The locus coeruleus at the crossroads of inflammation and neurodegeneration in multiple sclerosis

Abstract Background Multiple sclerosis (MS) is increasingly recognized as a systems-level disorder encompassing grey matter injury, network disconnection, and neuropsychiatric symptoms alongside demyelination. Within this framework, the locus coeruleus (LC), the principal source of noradrenaline (NA) in the central nervous system, emerges as a plausible regulatory hub within a distributed monoaminergic network. Main body LC-derived NA shapes microglial and astrocytic reactivity, oxidative stress, mitochondrial function, oligodendrocyte differentiation, and blood-brain barrier stability through adrenergic receptor signaling. Neuropathological studies show LC neuron loss, astrogliosis, and altered NA levels in MS and related animal models. Post-mortem findings suggest that neuromelanin-bound metals and redox-active trace elements selectively accumulate in LC neurons, potentially triggering mitochondrial dysfunction, barrier disruption, and chronic glial activation. In animal models, pharmacological or genetic reductions in NA worsen inflammation, demyelination, and axonal damage, while increasing NA improves disease outcomes and restores glial and cytokine profiles. Early clinical studies of β 2 -adrenergic agonists and NA-modulating drugs suggest benefits across specific symptom domains, including relapse activity, fatigue, mood, bladder function, and selected cognitive measures, but remain limited by small cohorts and insufficient stratification of patients. Conclusions Together, these findings support LC-NA dysfunction as a targetable aspect of MS pathobiology and justify biomarker-driven trials that combine noradrenergic interventions with molecular indicators of glial activity, myelin integrity, and stress-related signaling.

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Publication Details

Journal
Journal of Neuroinflammation
Published
2026-08-26
DOI
https://doi.org/10.1186/s12974-026-03981-2
Primary Topic
Multiple Sclerosis Research Studies
Type
article
Field-Weighted Citation Impact
0.00

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article

The locus coeruleus at the crossroads of inflammation and neurodegeneration in multiple sclerosis

Douglas L. Feinstein, Intakhar Ahmad, Rebecca Alemani
Journal of Neuroinflammation
Multiple Sclerosis Research Studies
article

The locus coeruleus at the crossroads of inflammation and neurodegeneration in multiple sclerosis

Douglas L. Feinstein, Intakhar Ahmad, Rebecca Alemani
article en

Abstract

Abstract Background Multiple sclerosis (MS) is increasingly recognized as a systems-level disorder encompassing grey matter injury, network disconnection, and neuropsychiatric symptoms alongside demyelination. Within this framework, the locus coeruleus (LC), the principal source of noradrenaline (NA) in the central nervous system, emerges as a plausible regulatory hub within a distributed monoaminergic network. Main body LC-derived NA shapes microglial and astrocytic reactivity, oxidative stress, mitochondrial function, oligodendrocyte differentiation, and blood-brain barrier stability through adrenergic receptor signaling. Neuropathological studies show LC neuron loss, astrogliosis, and altered NA levels in MS and related animal models. Post-mortem findings suggest that neuromelanin-bound metals and redox-active trace elements selectively accumulate in LC neurons, potentially triggering mitochondrial dysfunction, barrier disruption, and chronic glial activation. In animal models, pharmacological or genetic reductions in NA worsen inflammation, demyelination, and axonal damage, while increasing NA improves disease outcomes and restores glial and cytokine profiles. Early clinical studies of β 2 -adrenergic agonists and NA-modulating drugs suggest benefits across specific symptom domains, including relapse activity, fatigue, mood, bladder function, and selected cognitive measures, but remain limited by small cohorts and insufficient stratification of patients. Conclusions Together, these findings support LC-NA dysfunction as a targetable aspect of MS pathobiology and justify biomarker-driven trials that combine noradrenergic interventions with molecular indicators of glial activity, myelin integrity, and stress-related signaling.

Journal of Neuroinflammation
Illinois College (US), University of Illinois Chicago (US), Jesse Brown VA Medical Center (US)
U.S. Department of Veterans Affairs
Good health and well-being
Openalex Percentile: Top 11%
Multiple Sclerosis Research Studies
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