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Defective fractalkine-CX3CR1 signaling aggravates neuroinflammation and affects recovery from cuprizone-induced demyelination.

Authors :
Mendiola AS
Church KA
Cardona SM
Vanegas D
Garcia SA
Macklin W
Lira SA
Ransohoff RM
Kokovay E
Lin CA
Cardona AE
Source :
Journal of neurochemistry [J Neurochem] 2022 Sep; Vol. 162 (5), pp. 430-443. Date of Electronic Publication: 2022 May 12.
Publication Year :
2022

Abstract

Microglia have been implicated in multiple sclerosis (MS) pathogenesis. The fractalkine receptor CX3CR1 limits the activation of pathogenic microglia and the human polymorphic CX3CR1 <superscript>I249/M280</superscript> (hCX3CR1 <superscript>I249/M280</superscript> ) variant increases disease progression in models of MS. However, the role of hCX3CR1 <superscript>I249/M280</superscript> variant on microglial activation and central nervous system repair mechanisms remains unknown. Therefore, using transgenic mice expressing the hCX3CR1 <superscript>I249/M280</superscript> variant, we aimed to determine the contribution of defective CX3CR1 signaling to neuroinflammation and remyelination in the cuprizone model of focal demyelination. Here, we report that mice expressing hCX3CR1 <superscript>I249/M280</superscript> exhibit marked demyelination and microgliosis following acute cuprizone treatment. Nanostring gene expression analysis in demyelinated lesions showed that hCX3CR1 <superscript>I249/M280</superscript> but not CX3CR1-deficient mice up-regulated the cuprizone-induced gene profile linked to inflammatory, oxidative stress, and phagocytic pathways. Although CX3CR1-deficient (CX3CR1-KO) and fractalkine-deficient (FKN-KO) mice displayed a comparable demyelination and microglial activation phenotype to hCX3CR1 <superscript>I249/M280</superscript> mice, only CX3CR1-deficient and CX3CR1-WT mice showed significant myelin recovery 1 week from cuprizone withdrawal. Confocal microscopy showed that hCX3CR1 <superscript>I249/M280</superscript> variant inhibits the generation of cells involved in myelin repair. Our results show that defective fractalkine signaling contributes to regional differences in demyelination, and suggest that the CX3CR1 pathway activity may be a key mechanism for limiting toxic gene responses in neuroinflammation. Cover Image for this issue: https://doi.org/10.1111/jnc.15416.<br /> (© 2022 International Society for Neurochemistry.)

Details

Language :
English
ISSN :
1471-4159
Volume :
162
Issue :
5
Database :
MEDLINE
Journal :
Journal of neurochemistry
Publication Type :
Academic Journal
Accession number :
35560167
Full Text :
https://doi.org/10.1111/jnc.15616