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Figure 6 — Neutrophil-microglia interaction drives motor dysfunction in a neuromyelitis opt

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paper figure Created: 2026-04-21T18:29:40 By: paper_figures_tool Quality: 50% 🔗 External ID: paper-fig-paper-41665955-6
Figure 6 — Neutrophil-microglia interaction drives motor dysfunction in a neuromyelitis opt
Figure 6Figure 6
C5ar1 deficiency ameliorates neuronal dysfunction and lipid droplet accumulation in motor neurons. ( A ) Experimental design: mice were infused continuously with AQP4-IgG using osmotic pumps from day 0 through day 7. ( B – D ) Quantification of Nissl bodies ( B ), Nissl area ( C ), and percentage area occupied by ChAT + motor neurons in gray matter of lumbar cord of Ctrl-IgG–infused mice at day 3, AQP4-IgG–infused mice at days 3, 14, and 28. ( E – H ) Representative images of Nissl bodies (red) in ventral gray matter (vGM) neurons of wild-type and C5ar1 –/– mice at day 3. Boxed areas are enlarged on the right. ( I and J ) Numbers and sizes of Nissl body + neurons in vGM ( n = 8 mice per group). ( K ) Representative motor neuron confocal images and quantification in vGM of WT mice infused with Ctrl-IgG or AQP4-IgG and C5ar1 –/– mice infused with AQP4-IgG or control-IgG (not shown). HuD + (green); ChAT + (magenta). ( L and M ) Numbers of ChAT + motor neurons (MNs) and thei
PubMed: paper-41665955
Metadata
pmidpaper-41665955
captionC5ar1 deficiency ameliorates neuronal dysfunction and lipid droplet accumulation in motor neurons. ( A ) Experimental design: mice were infused continuously with AQP4-IgG using osmotic pumps from day
image_urlhttps://www.ebi.ac.uk/europepmc/articles/PMC13038209/bin/jci-136-199706-g006.jpg
paper_titleNeutrophil-microglia interaction drives motor dysfunction in a neuromyelitis optica model induced by subarachnoid AQP4-IgG.
figure_labelFigure 6
figure_number6
_schema_version1
source_strategypmc_api
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