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Induction of Experimental Autoimmune Encephalomyelitis in Mice and Evaluation of the Disease-dependent Distribution of Immune Cells in Various Tissues
Published on: May 8, 2016
Dynamics and fate of USPIO in the central nervous system in experimental autoimmune encephalomyelitis
Raoul D Oude Engberink1, Erwin L A Blezer, Christine D Dijkstra
1Image Sciences Institute, University Medical Centre Utrecht, the Netherlands.
Abstract:
Signal loss observed in the brain by MRI following the administration of ultrasmall superparamagnetic particles of iron oxide (USPIO) has been correlated with immune cell activity in inflammatory areas during multiple sclerosis. Uptake of USPIO by circulating monocytes and their migration towards inflammatory areas have been considered as the most important mechanism for USPIO uptake by the brain parenchyma. However, the involvement of a damaged blood-brain barrier is also debated as a possible mechanism for cerebral USPIO uptake. Compared with these uptake-associated issues, little is known about the clearance of USPIO from the brain. The acute uptake and chronic clearance of USPIO in the brain were therefore studied with MRI in an animal model of multiple sclerosis. Lewis Hannover rats with acute experimental autoimmune encephalomyelitis received a single intravenous injection of USPIO (300 µmol Fe/kg), and repetitive MRI of the brain and cervical lymph nodes, a possible drainage pathway, was performed. USPIO were detected in the brain within 1 h after injection independent of the severity of experimental autoimmune encephalomyelitis, and histological analysis revealed extracellular iron clusters colocalising with a leaky blood-brain barrier. Loss of signal was not present 72 h after USPIO injection, irrespective of the disease state. MR images of cervical lymph nodes showed USPIO accumulation at 24 h after administration, which stabilised at 72 h. Histological analyses revealed that USPIO accumulated in infiltrated macrophages in the medulla and subcapsular sinus. The current study demonstrates that USPIO enter the central nervous system directly after administration, pointing to the involvement of a damaged blood-brain barrier in the appearance of USPIO-associated MR abnormalities. Furthermore, a possible role of the cervical lymph nodes as a drainage pathway of USPIO is suggested. These data shed new light on the use of USPIO in neuroinflammatory diseases, identifying USPIO as a marker for both cellular infiltration and blood-brain barrier damage.
Insights
Ultrasmall superparamagnetic iron oxide particles (USPIO) enter the brain rapidly, indicating blood-brain barrier damage in multiple sclerosis. Cervical lymph nodes may serve as a clearance pathway for these MRI contrast agents.
Area of Science:
- Neuroimaging
- Immunology
- Biomedical Engineering
Background:
- Signal loss on MRI after ultrasmall superparamagnetic iron oxide particles (USPIO) administration correlates with inflammation in multiple sclerosis.
- USPIO uptake in the brain is primarily attributed to monocyte migration, with blood-brain barrier (BBB) damage also implicated.
- Limited knowledge exists regarding the clearance of USPIO from the brain.
Purpose of the Study:
- To investigate the acute uptake and chronic clearance of USPIO in the brain using MRI.
- To explore the role of the blood-brain barrier and cervical lymph nodes in USPIO brain uptake and clearance.
- To assess USPIO as a potential marker for neuroinflammation and BBB integrity.
Main Methods:
- USPIO (300 µmol Fe/kg) were administered intravenously to rats with experimental autoimmune encephalomyelitis.
- Repetitive MRI of the brain and cervical lymph nodes was performed.
- Histological analysis was conducted to examine USPIO localization and BBB integrity.
Main Results:
- USPIO were detected in the brain within 1 hour post-injection, irrespective of disease severity, associated with extracellular iron clusters and BBB leakage.
- No signal loss was observed 72 hours after USPIO injection.
- USPIO accumulated in cervical lymph nodes by 24 hours, stabilizing at 72 hours, primarily within macrophages.
Conclusions:
- USPIO rapidly enter the central nervous system, highlighting the involvement of a damaged blood-brain barrier in USPIO-associated MRI signal abnormalities.
- Cervical lymph nodes are suggested as a potential drainage pathway for USPIO from the brain.
- USPIO can serve as a marker for both cellular infiltration and blood-brain barrier damage in neuroinflammatory diseases.
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