Action of chelators in iron-loaded cardiac cells: accessibility to intracellular labile iron and functional consequences

Author:

Glickstein Hava1,El Rinat Ben1,Link Gabi1,Breuer William1,Konijn Abraham M.1,Hershko Chaim1,Nick Hanspeter1,Cabantchik Z. Ioav1

Affiliation:

1. From the Department of Biological Chemistry and Charles E. Smith Laboratory of Psychobiology, Institute of Life Sciences; Department of Human Nutrition and Metabolism, Faculty of Medicine, The Hebrew University, Jerusalem; Department of Hematology, Shaa're Zedek Medical Center, Jerusalem, Israel; and Novartis Institutes for BioMedical Research, Basel, Switzerland.

Abstract

AbstractLabile iron in hemosiderotic plasma and tissue are sources of iron toxicity. We compared the iron chelators deferoxamine, deferiprone, and deferasirox as scavengers of labile iron in plasma and cardiomyocytes at therapeutic concentrations. This comprised chelation of labile plasma iron (LPI) in samples from thalassemia patients; extraction of total cellular iron; accessing labile iron accumulated in organelles and preventing formation of reactive-oxidant species; and restoring impaired cardiac contractility. Neonatal rat cardiomyocytes were used for monitoring chelator extraction of LCI (labile cell iron) as 59Fe; assessing in situ cell iron chelation by epifluorescence microscope imaging using novel fluorescent sensors for iron and reactive oxygen species (ROS) selectively targeted to organelles, and monitoring contractility by time-lapse microscopy. At plasma concentrations attained therapeutically, all 3 chelators eliminated LPI but the orally active chelators rapidly gained access to the LCI pools of cardiomyocytes, bound labile iron, attenuated ROS formation, extracted accumulated iron, and restored contractility impaired by iron overload. The effect of deferoxamine at therapeutically relevant concentrations was primarily by elimination of LPI. The rapid accessibility of the oral chelators deferasirox and deferiprone to intracellular labile iron compartments renders them potentially efficacious for protection from and possibly reversal of cardiac damage induced by iron overload.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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