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Updated: Feb 4, 2026

Induction and Diverse Assessment Indicators of Experimental Autoimmune Encephalomyelitis
Published on: September 9, 2022
Macrophage-targeted PEGylated liposomes ameliorate experimental autoimmune encephalomyelitis
Alexander Muselman1, Lewis W Yu1, Khoa D Nguyen1
1Department of Pathology, Stanford University, Stanford, CA, United States.
Abstract:
Macrophages are the predominant immune cell type found in active multiple sclerosis (MS) and experimental autoimmune encephalomyelitis (EAE) lesions, where they contribute to demyelination and axonal damage. Depending on the lesion stage, these cells can exhibit either a pro-inflammatory or neurotoxic phenotype that drives central nervous system (CNS) injury or an anti-inflammatory phenotype that promotes remyelination. Therefore, strategies that modulate macrophage function may offer therapeutic benefits for MS. Polyethylene glycol (PEG) has shown anti-inflammatory and neuroprotective effects in various models of inflammation and neurodegeneration, but the mechanisms involved remain poorly understood. In this study, we investigated the potential of PEG and PEG-based delivery systems to modulate EAE. Although PEG alone did not alter EAE progression, it suppressed the pro-inflammatory phenotype of macrophages in vitro. Given the clinical potential and macrophage-targeting properties of larger PEGylated liposomes, we assessed the impact of large (~700 nm) PEGylated liposomes in EAE. These liposomes selectively targeted activated, CNS-infiltrating macrophages and, when administered to mice either before or after neurological manifestations of EAE had developed, they significantly reduced both clinical signs as well as demyelination in the spinal cord. Mechanistically, this treatment reduced macrophage secretion of pro-inflammatory cytokine IL-1β and decreased macrophage and T cell infiltration into the CNS compared to untreated controls. Together, these findings highlight the therapeutic potential of macrophage-targeted PEGylated liposomes in controlling IL-1β-mediated neuroinflammation in MS and potentially other neurodegenerative diseases.
Insights
PEGylated liposomes target macrophages, reducing inflammation and demyelination in experimental autoimmune encephalomyelitis (EAE), a model for multiple sclerosis (MS). This offers potential therapeutic benefits for neurodegenerative diseases.
Area of Science:
- Neuroimmunology
- Drug Delivery Systems
- Demyelinating Diseases
Background:
- Macrophages are key immune cells in multiple sclerosis (MS) lesions, influencing central nervous system (CNS) injury or repair.
- Modulating macrophage function presents a therapeutic strategy for MS.
- Polyethylene glycol (PEG) exhibits anti-inflammatory and neuroprotective effects, but its mechanisms are unclear.
Purpose of the Study:
- To investigate the therapeutic potential of PEG and PEG-based delivery systems in experimental autoimmune encephalomyelitis (EAE).
- To determine if PEGylated liposomes can modulate macrophage phenotype and CNS inflammation in EAE.
Main Methods:
- Administration of PEG and large (~700 nm) PEGylated liposomes to mice with EAE.
- Assessment of clinical signs, demyelination, and macrophage phenotype.
- Analysis of pro-inflammatory cytokine IL-1β secretion and immune cell infiltration into the CNS.
Main Results:
- PEG alone did not affect EAE progression but suppressed pro-inflammatory macrophage phenotype in vitro.
- PEGylated liposomes selectively targeted activated CNS-infiltrating macrophages.
- Liposome treatment significantly reduced EAE clinical signs and spinal cord demyelination.
- Treatment decreased IL-1β secretion by macrophages and reduced immune cell infiltration into the CNS.
Conclusions:
- Macrophage-targeted PEGylated liposomes demonstrate therapeutic potential in EAE.
- This approach can mitigate neuroinflammation and demyelination by modulating macrophage function.
- PEGylated liposomes may offer a novel treatment strategy for MS and other neurodegenerative diseases.
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