Remodeling oligodendrocyte lipid metabolism via liver X receptors overcomes inflammatory blockade of remyelination
Lee, J. J.; Smith, M. D.; Deng, X.; Hu, J.; Love, A.; Jing, J. S.; Gharibani, P.; Deme, P.; Mohammadnia, A.; Cui, Q.-L.; Chitsaz, D.; Dhukhwa, A.; Gonzalez Cardona, J.; Fitzgerald, K. C.; Harrington, C. A.; Chamling, X.; Antel, J. P.; Haughey, N. J.; Calabresi, P. A.; Kornberg, M. D.
Show abstract
Multiple sclerosis is characterized by immune-mediated demyelination and inefficient remyelination, owing to impaired differentiation of oligodendrocyte precursor cells (OPCs) into myelinating oligodendrocytes (OLs). Inflammatory cytokines within multiple sclerosis lesions inhibit OPC maturation and induce an immune-like phenotype with antigen-presenting properties, but the underlying mechanisms remain poorly defined. Here, we show that inflammation reprograms OPC lipid metabolism, linking altered metabolism to remyelination failure. In cultured rodent OPCs, interferon-{gamma} (IFN-{gamma}) induced a switch from lipid synthesis to utilization, leading to reduced intracellular fatty acid levels and increased dependence on fatty acid oxidation. Transcriptional analyses confirmed similar lipid metabolic changes in OL-lineage cells cultured from human surgical specimens or isolated from mouse models of inflammatory demyelination and human multiple sclerosis lesions. Enhancing lipid availability in OPCs through oleic acid supplementation or inhibition of fatty acid oxidation attenuated immune-like functions and increased differentiation. Pharmacologic activation of liver X receptor (LXR) transcription factors rebalanced lipid metabolism, suppressed immune-like functions, and overcame IFN-{gamma}-induced differentiation blockade in both mouse and human-derived OPCs. In an adoptive transfer-cuprizone mouse model in which inflammation directly impairs remyelination, LXR activation increased mature OL generation and augmented myelin repair. Together, these findings identify lipid metabolic remodeling as a key mechanism by which inflammation impairs OPC differentiation and highlight LXR activation as a therapeutic approach to enhance remyelination in multiple sclerosis.
Matching journals
The top 7 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Bile acid metabolism is altered in multiple sclerosis and supplementation ameliorates neuroinflammation 95%
- OCA-B promotes pathogenic maturation 1 of stem-like CD4+ T cells and autoimmune demyelination 93%
- Neutrophil-microglia interaction drives reversible motor dysfunction in neuromyelitis optica model induced by subarachnoid AQP4-IgG 92%
Similar papers in this journal
Similar papers in this journal
- Senolytic treatment depletes microglia and decreases severity of experimental autoimmune encephalomyelitis. 94%
- RGS10 Attenuates Systemic Immune Dysregulation Induced by Chronic Inflammatory Stress 93%
- Peripheral Myeloid-Derived Suppressor Cells are good biomarkers of the efficacy of Fingolimod in Multiple Sclerosis 92%
Similar papers in this journal
- A comparative transcriptomic analysis of mouse demyelination models and Multiple Sclerosis lesions 95%
- Single-cell transcriptomics identifies drivers of local inflammation in multiple sclerosis 95%
- Overcoming the inhibitory microenvironment surrounding oligodendrocyte progenitor cells following demyelination 94%
Similar papers in this journal
- Insights into the mechanism of oligodendrocyte protection and remyelination enhancement by the integrated stress response 94%
- Specific deletion of interleukin-1 beta in microglia improves acute outcome and modulates neurogenesis after ischemic stroke 93%
- Evidence for glutamine synthetase function in mouse spinal cord oligodendrocytes 92%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.