Nairz Manfred, Schroll Andrea, Demetz Egon, Tancevski Ivan, Theurl Igor, Weiss Günter
Department of Internal Medicine VI, Infectious Diseases, Immunology, Rheumatology, Pneumology, Medical University of Innsbruck, Austria.
Department of Internal Medicine VI, Infectious Diseases, Immunology, Rheumatology, Pneumology, Medical University of Innsbruck, Austria.
Immunobiology. 2015 Feb;220(2):280-94. doi: 10.1016/j.imbio.2014.09.010. Epub 2014 Sep 16.
Iron homeostasis and macrophage biology are closely interconnected. On the one hand, iron exerts multiple effects on macrophage polarization and functionality. On the other hand, macrophages are central for mammalian iron homeostasis. The phagocytosis of senescent erythrocytes and their degradation by macrophages enable efficient recycling of iron and the maintenance of systemic iron balance. Macrophages express multiple molecules and proteins for the acquisition and utilization of iron and many of these pathways are affected by inflammatory signals. Of note, iron availability within macrophages has significant effects on immune effector functions and metabolic pathways within these cells. This review summarizes the physiological and pathophysiological aspects of macrophage iron metabolism and highlights its relevant consequences on immune function and in common diseases such as infection and atherosclerosis.
铁稳态与巨噬细胞生物学密切相关。一方面,铁对巨噬细胞极化和功能具有多种影响。另一方面,巨噬细胞是哺乳动物铁稳态的核心。巨噬细胞对衰老红细胞的吞噬及其降解作用使得铁能够有效循环利用并维持全身铁平衡。巨噬细胞表达多种用于获取和利用铁的分子和蛋白质,其中许多途径受炎症信号影响。值得注意的是,巨噬细胞内的铁可用性对这些细胞的免疫效应功能和代谢途径具有显著影响。本综述总结了巨噬细胞铁代谢的生理和病理生理方面,并强调了其对免疫功能以及感染和动脉粥样硬化等常见疾病的相关影响。