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Measurement of Heme Synthesis Levels in Mammalian Cells
Published on: July 9, 2015
Monocyte MRI Relaxation Rates Are Regulated by Extracellular Iron and Hepcidin
Praveen S B Dassanayake1,2,3, Rahil Prajapati1, Neil Gelman1,2
1Imaging Program, Lawson Health Research Institute, London, ON N6A 4V2, Canada.
Abstract:
Many chronic inflammatory conditions are mediated by an increase in the number of monocytes in peripheral circulation, differentiation of monocytes to macrophages, and different macrophage subpopulations during pro- and anti-inflammatory stages of tissue injury. When hepcidin secretion is stimulated during inflammation, the iron export protein ferroportin is targeted for degradation on a limited number of cell types, including monocytes and macrophages. Such changes in monocyte iron metabolism raise the possibility of non-invasively tracking the activity of these immune cells using magnetic resonance imaging (MRI). We hypothesized that hepcidin-mediated changes in monocyte iron regulation influence both cellular iron content and MRI relaxation rates. In response to varying conditions of extracellular iron supplementation, ferroportin protein levels in human THP-1 monocytes decreased two- to eightfold, consistent with paracrine/autocrine regulation of iron export. Following hepcidin treatment, ferroportin protein levels further decreased two- to fourfold. This was accompanied by an approximately twofold increase in total transverse relaxation rate, R2*, compared to non-supplemented cells. A positive correlation between total cellular iron content and R2* improved from moderate to strong in the presence of hepcidin. These findings suggest that hepcidin-mediated changes detected in monocytes using MRI could be valuable for in vivo cell tracking of inflammatory responses.
Insights
Hepcidin affects iron regulation in monocytes, altering cellular iron content and MRI relaxation rates. This suggests magnetic resonance imaging (MRI) can track immune cell activity during inflammation.
Area of Science:
- Immunology
- Biochemistry
- Medical Imaging
Background:
- Chronic inflammatory conditions involve monocyte and macrophage dynamics.
- Hepcidin regulates iron metabolism by targeting ferroportin for degradation in monocytes/macrophages.
- Altered monocyte iron metabolism presents a potential target for non-invasive imaging.
Purpose of the Study:
- To investigate if hepcidin-mediated changes in monocyte iron regulation impact cellular iron content and MRI relaxation rates.
- To explore the potential of MRI for tracking inflammatory responses via monocyte activity.
Main Methods:
- Human THP-1 monocytes were treated with varying extracellular iron concentrations.
- Monocytes were subsequently treated with hepcidin.
- Cellular iron content and transverse relaxation rate (R2*) were measured.
- Correlation between iron content and R2* was analyzed.
Main Results:
- Extracellular iron and hepcidin treatment reduced ferroportin protein levels in monocytes.
- Hepcidin treatment increased total transverse relaxation rate (R2*) approximately twofold.
- A strong positive correlation was observed between cellular iron content and R2* in the presence of hepcidin.
Conclusions:
- Hepcidin significantly alters monocyte iron regulation, increasing cellular iron content and R2*.
- MRI can detect hepcidin-mediated changes in monocytes.
- These findings support the use of MRI for in vivo tracking of immune cell activity in inflammatory conditions.
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