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Intravital Imaging of Axonal Interactions with Microglia and Macrophages in a Mouse Dorsal Column Crush Injury
Published on: November 23, 2014
Microglia/macrophages responses to kainate-induced injury in the rat retina
Min-Lin Chang1, Ching-Hsiang Wu, Hsiung-Fen Chien
1Department of Anatomy and Cell Biology, College of Medicine, National Taiwan University, 1, Section 1, Jen Ai Road, Taipei 100, Taiwan.
Abstract:
The present study was aimed to elucidate how retinal microglia/macrophages would respond to neuronal death after intravitreal kainate injection. An increased expression of the complement receptor type 3 (CR3) and an induction of the major histocompatibility complex (MHC) class II and ED-1 antigens were mainly observed in the inner retina after kainate injection. Prominent cell death revealed by Fluoro Jade B (FJB) staining and ultrastructural examination appeared at the inner border of the inner nuclear layer (INL) at 1 day post-injection. Interestingly, some immunoreactive cells appeared at the outer segment of photoreceptor layer (OSPRL) at different time intervals. Our quantitative analysis further showed that CR3 immunoreactivity was drastically increased peaking at 7 days but subsided thereafter. MHC class II and ED-1 immunoreactivities showed a moderate but steady increase peaking at 3 days and declined thereafter. Double labeling study further revealed that retinal microglia/macrophages expressed concurrently CR3 and ED-1 antigens (OX-42+/ED-1+) or MHC class II molecules (OX-42+/OX-6+) and remained branched in shape at early stage of kainate challenge. By electron microscopy, microglia/macrophages with CR3 immunoreactivity displayed abundant cytoplasm containing a few vesicles and phagosomes. Other cells ultrastructurally similar to Müller cells or astrocytes could also engulf exogenous substances. In conclusion, retinal microglia/macrophages responded vigorously to kainate-induced neuronal cell death that may also trigger the recruitment of macrophages from neighboring tissues and induce the phagocytotic activity of cells other than retinal microglia/macrophages.
Insights
Retinal microglia/macrophages activate and engulf dying neurons after kainate injection, showing increased complement receptor type 3 (CR3) and major histocompatibility complex (MHC) class II expression. Other retinal cells also exhibit phagocytic activity.
Area of Science:
- Neuroscience
- Immunology
- Ophthalmology
Background:
- Neuronal death triggers inflammatory responses in the retina.
- Microglia/macrophages are key immune cells in the central nervous system.
Purpose of the Study:
- To investigate the response of retinal microglia/macrophages to kainate-induced neuronal death.
- To characterize the expression of immune markers and phagocytic activity.
Main Methods:
- Intravitreal kainate injection in rodents.
- Immunohistochemistry for CR3, MHC class II, and ED-1 antigens.
- Fluoro Jade B staining for cell death.
- Electron microscopy for ultrastructural analysis.
Main Results:
- Kainate induced significant neuronal death in the inner retina.
- Retinal microglia/macrophages upregulated CR3, MHC class II, and ED-1.
- Phagocytic activity was observed in microglia/macrophages and other retinal cells like Müller cells and astrocytes.
- CR3 expression peaked at 7 days, while MHC class II and ED-1 peaked at 3 days.
Conclusions:
- Retinal microglia/macrophages mount a vigorous response to neuronal injury.
- The response involves upregulation of immune markers and phagocytosis.
- Non-microglial cells may also contribute to debris clearance.
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