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PMID: 16762036 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Intralysosomal iron chelation protects against oxidative stress-induced cellular damage.

The FEBS journal ·Vol. 273 ·No. 13 ·2006-07-00 ·Pages 3106-17

Kurz T, Gustafsson B, Brunk UT

Abstract

Oxidant-induced cell damage may be initiated by peroxidative injury to lysosomal membranes, catalyzed by intralysosomal low mass iron that appears to comprise a major part of cellular redox-active iron. Resulting relocation of lytic enzymes and low mass iron would result in secondary harm to various cellular constituents. In an effort to further clarify this still controversial issue, we tested the protective effects of two potent iron chelators--the hydrophilic desferrioxamine (dfo) and the lipophilic salicylaldehyde isonicotinoyl hydrazone (sih), using cultured lysosome-rich macrophage-like J774 cells as targets. dfo slowly enters cells via endocytosis, while the lipophilic sih rapidly distributes throughout the cell. Following dfo treatment, long-term survival of cells cannot be investigated because dfo by itself, by remaining inside the lysosomal compartment, induces apoptosis that probably is due to iron starvation, while sih has no lasting toxic effects if the exposure time is limited. Following preincubation with 1 mM dfo for 3 h or 10 microM sih for a few minutes, both agents provided strong protection against an ensuing approximately LD50 oxidant challenge by preventing lysosomal rupture, ensuing loss of mitochondrial membrane potential, and apoptotic/necrotic cell death. It appears that once significant lysosomal rupture has occurred, the cell is irreversibly committed to death. The results lend strength to the concept that lysosomal membranes, normally exposed to redox-active iron in high concentrations, are initial targets of oxidant damage and support the idea that chelators selectively targeted to the lysosomal compartment may have therapeutic utility in diminishing oxidant-mediated cell injury.

MeSH Terms
Aldehydes/pharmacology Apoptosis Cell Proliferation Chelating Agents/pharmacology Deferoxamine/pharmacology Endocytosis Hydrazones/pharmacology Hydrogen Peroxide/chemistry,pharmacology Iron/chemistry,pharmacology Iron Chelating Agents/pharmacology Lysosomes/chemistry,metabolism Membrane Potentials Models, Biological Necrosis Oxidants/chemistry,metabolism Oxidative Stress
Chemicals
Aldehydes Chelating Agents Hydrazones Iron Chelating Agents Oxidants salicylaldehyde isonicotinoyl hydrazone Hydrogen Peroxide Iron Deferoxamine
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Kurz Tino
Division of Pharmacology, Faculty of Health Sciences, Linköping University, Sweden.
Gustafsson Bertil
Brunk Ulf T
Article Info
Journal
The FEBS journal
Abbr.
FEBS J
ISSN
1742-464X
Published
2006-07-00
Epub
2006-00-07
Pages
3106-17
Language
English
Region
England
NLM ID
101229646
Subset
IM
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