), with or without anemia, is responsible for physical fatigue. This effect may be linked to an alteration of mitochondrial metabolism. Our aim was to assess the impact of ID on skeletal striated muscle mitochondrial metabolism. Iron-deficient non-anemic mice, obtained using a bloodletting followed by a low-iron diet for three weeks, were compared to control mice. Endurance was assessed using a one-hour submaximal exercise on a Rotarod device and activities of mitochondrial complexes I and IV were measured by spectrophotometry on two types of skeletal striated muscles, the soleus and the quadriceps. As expected, ID mice displayed hematologic markers of ID and reduced iron stores, although none of them were anemic. In ID mice, endurance was significantly reduced and activity of the respiratory chain complex I, normalized to citrate synthase activity, was significantly reduced in the soleus muscle but not in the quadriceps. Complex IV activities were not significantly different, neither in the soleus nor in the quadriceps. We conclude that ID without anemia is responsible for impaired mitochondrial complex I activity in skeletal muscles with predominant oxidative metabolism. These results bring pathophysiological support to explain the improved physical activity observed when correcting ID in human. Further studies are needed to explore the mechanisms underlying this decrease in complex I activity and to assess the role of iron therapy on muscle mitochondrial metabolism.
缺铁(ID),无论是否伴有贫血,都会导致身体疲劳。这种影响可能与线粒体代谢的改变有关。我们的目的是评估 ID 对骨骼肌线粒体代谢的影响。使用放血后低铁饮食三周的方法获得缺铁但不贫血的小鼠,并与对照组小鼠进行比较。通过在旋转棒装置上进行一小时的亚最大运动量来评估耐力,通过分光光度法测量两种类型的骨骼肌(比目鱼肌和四头肌)中线粒体复合物 I 和 IV 的活性。正如预期的那样,ID 小鼠表现出 ID 和铁储存减少的血液学标志物,尽管它们都没有贫血。在 ID 小鼠中,耐力显著降低,且柠檬酸合酶活性归一化的呼吸链复合物 I 活性在比目鱼肌中显著降低,但在四头肌中没有显著降低。复合物 IV 的活性在比目鱼肌和四头肌中均无显著差异。我们得出结论,不伴贫血的 ID 导致骨骼肌中氧化代谢为主的线粒体复合物 I 活性受损。这些结果为解释纠正人类 ID 时观察到的体力活动改善提供了病理生理学支持。需要进一步研究来探索这种复合物 I 活性降低的机制,并评估铁治疗对肌肉线粒体代谢的作用。