Altered Iron Metabolism Is Part of the Choroid Plexus Response to Peripheral Inflammation

Iron is essential for normal cellular homeostasis but in excess promotes free radical formation and is detrimental. Therefore, iron metabolism is tightly regulated. Here, we show that mechanisms regulating systemic iron metabolism may also control iron release into the brain at the blood-choroid ple...

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Veröffentlicht in:Endocrinology (Philadelphia) 2009-06, Vol.150 (6), p.2822-2828
Hauptverfasser: Marques, F, Falcao, A. M, Sousa, J. C, Coppola, G, Geschwind, D, Sousa, N, Correia-Neves, M, Palha, J. A
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Sprache:eng
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Zusammenfassung:Iron is essential for normal cellular homeostasis but in excess promotes free radical formation and is detrimental. Therefore, iron metabolism is tightly regulated. Here, we show that mechanisms regulating systemic iron metabolism may also control iron release into the brain at the blood-choroid plexus-cerebrospinal fluid (CSF) barrier. Intraperitoneal administration of lipopolysaccharide (LPS) in mice triggers a transient transcription of the gene encoding for hepcidin, a key regulator of iron homeostasis, in the choroid plexus, which correlated with increased detection of pro-hepcidin in the CSF. Similarly, the expression of several other iron-related genes is influenced in the choroid plexus by the inflammatory stimulus. Using primary cultures of rat choroid plexus epithelial cells, we show that this response is triggered not only directly by LPS but also by molecules whose expression increases in the blood in response to inflammation, such as IL-6. Intracellular conveyors of these signaling molecules include signal transducer and activator of transcription 3, which becomes phosphorylated, and SMAD family member 4, whose mRNA levels increase soon after LPS administration. This novel role for the choroid plexus-CSF barrier in regulating iron metabolism may be particularly relevant to restrict iron availability for microorganism growth, and in neurodegenerative diseases in which an inflammatory underlying component has been reported. The role for the choroid plexus-cerebrospinal fluid barrier in regulating iron metabolism may be particularly relevant to restrict iron availability for microorganism growth.
ISSN:0013-7227
1945-7170
DOI:10.1210/en.2008-1610