Fischer Christine, Valente de Souza Lara, Komlódi Timea, Garcia-Souza Luiz F, Volani Chiara, Tymoszuk Piotr, Demetz Egon, Seifert Markus, Auer Kristina, Hilbe Richard, Brigo Natascha, Petzer Verena, Asshoff Malte, Gnaiger Erich, Weiss Günter
Department of Internal Medicine II, Medical University of Innsbruck, Anichstrasse 35, 6020 Innsbruck, Austria.
Christian Doppler Laboratory for Iron Metabolism and Anemia Research, Medical University of Innsbruck, Anichstrasse 35, 6020 Innsbruck, Austria.
Metabolites. 2022 Mar 21;12(3):270. doi: 10.3390/metabo12030270.
Iron is an essential component for metabolic processes, including oxygen transport within hemoglobin, tricarboxylic acid (TCA) cycle activity, and mitochondrial energy transformation. Iron deficiency can thus lead to metabolic dysfunction and eventually result in iron deficiency anemia (IDA), which affects approximately 1.5 billion people worldwide. Using a rat model of IDA induced by phlebotomy, we studied the effects of IDA on mitochondrial respiration in peripheral blood mononuclear cells (PBMCs) and the liver. Furthermore, we evaluated whether the mitochondrial function evaluated by high-resolution respirometry in PBMCs reflects corresponding alterations in the liver. Surprisingly, mitochondrial respiratory capacity was increased in PBMCs from rats with IDA compared to the controls. In contrast, mitochondrial respiration remained unaffected in livers from IDA rats. Of note, citrate synthase activity indicated an increased mitochondrial density in PBMCs, whereas it remained unchanged in the liver, partly explaining the different responses of mitochondrial respiration in PBMCs and the liver. Taken together, these results indicate that mitochondrial function determined in PBMCs cannot serve as a valid surrogate for respiration in the liver. Metabolic adaptions to iron deficiency resulted in different metabolic reprogramming in the blood cells and liver tissue.
铁是代谢过程的重要组成部分,包括血红蛋白内的氧气运输、三羧酸(TCA)循环活动以及线粒体能量转换。因此,缺铁会导致代谢功能障碍,并最终导致缺铁性贫血(IDA),全球约有15亿人受其影响。我们使用放血诱导的IDA大鼠模型,研究了IDA对外周血单核细胞(PBMC)和肝脏中线粒体呼吸的影响。此外,我们评估了通过高分辨率呼吸测定法评估的PBMC线粒体功能是否反映了肝脏中的相应变化。令人惊讶的是,与对照组相比,IDA大鼠PBMC中的线粒体呼吸能力增强。相比之下,IDA大鼠肝脏中的线粒体呼吸未受影响。值得注意的是,柠檬酸合酶活性表明PBMC中的线粒体密度增加,而肝脏中的线粒体密度保持不变,这部分解释了PBMC和肝脏中线粒体呼吸的不同反应。综上所述,这些结果表明,PBMC中测定的线粒体功能不能作为肝脏呼吸的有效替代指标。对缺铁的代谢适应导致血细胞和肝组织中不同的代谢重编程。