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The complex interplay of iron metabolism,reactive oxygen species,and reactive nitrogen species: Insights into the potential of various iron therapies to induce oxidative and nitrosative stress
Affiliation:1. Outpatient Clinic for Oncology and Haematology, Cologne;2. Klinikum Neustadt am Rübenberge, Neustadt am Rübenberge;3. Vifor Pharma, Munich, Germany;4. Vifor Pharma, Glattbrugg, Switzerland;5. iOMEDICO AG;6. Oncology Practice, Osnabrueck;7. Outpatient Clinic, Im Pruefling, Frankfurt;8. Oncology Outpatient Clinic, Halle/Saale;9. Practice for Oncology and Hematology, Freiburg, German
Abstract:Production of minute concentrations of superoxide (O2radical dot) and nitrogen monoxide (nitric oxide, NOradical dot) plays important roles in several aspects of cellular signaling and metabolic regulation. However, in an inflammatory environment, the concentrations of these radicals can drastically increase and the antioxidant defenses may become overwhelmed. Thus, biological damage may occur owing to redox imbalance—a condition called oxidative and/or nitrosative stress. A complex interplay exists between iron metabolism, O2radical dot, hydrogen peroxide (H2O2), and NOradical dot. Iron is involved in both the formation and the scavenging of these species. Iron deficiency (anemia) (ID(A)) is associated with oxidative stress, but its role in the induction of nitrosative stress is largely unclear. Moreover, oral as well as intravenous (iv) iron preparations used for the treatment of ID(A) may also induce oxidative and/or nitrosative stress. Oral administration of ferrous salts may lead to high transferrin saturation levels and, thus, formation of non-transferrin-bound iron, a potentially toxic form of iron with a propensity to induce oxidative stress. One of the factors that determine the likelihood of oxidative and nitrosative stress induced upon administration of an iv iron complex is the amount of labile (or weakly-bound) iron present in the complex. Stable dextran-based iron complexes used for iv therapy, although they contain only negligible amounts of labile iron, can induce oxidative and/or nitrosative stress through so far unknown mechanisms. In this review, after summarizing the main features of iron metabolism and its complex interplay with O2radical dot, H2O2, NOradical dot, and other more reactive compounds derived from these species, the potential of various iron therapies to induce oxidative and nitrosative stress is discussed and possible underlying mechanisms are proposed. Understanding the mechanisms, by which various iron formulations may induce oxidative and nitrosative stress, will help us develop better tolerated and more efficient therapies for various dysfunctions of iron metabolism.
Keywords:Intravenous iron  Nitrosative stress  Oral iron  Oxidative stress  Reactive nitrogen species  Reactive oxygen species  Free radicals
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